[66] | 1 | // |
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| 2 | // Copyright (C) 2001-2004 HorizonLive.com, Inc. All Rights Reserved. |
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| 3 | // Copyright (C) 2001-2006 Constantin Kaplinsky. All Rights Reserved. |
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| 4 | // Copyright (C) 2000 Tridia Corporation. All Rights Reserved. |
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| 5 | // Copyright (C) 1999 AT&T Laboratories Cambridge. All Rights Reserved. |
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| 6 | // |
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| 7 | // This is free software; you can redistribute it and/or modify |
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| 8 | // it under the terms of the GNU General Public License as published by |
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| 9 | // the Free Software Foundation; either version 2 of the License, or |
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| 10 | // (at your option) any later version. |
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| 11 | // |
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| 12 | // This software is distributed in the hope that it will be useful, |
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| 13 | // but WITHOUT ANY WARRANTY; without even the implied warranty of |
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| 14 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the |
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| 15 | // GNU General Public License for more details. |
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| 16 | // |
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| 17 | // You should have received a copy of the GNU General Public License |
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| 18 | // along with this software; if not, write to the Free Software |
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| 19 | // Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, |
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| 20 | // USA. |
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| 21 | // |
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| 22 | |
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| 23 | // |
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| 24 | // RfbProto.java |
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| 25 | // |
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| 26 | |
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| 27 | import java.io.*; |
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| 28 | import java.awt.*; |
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| 29 | import java.awt.event.*; |
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| 30 | import java.net.Socket; |
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| 31 | import java.util.zip.*; |
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| 32 | |
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| 33 | class RfbProto { |
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| 34 | |
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| 35 | final static String |
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| 36 | versionMsg_3_3 = "RFB 003.003\n", |
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| 37 | versionMsg_3_7 = "RFB 003.007\n", |
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| 38 | versionMsg_3_8 = "RFB 003.008\n"; |
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| 39 | |
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| 40 | // Vendor signatures: standard VNC/RealVNC, TridiaVNC, and TightVNC |
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| 41 | final static String |
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| 42 | StandardVendor = "STDV", |
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| 43 | TridiaVncVendor = "TRDV", |
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| 44 | TightVncVendor = "TGHT"; |
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| 45 | |
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| 46 | // Security types |
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| 47 | final static int |
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| 48 | SecTypeInvalid = 0, |
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| 49 | SecTypeNone = 1, |
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| 50 | SecTypeVncAuth = 2, |
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| 51 | SecTypeTight = 16; |
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| 52 | |
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| 53 | // Supported tunneling types |
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| 54 | final static int |
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| 55 | NoTunneling = 0; |
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| 56 | final static String |
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| 57 | SigNoTunneling = "NOTUNNEL"; |
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| 58 | |
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| 59 | // Supported authentication types |
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| 60 | final static int |
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| 61 | AuthNone = 1, |
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| 62 | AuthVNC = 2, |
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| 63 | AuthUnixLogin = 129; |
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| 64 | final static String |
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| 65 | SigAuthNone = "NOAUTH__", |
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| 66 | SigAuthVNC = "VNCAUTH_", |
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| 67 | SigAuthUnixLogin = "ULGNAUTH"; |
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| 68 | |
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| 69 | // VNC authentication results |
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| 70 | final static int |
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| 71 | VncAuthOK = 0, |
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| 72 | VncAuthFailed = 1, |
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| 73 | VncAuthTooMany = 2; |
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| 74 | |
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| 75 | // Server-to-client messages |
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| 76 | final static int |
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| 77 | FramebufferUpdate = 0, |
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| 78 | SetColourMapEntries = 1, |
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| 79 | Bell = 2, |
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| 80 | ServerCutText = 3; |
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| 81 | |
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| 82 | // Client-to-server messages |
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| 83 | final static int |
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| 84 | SetPixelFormat = 0, |
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| 85 | FixColourMapEntries = 1, |
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| 86 | SetEncodings = 2, |
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| 87 | FramebufferUpdateRequest = 3, |
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| 88 | KeyboardEvent = 4, |
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| 89 | PointerEvent = 5, |
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| 90 | ClientCutText = 6; |
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| 91 | |
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| 92 | // Supported encodings and pseudo-encodings |
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| 93 | final static int |
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| 94 | EncodingRaw = 0, |
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| 95 | EncodingCopyRect = 1, |
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| 96 | EncodingRRE = 2, |
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| 97 | EncodingCoRRE = 4, |
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| 98 | EncodingHextile = 5, |
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| 99 | EncodingZlib = 6, |
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| 100 | EncodingTight = 7, |
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| 101 | EncodingZRLE = 16, |
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| 102 | EncodingCompressLevel0 = 0xFFFFFF00, |
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| 103 | EncodingQualityLevel0 = 0xFFFFFFE0, |
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| 104 | EncodingXCursor = 0xFFFFFF10, |
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| 105 | EncodingRichCursor = 0xFFFFFF11, |
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| 106 | EncodingPointerPos = 0xFFFFFF18, |
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| 107 | EncodingLastRect = 0xFFFFFF20, |
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| 108 | EncodingNewFBSize = 0xFFFFFF21; |
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| 109 | final static String |
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| 110 | SigEncodingRaw = "RAW_____", |
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| 111 | SigEncodingCopyRect = "COPYRECT", |
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| 112 | SigEncodingRRE = "RRE_____", |
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| 113 | SigEncodingCoRRE = "CORRE___", |
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| 114 | SigEncodingHextile = "HEXTILE_", |
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| 115 | SigEncodingZlib = "ZLIB____", |
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| 116 | SigEncodingTight = "TIGHT___", |
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| 117 | SigEncodingZRLE = "ZRLE____", |
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| 118 | SigEncodingCompressLevel0 = "COMPRLVL", |
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| 119 | SigEncodingQualityLevel0 = "JPEGQLVL", |
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| 120 | SigEncodingXCursor = "X11CURSR", |
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| 121 | SigEncodingRichCursor = "RCHCURSR", |
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| 122 | SigEncodingPointerPos = "POINTPOS", |
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| 123 | SigEncodingLastRect = "LASTRECT", |
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| 124 | SigEncodingNewFBSize = "NEWFBSIZ"; |
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| 125 | |
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| 126 | final static int MaxNormalEncoding = 255; |
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| 127 | |
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| 128 | // Contstants used in the Hextile decoder |
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| 129 | final static int |
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| 130 | HextileRaw = 1, |
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| 131 | HextileBackgroundSpecified = 2, |
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| 132 | HextileForegroundSpecified = 4, |
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| 133 | HextileAnySubrects = 8, |
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| 134 | HextileSubrectsColoured = 16; |
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| 135 | |
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| 136 | // Contstants used in the Tight decoder |
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| 137 | final static int TightMinToCompress = 12; |
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| 138 | final static int |
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| 139 | TightExplicitFilter = 0x04, |
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| 140 | TightFill = 0x08, |
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| 141 | TightJpeg = 0x09, |
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| 142 | TightMaxSubencoding = 0x09, |
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| 143 | TightFilterCopy = 0x00, |
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| 144 | TightFilterPalette = 0x01, |
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| 145 | TightFilterGradient = 0x02; |
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| 146 | |
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| 147 | |
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| 148 | String host; |
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| 149 | int port; |
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| 150 | Socket sock; |
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| 151 | DataInputStream is; |
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| 152 | OutputStream os; |
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| 153 | SessionRecorder rec; |
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| 154 | boolean inNormalProtocol = false; |
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| 155 | VncViewer viewer; |
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| 156 | |
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| 157 | // Java on UNIX does not call keyPressed() on some keys, for example |
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| 158 | // swedish keys To prevent our workaround to produce duplicate |
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| 159 | // keypresses on JVMs that actually works, keep track of if |
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| 160 | // keyPressed() for a "broken" key was called or not. |
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| 161 | boolean brokenKeyPressed = false; |
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| 162 | |
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| 163 | // This will be set to true on the first framebuffer update |
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| 164 | // containing Zlib-, ZRLE- or Tight-encoded data. |
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| 165 | boolean wereZlibUpdates = false; |
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| 166 | |
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| 167 | // This will be set to false if the startSession() was called after |
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| 168 | // we have received at least one Zlib-, ZRLE- or Tight-encoded |
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| 169 | // framebuffer update. |
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| 170 | boolean recordFromBeginning = true; |
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| 171 | |
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| 172 | // This fields are needed to show warnings about inefficiently saved |
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| 173 | // sessions only once per each saved session file. |
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| 174 | boolean zlibWarningShown; |
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| 175 | boolean tightWarningShown; |
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| 176 | |
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| 177 | // Before starting to record each saved session, we set this field |
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| 178 | // to 0, and increment on each framebuffer update. We don't flush |
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| 179 | // the SessionRecorder data into the file before the second update. |
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| 180 | // This allows us to write initial framebuffer update with zero |
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| 181 | // timestamp, to let the player show initial desktop before |
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| 182 | // playback. |
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| 183 | int numUpdatesInSession; |
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| 184 | |
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| 185 | // Measuring network throughput. |
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| 186 | boolean timing; |
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| 187 | long timeWaitedIn100us; |
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| 188 | long timedKbits; |
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| 189 | |
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| 190 | // Protocol version and TightVNC-specific protocol options. |
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| 191 | int serverMajor, serverMinor; |
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| 192 | int clientMajor, clientMinor; |
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| 193 | boolean protocolTightVNC; |
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| 194 | CapsContainer tunnelCaps, authCaps; |
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| 195 | CapsContainer serverMsgCaps, clientMsgCaps; |
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| 196 | CapsContainer encodingCaps; |
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| 197 | |
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| 198 | // If true, informs that the RFB socket was closed. |
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| 199 | private boolean closed; |
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| 200 | |
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| 201 | // |
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| 202 | // Constructor. Make TCP connection to RFB server. |
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| 203 | // |
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| 204 | |
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| 205 | RfbProto(String h, int p, VncViewer v) throws IOException { |
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| 206 | viewer = v; |
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| 207 | host = h; |
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| 208 | port = p; |
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| 209 | |
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| 210 | if (viewer.socketFactory == null) { |
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| 211 | sock = new Socket(host, port); |
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| 212 | } else { |
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| 213 | try { |
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| 214 | Class factoryClass = Class.forName(viewer.socketFactory); |
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| 215 | SocketFactory factory = (SocketFactory)factoryClass.newInstance(); |
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| 216 | if (viewer.inAnApplet) |
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| 217 | sock = factory.createSocket(host, port, viewer); |
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| 218 | else |
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| 219 | sock = factory.createSocket(host, port, viewer.mainArgs); |
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| 220 | } catch(Exception e) { |
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| 221 | e.printStackTrace(); |
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| 222 | throw new IOException(e.getMessage()); |
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| 223 | } |
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| 224 | } |
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| 225 | is = new DataInputStream(new BufferedInputStream(sock.getInputStream(), |
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| 226 | 16384)); |
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| 227 | os = sock.getOutputStream(); |
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| 228 | |
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| 229 | timing = false; |
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| 230 | timeWaitedIn100us = 5; |
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| 231 | timedKbits = 0; |
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| 232 | } |
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| 233 | |
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| 234 | |
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| 235 | synchronized void close() { |
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| 236 | try { |
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| 237 | sock.close(); |
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| 238 | closed = true; |
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| 239 | System.out.println("RFB socket closed"); |
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| 240 | if (rec != null) { |
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| 241 | rec.close(); |
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| 242 | rec = null; |
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| 243 | } |
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| 244 | } catch (Exception e) { |
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| 245 | e.printStackTrace(); |
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| 246 | } |
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| 247 | } |
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| 248 | |
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| 249 | synchronized boolean closed() { |
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| 250 | return closed; |
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| 251 | } |
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| 252 | |
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| 253 | // |
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| 254 | // Read server's protocol version message |
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| 255 | // |
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| 256 | |
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| 257 | void readVersionMsg() throws Exception { |
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| 258 | |
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| 259 | byte[] b = new byte[12]; |
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| 260 | |
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| 261 | readFully(b); |
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| 262 | |
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| 263 | if ((b[0] != 'R') || (b[1] != 'F') || (b[2] != 'B') || (b[3] != ' ') |
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| 264 | || (b[4] < '0') || (b[4] > '9') || (b[5] < '0') || (b[5] > '9') |
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| 265 | || (b[6] < '0') || (b[6] > '9') || (b[7] != '.') |
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| 266 | || (b[8] < '0') || (b[8] > '9') || (b[9] < '0') || (b[9] > '9') |
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| 267 | || (b[10] < '0') || (b[10] > '9') || (b[11] != '\n')) |
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| 268 | { |
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| 269 | throw new Exception("Host " + host + " port " + port + |
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| 270 | " is not an RFB server"); |
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| 271 | } |
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| 272 | |
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| 273 | serverMajor = (b[4] - '0') * 100 + (b[5] - '0') * 10 + (b[6] - '0'); |
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| 274 | serverMinor = (b[8] - '0') * 100 + (b[9] - '0') * 10 + (b[10] - '0'); |
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| 275 | |
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| 276 | if (serverMajor < 3) { |
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| 277 | throw new Exception("RFB server does not support protocol version 3"); |
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| 278 | } |
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| 279 | } |
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| 280 | |
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| 281 | |
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| 282 | // |
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| 283 | // Write our protocol version message |
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| 284 | // |
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| 285 | |
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| 286 | void writeVersionMsg() throws IOException { |
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| 287 | clientMajor = 3; |
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| 288 | if (serverMajor > 3 || serverMinor >= 8) { |
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| 289 | clientMinor = 8; |
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| 290 | os.write(versionMsg_3_8.getBytes()); |
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| 291 | } else if (serverMinor >= 7) { |
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| 292 | clientMinor = 7; |
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| 293 | os.write(versionMsg_3_7.getBytes()); |
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| 294 | } else { |
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| 295 | clientMinor = 3; |
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| 296 | os.write(versionMsg_3_3.getBytes()); |
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| 297 | } |
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| 298 | protocolTightVNC = false; |
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| 299 | } |
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| 300 | |
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| 301 | |
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| 302 | // |
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| 303 | // Negotiate the authentication scheme. |
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| 304 | // |
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| 305 | |
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| 306 | int negotiateSecurity() throws Exception { |
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| 307 | return (clientMinor >= 7) ? |
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| 308 | selectSecurityType() : readSecurityType(); |
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| 309 | } |
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| 310 | |
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| 311 | // |
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| 312 | // Read security type from the server (protocol version 3.3). |
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| 313 | // |
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| 314 | |
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| 315 | int readSecurityType() throws Exception { |
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| 316 | int secType = is.readInt(); |
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| 317 | |
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| 318 | switch (secType) { |
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| 319 | case SecTypeInvalid: |
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| 320 | readConnFailedReason(); |
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| 321 | return SecTypeInvalid; // should never be executed |
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| 322 | case SecTypeNone: |
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| 323 | case SecTypeVncAuth: |
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| 324 | return secType; |
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| 325 | default: |
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| 326 | throw new Exception("Unknown security type from RFB server: " + secType); |
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| 327 | } |
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| 328 | } |
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| 329 | |
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| 330 | // |
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| 331 | // Select security type from the server's list (protocol versions 3.7/3.8). |
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| 332 | // |
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| 333 | |
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| 334 | int selectSecurityType() throws Exception { |
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| 335 | int secType = SecTypeInvalid; |
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| 336 | |
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| 337 | // Read the list of secutiry types. |
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| 338 | int nSecTypes = is.readUnsignedByte(); |
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| 339 | if (nSecTypes == 0) { |
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| 340 | readConnFailedReason(); |
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| 341 | return SecTypeInvalid; // should never be executed |
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| 342 | } |
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| 343 | byte[] secTypes = new byte[nSecTypes]; |
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| 344 | readFully(secTypes); |
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| 345 | |
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| 346 | // Find out if the server supports TightVNC protocol extensions |
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| 347 | for (int i = 0; i < nSecTypes; i++) { |
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| 348 | if (secTypes[i] == SecTypeTight) { |
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| 349 | protocolTightVNC = true; |
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| 350 | os.write(SecTypeTight); |
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| 351 | return SecTypeTight; |
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| 352 | } |
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| 353 | } |
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| 354 | |
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| 355 | // Find first supported security type. |
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| 356 | for (int i = 0; i < nSecTypes; i++) { |
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| 357 | if (secTypes[i] == SecTypeNone || secTypes[i] == SecTypeVncAuth) { |
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| 358 | secType = secTypes[i]; |
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| 359 | break; |
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| 360 | } |
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| 361 | } |
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| 362 | |
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| 363 | if (secType == SecTypeInvalid) { |
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| 364 | throw new Exception("Server did not offer supported security type"); |
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| 365 | } else { |
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| 366 | os.write(secType); |
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| 367 | } |
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| 368 | |
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| 369 | return secType; |
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| 370 | } |
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| 371 | |
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| 372 | // |
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| 373 | // Perform "no authentication". |
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| 374 | // |
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| 375 | |
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| 376 | void authenticateNone() throws Exception { |
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| 377 | if (clientMinor >= 8) |
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| 378 | readSecurityResult("No authentication"); |
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| 379 | } |
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| 380 | |
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| 381 | // |
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| 382 | // Perform standard VNC Authentication. |
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| 383 | // |
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| 384 | |
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| 385 | void authenticateVNC(String pw) throws Exception { |
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| 386 | byte[] challenge = new byte[16]; |
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| 387 | readFully(challenge); |
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| 388 | |
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| 389 | if (pw.length() > 8) |
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| 390 | pw = pw.substring(0, 8); // Truncate to 8 chars |
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| 391 | |
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| 392 | // Truncate password on the first zero byte. |
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| 393 | int firstZero = pw.indexOf(0); |
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| 394 | if (firstZero != -1) |
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| 395 | pw = pw.substring(0, firstZero); |
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| 396 | |
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| 397 | byte[] key = {0, 0, 0, 0, 0, 0, 0, 0}; |
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| 398 | System.arraycopy(pw.getBytes(), 0, key, 0, pw.length()); |
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| 399 | |
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| 400 | DesCipher des = new DesCipher(key); |
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| 401 | |
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| 402 | des.encrypt(challenge, 0, challenge, 0); |
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| 403 | des.encrypt(challenge, 8, challenge, 8); |
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| 404 | |
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| 405 | os.write(challenge); |
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| 406 | |
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| 407 | readSecurityResult("VNC authentication"); |
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| 408 | } |
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| 409 | |
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| 410 | // |
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| 411 | // Read security result. |
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| 412 | // Throws an exception on authentication failure. |
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| 413 | // |
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| 414 | |
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| 415 | void readSecurityResult(String authType) throws Exception { |
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| 416 | int securityResult = is.readInt(); |
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| 417 | |
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| 418 | switch (securityResult) { |
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| 419 | case VncAuthOK: |
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| 420 | System.out.println(authType + ": success"); |
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| 421 | break; |
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| 422 | case VncAuthFailed: |
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| 423 | if (clientMinor >= 8) |
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| 424 | readConnFailedReason(); |
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| 425 | throw new Exception(authType + ": failed"); |
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| 426 | case VncAuthTooMany: |
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| 427 | throw new Exception(authType + ": failed, too many tries"); |
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| 428 | default: |
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| 429 | throw new Exception(authType + ": unknown result " + securityResult); |
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| 430 | } |
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| 431 | } |
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| 432 | |
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| 433 | // |
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| 434 | // Read the string describing the reason for a connection failure, |
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| 435 | // and throw an exception. |
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| 436 | // |
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| 437 | |
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| 438 | void readConnFailedReason() throws Exception { |
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| 439 | int reasonLen = is.readInt(); |
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| 440 | byte[] reason = new byte[reasonLen]; |
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| 441 | readFully(reason); |
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| 442 | throw new Exception(new String(reason)); |
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| 443 | } |
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| 444 | |
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| 445 | // |
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| 446 | // Initialize capability lists (TightVNC protocol extensions). |
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| 447 | // |
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| 448 | |
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| 449 | void initCapabilities() { |
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| 450 | tunnelCaps = new CapsContainer(); |
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| 451 | authCaps = new CapsContainer(); |
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| 452 | serverMsgCaps = new CapsContainer(); |
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| 453 | clientMsgCaps = new CapsContainer(); |
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| 454 | encodingCaps = new CapsContainer(); |
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| 455 | |
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| 456 | // Supported authentication methods |
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| 457 | authCaps.add(AuthNone, StandardVendor, SigAuthNone, |
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| 458 | "No authentication"); |
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| 459 | authCaps.add(AuthVNC, StandardVendor, SigAuthVNC, |
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| 460 | "Standard VNC password authentication"); |
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| 461 | |
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| 462 | // Supported encoding types |
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| 463 | encodingCaps.add(EncodingCopyRect, StandardVendor, |
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| 464 | SigEncodingCopyRect, "Standard CopyRect encoding"); |
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| 465 | encodingCaps.add(EncodingRRE, StandardVendor, |
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| 466 | SigEncodingRRE, "Standard RRE encoding"); |
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| 467 | encodingCaps.add(EncodingCoRRE, StandardVendor, |
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| 468 | SigEncodingCoRRE, "Standard CoRRE encoding"); |
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| 469 | encodingCaps.add(EncodingHextile, StandardVendor, |
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| 470 | SigEncodingHextile, "Standard Hextile encoding"); |
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| 471 | encodingCaps.add(EncodingZRLE, StandardVendor, |
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| 472 | SigEncodingZRLE, "Standard ZRLE encoding"); |
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| 473 | encodingCaps.add(EncodingZlib, TridiaVncVendor, |
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| 474 | SigEncodingZlib, "Zlib encoding"); |
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| 475 | encodingCaps.add(EncodingTight, TightVncVendor, |
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| 476 | SigEncodingTight, "Tight encoding"); |
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| 477 | |
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| 478 | // Supported pseudo-encoding types |
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| 479 | encodingCaps.add(EncodingCompressLevel0, TightVncVendor, |
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| 480 | SigEncodingCompressLevel0, "Compression level"); |
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| 481 | encodingCaps.add(EncodingQualityLevel0, TightVncVendor, |
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| 482 | SigEncodingQualityLevel0, "JPEG quality level"); |
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| 483 | encodingCaps.add(EncodingXCursor, TightVncVendor, |
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| 484 | SigEncodingXCursor, "X-style cursor shape update"); |
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| 485 | encodingCaps.add(EncodingRichCursor, TightVncVendor, |
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| 486 | SigEncodingRichCursor, "Rich-color cursor shape update"); |
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| 487 | encodingCaps.add(EncodingPointerPos, TightVncVendor, |
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| 488 | SigEncodingPointerPos, "Pointer position update"); |
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| 489 | encodingCaps.add(EncodingLastRect, TightVncVendor, |
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| 490 | SigEncodingLastRect, "LastRect protocol extension"); |
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| 491 | encodingCaps.add(EncodingNewFBSize, TightVncVendor, |
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| 492 | SigEncodingNewFBSize, "Framebuffer size change"); |
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| 493 | } |
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| 494 | |
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| 495 | // |
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| 496 | // Setup tunneling (TightVNC protocol extensions) |
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| 497 | // |
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| 498 | |
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| 499 | void setupTunneling() throws IOException { |
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| 500 | int nTunnelTypes = is.readInt(); |
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| 501 | if (nTunnelTypes != 0) { |
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| 502 | readCapabilityList(tunnelCaps, nTunnelTypes); |
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| 503 | |
---|
| 504 | // We don't support tunneling yet. |
---|
| 505 | writeInt(NoTunneling); |
---|
| 506 | } |
---|
| 507 | } |
---|
| 508 | |
---|
| 509 | // |
---|
| 510 | // Negotiate authentication scheme (TightVNC protocol extensions) |
---|
| 511 | // |
---|
| 512 | |
---|
| 513 | int negotiateAuthenticationTight() throws Exception { |
---|
| 514 | int nAuthTypes = is.readInt(); |
---|
| 515 | if (nAuthTypes == 0) |
---|
| 516 | return AuthNone; |
---|
| 517 | |
---|
| 518 | readCapabilityList(authCaps, nAuthTypes); |
---|
| 519 | for (int i = 0; i < authCaps.numEnabled(); i++) { |
---|
| 520 | int authType = authCaps.getByOrder(i); |
---|
| 521 | if (authType == AuthNone || authType == AuthVNC) { |
---|
| 522 | writeInt(authType); |
---|
| 523 | return authType; |
---|
| 524 | } |
---|
| 525 | } |
---|
| 526 | throw new Exception("No suitable authentication scheme found"); |
---|
| 527 | } |
---|
| 528 | |
---|
| 529 | // |
---|
| 530 | // Read a capability list (TightVNC protocol extensions) |
---|
| 531 | // |
---|
| 532 | |
---|
| 533 | void readCapabilityList(CapsContainer caps, int count) throws IOException { |
---|
| 534 | int code; |
---|
| 535 | byte[] vendor = new byte[4]; |
---|
| 536 | byte[] name = new byte[8]; |
---|
| 537 | for (int i = 0; i < count; i++) { |
---|
| 538 | code = is.readInt(); |
---|
| 539 | readFully(vendor); |
---|
| 540 | readFully(name); |
---|
| 541 | caps.enable(new CapabilityInfo(code, vendor, name)); |
---|
| 542 | } |
---|
| 543 | } |
---|
| 544 | |
---|
| 545 | // |
---|
| 546 | // Write a 32-bit integer into the output stream. |
---|
| 547 | // |
---|
| 548 | |
---|
| 549 | void writeInt(int value) throws IOException { |
---|
| 550 | byte[] b = new byte[4]; |
---|
| 551 | b[0] = (byte) ((value >> 24) & 0xff); |
---|
| 552 | b[1] = (byte) ((value >> 16) & 0xff); |
---|
| 553 | b[2] = (byte) ((value >> 8) & 0xff); |
---|
| 554 | b[3] = (byte) (value & 0xff); |
---|
| 555 | os.write(b); |
---|
| 556 | } |
---|
| 557 | |
---|
| 558 | // |
---|
| 559 | // Write the client initialisation message |
---|
| 560 | // |
---|
| 561 | |
---|
| 562 | void writeClientInit() throws IOException { |
---|
| 563 | if (viewer.options.shareDesktop) { |
---|
| 564 | os.write(1); |
---|
| 565 | } else { |
---|
| 566 | os.write(0); |
---|
| 567 | } |
---|
| 568 | viewer.options.disableShareDesktop(); |
---|
| 569 | } |
---|
| 570 | |
---|
| 571 | |
---|
| 572 | // |
---|
| 573 | // Read the server initialisation message |
---|
| 574 | // |
---|
| 575 | |
---|
| 576 | String desktopName; |
---|
| 577 | int framebufferWidth, framebufferHeight; |
---|
| 578 | int bitsPerPixel, depth; |
---|
| 579 | boolean bigEndian, trueColour; |
---|
| 580 | int redMax, greenMax, blueMax, redShift, greenShift, blueShift; |
---|
| 581 | |
---|
| 582 | void readServerInit() throws IOException { |
---|
| 583 | framebufferWidth = is.readUnsignedShort(); |
---|
| 584 | framebufferHeight = is.readUnsignedShort(); |
---|
| 585 | bitsPerPixel = is.readUnsignedByte(); |
---|
| 586 | depth = is.readUnsignedByte(); |
---|
| 587 | bigEndian = (is.readUnsignedByte() != 0); |
---|
| 588 | trueColour = (is.readUnsignedByte() != 0); |
---|
| 589 | redMax = is.readUnsignedShort(); |
---|
| 590 | greenMax = is.readUnsignedShort(); |
---|
| 591 | blueMax = is.readUnsignedShort(); |
---|
| 592 | redShift = is.readUnsignedByte(); |
---|
| 593 | greenShift = is.readUnsignedByte(); |
---|
| 594 | blueShift = is.readUnsignedByte(); |
---|
| 595 | byte[] pad = new byte[3]; |
---|
| 596 | readFully(pad); |
---|
| 597 | int nameLength = is.readInt(); |
---|
| 598 | byte[] name = new byte[nameLength]; |
---|
| 599 | readFully(name); |
---|
| 600 | desktopName = new String(name); |
---|
| 601 | |
---|
| 602 | // Read interaction capabilities (TightVNC protocol extensions) |
---|
| 603 | if (protocolTightVNC) { |
---|
| 604 | int nServerMessageTypes = is.readUnsignedShort(); |
---|
| 605 | int nClientMessageTypes = is.readUnsignedShort(); |
---|
| 606 | int nEncodingTypes = is.readUnsignedShort(); |
---|
| 607 | is.readUnsignedShort(); |
---|
| 608 | readCapabilityList(serverMsgCaps, nServerMessageTypes); |
---|
| 609 | readCapabilityList(clientMsgCaps, nClientMessageTypes); |
---|
| 610 | readCapabilityList(encodingCaps, nEncodingTypes); |
---|
| 611 | } |
---|
| 612 | |
---|
| 613 | inNormalProtocol = true; |
---|
| 614 | } |
---|
| 615 | |
---|
| 616 | |
---|
| 617 | // |
---|
| 618 | // Create session file and write initial protocol messages into it. |
---|
| 619 | // |
---|
| 620 | |
---|
| 621 | void startSession(String fname) throws IOException { |
---|
| 622 | rec = new SessionRecorder(fname); |
---|
| 623 | rec.writeHeader(); |
---|
| 624 | rec.write(versionMsg_3_3.getBytes()); |
---|
| 625 | rec.writeIntBE(SecTypeNone); |
---|
| 626 | rec.writeShortBE(framebufferWidth); |
---|
| 627 | rec.writeShortBE(framebufferHeight); |
---|
| 628 | byte[] fbsServerInitMsg = { |
---|
| 629 | 32, 24, 0, 1, 0, |
---|
| 630 | (byte)0xFF, 0, (byte)0xFF, 0, (byte)0xFF, |
---|
| 631 | 16, 8, 0, 0, 0, 0 |
---|
| 632 | }; |
---|
| 633 | rec.write(fbsServerInitMsg); |
---|
| 634 | rec.writeIntBE(desktopName.length()); |
---|
| 635 | rec.write(desktopName.getBytes()); |
---|
| 636 | numUpdatesInSession = 0; |
---|
| 637 | |
---|
| 638 | // FIXME: If there were e.g. ZRLE updates only, that should not |
---|
| 639 | // affect recording of Zlib and Tight updates. So, actually |
---|
| 640 | // we should maintain separate flags for Zlib, ZRLE and |
---|
| 641 | // Tight, instead of one ``wereZlibUpdates'' variable. |
---|
| 642 | // |
---|
| 643 | if (wereZlibUpdates) |
---|
| 644 | recordFromBeginning = false; |
---|
| 645 | |
---|
| 646 | zlibWarningShown = false; |
---|
| 647 | tightWarningShown = false; |
---|
| 648 | } |
---|
| 649 | |
---|
| 650 | // |
---|
| 651 | // Close session file. |
---|
| 652 | // |
---|
| 653 | |
---|
| 654 | void closeSession() throws IOException { |
---|
| 655 | if (rec != null) { |
---|
| 656 | rec.close(); |
---|
| 657 | rec = null; |
---|
| 658 | } |
---|
| 659 | } |
---|
| 660 | |
---|
| 661 | |
---|
| 662 | // |
---|
| 663 | // Set new framebuffer size |
---|
| 664 | // |
---|
| 665 | |
---|
| 666 | void setFramebufferSize(int width, int height) { |
---|
| 667 | framebufferWidth = width; |
---|
| 668 | framebufferHeight = height; |
---|
| 669 | } |
---|
| 670 | |
---|
| 671 | |
---|
| 672 | // |
---|
| 673 | // Read the server message type |
---|
| 674 | // |
---|
| 675 | |
---|
| 676 | int readServerMessageType() throws IOException { |
---|
| 677 | int msgType = is.readUnsignedByte(); |
---|
| 678 | |
---|
| 679 | // If the session is being recorded: |
---|
| 680 | if (rec != null) { |
---|
| 681 | if (msgType == Bell) { // Save Bell messages in session files. |
---|
| 682 | rec.writeByte(msgType); |
---|
| 683 | if (numUpdatesInSession > 0) |
---|
| 684 | rec.flush(); |
---|
| 685 | } |
---|
| 686 | } |
---|
| 687 | |
---|
| 688 | return msgType; |
---|
| 689 | } |
---|
| 690 | |
---|
| 691 | |
---|
| 692 | // |
---|
| 693 | // Read a FramebufferUpdate message |
---|
| 694 | // |
---|
| 695 | |
---|
| 696 | int updateNRects; |
---|
| 697 | |
---|
| 698 | void readFramebufferUpdate() throws IOException { |
---|
| 699 | is.readByte(); |
---|
| 700 | updateNRects = is.readUnsignedShort(); |
---|
| 701 | |
---|
| 702 | // If the session is being recorded: |
---|
| 703 | if (rec != null) { |
---|
| 704 | rec.writeByte(FramebufferUpdate); |
---|
| 705 | rec.writeByte(0); |
---|
| 706 | rec.writeShortBE(updateNRects); |
---|
| 707 | } |
---|
| 708 | |
---|
| 709 | numUpdatesInSession++; |
---|
| 710 | } |
---|
| 711 | |
---|
| 712 | // Read a FramebufferUpdate rectangle header |
---|
| 713 | |
---|
| 714 | int updateRectX, updateRectY, updateRectW, updateRectH, updateRectEncoding; |
---|
| 715 | |
---|
| 716 | void readFramebufferUpdateRectHdr() throws Exception { |
---|
| 717 | updateRectX = is.readUnsignedShort(); |
---|
| 718 | updateRectY = is.readUnsignedShort(); |
---|
| 719 | updateRectW = is.readUnsignedShort(); |
---|
| 720 | updateRectH = is.readUnsignedShort(); |
---|
| 721 | updateRectEncoding = is.readInt(); |
---|
| 722 | |
---|
| 723 | if (updateRectEncoding == EncodingZlib || |
---|
| 724 | updateRectEncoding == EncodingZRLE || |
---|
| 725 | updateRectEncoding == EncodingTight) |
---|
| 726 | wereZlibUpdates = true; |
---|
| 727 | |
---|
| 728 | // If the session is being recorded: |
---|
| 729 | if (rec != null) { |
---|
| 730 | if (numUpdatesInSession > 1) |
---|
| 731 | rec.flush(); // Flush the output on each rectangle. |
---|
| 732 | rec.writeShortBE(updateRectX); |
---|
| 733 | rec.writeShortBE(updateRectY); |
---|
| 734 | rec.writeShortBE(updateRectW); |
---|
| 735 | rec.writeShortBE(updateRectH); |
---|
| 736 | if (updateRectEncoding == EncodingZlib && !recordFromBeginning) { |
---|
| 737 | // Here we cannot write Zlib-encoded rectangles because the |
---|
| 738 | // decoder won't be able to reproduce zlib stream state. |
---|
| 739 | if (!zlibWarningShown) { |
---|
| 740 | System.out.println("Warning: Raw encoding will be used " + |
---|
| 741 | "instead of Zlib in recorded session."); |
---|
| 742 | zlibWarningShown = true; |
---|
| 743 | } |
---|
| 744 | rec.writeIntBE(EncodingRaw); |
---|
| 745 | } else { |
---|
| 746 | rec.writeIntBE(updateRectEncoding); |
---|
| 747 | if (updateRectEncoding == EncodingTight && !recordFromBeginning && |
---|
| 748 | !tightWarningShown) { |
---|
| 749 | System.out.println("Warning: Re-compressing Tight-encoded " + |
---|
| 750 | "updates for session recording."); |
---|
| 751 | tightWarningShown = true; |
---|
| 752 | } |
---|
| 753 | } |
---|
| 754 | } |
---|
| 755 | |
---|
| 756 | if (updateRectEncoding < 0 || updateRectEncoding > MaxNormalEncoding) |
---|
| 757 | return; |
---|
| 758 | |
---|
| 759 | if (updateRectX + updateRectW > framebufferWidth || |
---|
| 760 | updateRectY + updateRectH > framebufferHeight) { |
---|
| 761 | throw new Exception("Framebuffer update rectangle too large: " + |
---|
| 762 | updateRectW + "x" + updateRectH + " at (" + |
---|
| 763 | updateRectX + "," + updateRectY + ")"); |
---|
| 764 | } |
---|
| 765 | } |
---|
| 766 | |
---|
| 767 | // Read CopyRect source X and Y. |
---|
| 768 | |
---|
| 769 | int copyRectSrcX, copyRectSrcY; |
---|
| 770 | |
---|
| 771 | void readCopyRect() throws IOException { |
---|
| 772 | copyRectSrcX = is.readUnsignedShort(); |
---|
| 773 | copyRectSrcY = is.readUnsignedShort(); |
---|
| 774 | |
---|
| 775 | // If the session is being recorded: |
---|
| 776 | if (rec != null) { |
---|
| 777 | rec.writeShortBE(copyRectSrcX); |
---|
| 778 | rec.writeShortBE(copyRectSrcY); |
---|
| 779 | } |
---|
| 780 | } |
---|
| 781 | |
---|
| 782 | |
---|
| 783 | // |
---|
| 784 | // Read a ServerCutText message |
---|
| 785 | // |
---|
| 786 | |
---|
| 787 | String readServerCutText() throws IOException { |
---|
| 788 | byte[] pad = new byte[3]; |
---|
| 789 | readFully(pad); |
---|
| 790 | int len = is.readInt(); |
---|
| 791 | byte[] text = new byte[len]; |
---|
| 792 | readFully(text); |
---|
| 793 | return new String(text); |
---|
| 794 | } |
---|
| 795 | |
---|
| 796 | |
---|
| 797 | // |
---|
| 798 | // Read an integer in compact representation (1..3 bytes). |
---|
| 799 | // Such format is used as a part of the Tight encoding. |
---|
| 800 | // Also, this method records data if session recording is active and |
---|
| 801 | // the viewer's recordFromBeginning variable is set to true. |
---|
| 802 | // |
---|
| 803 | |
---|
| 804 | int readCompactLen() throws IOException { |
---|
| 805 | int[] portion = new int[3]; |
---|
| 806 | portion[0] = is.readUnsignedByte(); |
---|
| 807 | int byteCount = 1; |
---|
| 808 | int len = portion[0] & 0x7F; |
---|
| 809 | if ((portion[0] & 0x80) != 0) { |
---|
| 810 | portion[1] = is.readUnsignedByte(); |
---|
| 811 | byteCount++; |
---|
| 812 | len |= (portion[1] & 0x7F) << 7; |
---|
| 813 | if ((portion[1] & 0x80) != 0) { |
---|
| 814 | portion[2] = is.readUnsignedByte(); |
---|
| 815 | byteCount++; |
---|
| 816 | len |= (portion[2] & 0xFF) << 14; |
---|
| 817 | } |
---|
| 818 | } |
---|
| 819 | |
---|
| 820 | if (rec != null && recordFromBeginning) |
---|
| 821 | for (int i = 0; i < byteCount; i++) |
---|
| 822 | rec.writeByte(portion[i]); |
---|
| 823 | |
---|
| 824 | return len; |
---|
| 825 | } |
---|
| 826 | |
---|
| 827 | |
---|
| 828 | // |
---|
| 829 | // Write a FramebufferUpdateRequest message |
---|
| 830 | // |
---|
| 831 | |
---|
| 832 | void writeFramebufferUpdateRequest(int x, int y, int w, int h, |
---|
| 833 | boolean incremental) |
---|
| 834 | throws IOException |
---|
| 835 | { |
---|
| 836 | byte[] b = new byte[10]; |
---|
| 837 | |
---|
| 838 | b[0] = (byte) FramebufferUpdateRequest; |
---|
| 839 | b[1] = (byte) (incremental ? 1 : 0); |
---|
| 840 | b[2] = (byte) ((x >> 8) & 0xff); |
---|
| 841 | b[3] = (byte) (x & 0xff); |
---|
| 842 | b[4] = (byte) ((y >> 8) & 0xff); |
---|
| 843 | b[5] = (byte) (y & 0xff); |
---|
| 844 | b[6] = (byte) ((w >> 8) & 0xff); |
---|
| 845 | b[7] = (byte) (w & 0xff); |
---|
| 846 | b[8] = (byte) ((h >> 8) & 0xff); |
---|
| 847 | b[9] = (byte) (h & 0xff); |
---|
| 848 | |
---|
| 849 | os.write(b); |
---|
| 850 | } |
---|
| 851 | |
---|
| 852 | |
---|
| 853 | // |
---|
| 854 | // Write a SetPixelFormat message |
---|
| 855 | // |
---|
| 856 | |
---|
| 857 | void writeSetPixelFormat(int bitsPerPixel, int depth, boolean bigEndian, |
---|
| 858 | boolean trueColour, |
---|
| 859 | int redMax, int greenMax, int blueMax, |
---|
| 860 | int redShift, int greenShift, int blueShift) |
---|
| 861 | throws IOException |
---|
| 862 | { |
---|
| 863 | byte[] b = new byte[20]; |
---|
| 864 | |
---|
| 865 | b[0] = (byte) SetPixelFormat; |
---|
| 866 | b[4] = (byte) bitsPerPixel; |
---|
| 867 | b[5] = (byte) depth; |
---|
| 868 | b[6] = (byte) (bigEndian ? 1 : 0); |
---|
| 869 | b[7] = (byte) (trueColour ? 1 : 0); |
---|
| 870 | b[8] = (byte) ((redMax >> 8) & 0xff); |
---|
| 871 | b[9] = (byte) (redMax & 0xff); |
---|
| 872 | b[10] = (byte) ((greenMax >> 8) & 0xff); |
---|
| 873 | b[11] = (byte) (greenMax & 0xff); |
---|
| 874 | b[12] = (byte) ((blueMax >> 8) & 0xff); |
---|
| 875 | b[13] = (byte) (blueMax & 0xff); |
---|
| 876 | b[14] = (byte) redShift; |
---|
| 877 | b[15] = (byte) greenShift; |
---|
| 878 | b[16] = (byte) blueShift; |
---|
| 879 | |
---|
| 880 | os.write(b); |
---|
| 881 | } |
---|
| 882 | |
---|
| 883 | |
---|
| 884 | // |
---|
| 885 | // Write a FixColourMapEntries message. The values in the red, green and |
---|
| 886 | // blue arrays are from 0 to 65535. |
---|
| 887 | // |
---|
| 888 | |
---|
| 889 | void writeFixColourMapEntries(int firstColour, int nColours, |
---|
| 890 | int[] red, int[] green, int[] blue) |
---|
| 891 | throws IOException |
---|
| 892 | { |
---|
| 893 | byte[] b = new byte[6 + nColours * 6]; |
---|
| 894 | |
---|
| 895 | b[0] = (byte) FixColourMapEntries; |
---|
| 896 | b[2] = (byte) ((firstColour >> 8) & 0xff); |
---|
| 897 | b[3] = (byte) (firstColour & 0xff); |
---|
| 898 | b[4] = (byte) ((nColours >> 8) & 0xff); |
---|
| 899 | b[5] = (byte) (nColours & 0xff); |
---|
| 900 | |
---|
| 901 | for (int i = 0; i < nColours; i++) { |
---|
| 902 | b[6 + i * 6] = (byte) ((red[i] >> 8) & 0xff); |
---|
| 903 | b[6 + i * 6 + 1] = (byte) (red[i] & 0xff); |
---|
| 904 | b[6 + i * 6 + 2] = (byte) ((green[i] >> 8) & 0xff); |
---|
| 905 | b[6 + i * 6 + 3] = (byte) (green[i] & 0xff); |
---|
| 906 | b[6 + i * 6 + 4] = (byte) ((blue[i] >> 8) & 0xff); |
---|
| 907 | b[6 + i * 6 + 5] = (byte) (blue[i] & 0xff); |
---|
| 908 | } |
---|
| 909 | |
---|
| 910 | os.write(b); |
---|
| 911 | } |
---|
| 912 | |
---|
| 913 | |
---|
| 914 | // |
---|
| 915 | // Write a SetEncodings message |
---|
| 916 | // |
---|
| 917 | |
---|
| 918 | void writeSetEncodings(int[] encs, int len) throws IOException { |
---|
| 919 | byte[] b = new byte[4 + 4 * len]; |
---|
| 920 | |
---|
| 921 | b[0] = (byte) SetEncodings; |
---|
| 922 | b[2] = (byte) ((len >> 8) & 0xff); |
---|
| 923 | b[3] = (byte) (len & 0xff); |
---|
| 924 | |
---|
| 925 | for (int i = 0; i < len; i++) { |
---|
| 926 | b[4 + 4 * i] = (byte) ((encs[i] >> 24) & 0xff); |
---|
| 927 | b[5 + 4 * i] = (byte) ((encs[i] >> 16) & 0xff); |
---|
| 928 | b[6 + 4 * i] = (byte) ((encs[i] >> 8) & 0xff); |
---|
| 929 | b[7 + 4 * i] = (byte) (encs[i] & 0xff); |
---|
| 930 | } |
---|
| 931 | |
---|
| 932 | os.write(b); |
---|
| 933 | } |
---|
| 934 | |
---|
| 935 | |
---|
| 936 | // |
---|
| 937 | // Write a ClientCutText message |
---|
| 938 | // |
---|
| 939 | |
---|
| 940 | void writeClientCutText(String text) throws IOException { |
---|
| 941 | byte[] b = new byte[8 + text.length()]; |
---|
| 942 | |
---|
| 943 | b[0] = (byte) ClientCutText; |
---|
| 944 | b[4] = (byte) ((text.length() >> 24) & 0xff); |
---|
| 945 | b[5] = (byte) ((text.length() >> 16) & 0xff); |
---|
| 946 | b[6] = (byte) ((text.length() >> 8) & 0xff); |
---|
| 947 | b[7] = (byte) (text.length() & 0xff); |
---|
| 948 | |
---|
| 949 | System.arraycopy(text.getBytes(), 0, b, 8, text.length()); |
---|
| 950 | |
---|
| 951 | os.write(b); |
---|
| 952 | } |
---|
| 953 | |
---|
| 954 | |
---|
| 955 | // |
---|
| 956 | // A buffer for putting pointer and keyboard events before being sent. This |
---|
| 957 | // is to ensure that multiple RFB events generated from a single Java Event |
---|
| 958 | // will all be sent in a single network packet. The maximum possible |
---|
| 959 | // length is 4 modifier down events, a single key event followed by 4 |
---|
| 960 | // modifier up events i.e. 9 key events or 72 bytes. |
---|
| 961 | // |
---|
| 962 | |
---|
| 963 | byte[] eventBuf = new byte[72]; |
---|
| 964 | int eventBufLen; |
---|
| 965 | |
---|
| 966 | |
---|
| 967 | // Useful shortcuts for modifier masks. |
---|
| 968 | |
---|
| 969 | final static int CTRL_MASK = InputEvent.CTRL_MASK; |
---|
| 970 | final static int SHIFT_MASK = InputEvent.SHIFT_MASK; |
---|
| 971 | final static int META_MASK = InputEvent.META_MASK; |
---|
| 972 | final static int ALT_MASK = InputEvent.ALT_MASK; |
---|
| 973 | |
---|
| 974 | |
---|
| 975 | // |
---|
| 976 | // Write a pointer event message. We may need to send modifier key events |
---|
| 977 | // around it to set the correct modifier state. |
---|
| 978 | // |
---|
| 979 | |
---|
| 980 | int pointerMask = 0; |
---|
| 981 | |
---|
| 982 | void writePointerEvent(MouseEvent evt) throws IOException { |
---|
| 983 | int modifiers = evt.getModifiers(); |
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| 984 | |
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| 985 | int mask2 = 2; |
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| 986 | int mask3 = 4; |
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| 987 | if (viewer.options.reverseMouseButtons2And3) { |
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| 988 | mask2 = 4; |
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| 989 | mask3 = 2; |
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| 990 | } |
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| 991 | |
---|
| 992 | // Note: For some reason, AWT does not set BUTTON1_MASK on left |
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| 993 | // button presses. Here we think that it was the left button if |
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| 994 | // modifiers do not include BUTTON2_MASK or BUTTON3_MASK. |
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| 995 | |
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| 996 | if (evt.getID() == MouseEvent.MOUSE_PRESSED) { |
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| 997 | if ((modifiers & InputEvent.BUTTON2_MASK) != 0) { |
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| 998 | pointerMask = mask2; |
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| 999 | modifiers &= ~ALT_MASK; |
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| 1000 | } else if ((modifiers & InputEvent.BUTTON3_MASK) != 0) { |
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| 1001 | pointerMask = mask3; |
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| 1002 | modifiers &= ~META_MASK; |
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| 1003 | } else { |
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| 1004 | pointerMask = 1; |
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| 1005 | } |
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| 1006 | } else if (evt.getID() == MouseEvent.MOUSE_RELEASED) { |
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| 1007 | pointerMask = 0; |
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| 1008 | if ((modifiers & InputEvent.BUTTON2_MASK) != 0) { |
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| 1009 | modifiers &= ~ALT_MASK; |
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| 1010 | } else if ((modifiers & InputEvent.BUTTON3_MASK) != 0) { |
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| 1011 | modifiers &= ~META_MASK; |
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| 1012 | } |
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| 1013 | } |
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| 1014 | |
---|
| 1015 | eventBufLen = 0; |
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| 1016 | writeModifierKeyEvents(modifiers); |
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| 1017 | |
---|
| 1018 | int x = evt.getX(); |
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| 1019 | int y = evt.getY(); |
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| 1020 | |
---|
| 1021 | if (x < 0) x = 0; |
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| 1022 | if (y < 0) y = 0; |
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| 1023 | |
---|
| 1024 | eventBuf[eventBufLen++] = (byte) PointerEvent; |
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| 1025 | eventBuf[eventBufLen++] = (byte) pointerMask; |
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| 1026 | eventBuf[eventBufLen++] = (byte) ((x >> 8) & 0xff); |
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| 1027 | eventBuf[eventBufLen++] = (byte) (x & 0xff); |
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| 1028 | eventBuf[eventBufLen++] = (byte) ((y >> 8) & 0xff); |
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| 1029 | eventBuf[eventBufLen++] = (byte) (y & 0xff); |
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| 1030 | |
---|
| 1031 | // |
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| 1032 | // Always release all modifiers after an "up" event |
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| 1033 | // |
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| 1034 | |
---|
| 1035 | if (pointerMask == 0) { |
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| 1036 | writeModifierKeyEvents(0); |
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| 1037 | } |
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| 1038 | |
---|
| 1039 | os.write(eventBuf, 0, eventBufLen); |
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| 1040 | } |
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| 1041 | |
---|
| 1042 | |
---|
| 1043 | // |
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| 1044 | // Write a key event message. We may need to send modifier key events |
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| 1045 | // around it to set the correct modifier state. Also we need to translate |
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| 1046 | // from the Java key values to the X keysym values used by the RFB protocol. |
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| 1047 | // |
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| 1048 | |
---|
| 1049 | void writeKeyEvent(KeyEvent evt) throws IOException { |
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| 1050 | |
---|
| 1051 | int keyChar = evt.getKeyChar(); |
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| 1052 | |
---|
| 1053 | // |
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| 1054 | // Ignore event if only modifiers were pressed. |
---|
| 1055 | // |
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| 1056 | |
---|
| 1057 | // Some JVMs return 0 instead of CHAR_UNDEFINED in getKeyChar(). |
---|
| 1058 | if (keyChar == 0) |
---|
| 1059 | keyChar = KeyEvent.CHAR_UNDEFINED; |
---|
| 1060 | |
---|
| 1061 | if (keyChar == KeyEvent.CHAR_UNDEFINED) { |
---|
| 1062 | int code = evt.getKeyCode(); |
---|
| 1063 | if (code == KeyEvent.VK_CONTROL || code == KeyEvent.VK_SHIFT || |
---|
| 1064 | code == KeyEvent.VK_META || code == KeyEvent.VK_ALT) |
---|
| 1065 | return; |
---|
| 1066 | } |
---|
| 1067 | |
---|
| 1068 | // |
---|
| 1069 | // Key press or key release? |
---|
| 1070 | // |
---|
| 1071 | |
---|
| 1072 | boolean down = (evt.getID() == KeyEvent.KEY_PRESSED); |
---|
| 1073 | |
---|
| 1074 | int key; |
---|
| 1075 | if (evt.isActionKey()) { |
---|
| 1076 | |
---|
| 1077 | // |
---|
| 1078 | // An action key should be one of the following. |
---|
| 1079 | // If not then just ignore the event. |
---|
| 1080 | // |
---|
| 1081 | |
---|
| 1082 | switch(evt.getKeyCode()) { |
---|
| 1083 | case KeyEvent.VK_HOME: key = 0xff50; break; |
---|
| 1084 | case KeyEvent.VK_LEFT: key = 0xff51; break; |
---|
| 1085 | case KeyEvent.VK_UP: key = 0xff52; break; |
---|
| 1086 | case KeyEvent.VK_RIGHT: key = 0xff53; break; |
---|
| 1087 | case KeyEvent.VK_DOWN: key = 0xff54; break; |
---|
| 1088 | case KeyEvent.VK_PAGE_UP: key = 0xff55; break; |
---|
| 1089 | case KeyEvent.VK_PAGE_DOWN: key = 0xff56; break; |
---|
| 1090 | case KeyEvent.VK_END: key = 0xff57; break; |
---|
| 1091 | case KeyEvent.VK_INSERT: key = 0xff63; break; |
---|
| 1092 | case KeyEvent.VK_F1: key = 0xffbe; break; |
---|
| 1093 | case KeyEvent.VK_F2: key = 0xffbf; break; |
---|
| 1094 | case KeyEvent.VK_F3: key = 0xffc0; break; |
---|
| 1095 | case KeyEvent.VK_F4: key = 0xffc1; break; |
---|
| 1096 | case KeyEvent.VK_F5: key = 0xffc2; break; |
---|
| 1097 | case KeyEvent.VK_F6: key = 0xffc3; break; |
---|
| 1098 | case KeyEvent.VK_F7: key = 0xffc4; break; |
---|
| 1099 | case KeyEvent.VK_F8: key = 0xffc5; break; |
---|
| 1100 | case KeyEvent.VK_F9: key = 0xffc6; break; |
---|
| 1101 | case KeyEvent.VK_F10: key = 0xffc7; break; |
---|
| 1102 | case KeyEvent.VK_F11: key = 0xffc8; break; |
---|
| 1103 | case KeyEvent.VK_F12: key = 0xffc9; break; |
---|
| 1104 | default: |
---|
| 1105 | return; |
---|
| 1106 | } |
---|
| 1107 | |
---|
| 1108 | } else { |
---|
| 1109 | |
---|
| 1110 | // |
---|
| 1111 | // A "normal" key press. Ordinary ASCII characters go straight through. |
---|
| 1112 | // For CTRL-<letter>, CTRL is sent separately so just send <letter>. |
---|
| 1113 | // Backspace, tab, return, escape and delete have special keysyms. |
---|
| 1114 | // Anything else we ignore. |
---|
| 1115 | // |
---|
| 1116 | |
---|
| 1117 | key = keyChar; |
---|
| 1118 | |
---|
| 1119 | if (key < 0x20) { |
---|
| 1120 | if (evt.isControlDown()) { |
---|
| 1121 | key += 0x60; |
---|
| 1122 | } else { |
---|
| 1123 | switch(key) { |
---|
| 1124 | case KeyEvent.VK_BACK_SPACE: key = 0xff08; break; |
---|
| 1125 | case KeyEvent.VK_TAB: key = 0xff09; break; |
---|
| 1126 | case KeyEvent.VK_ENTER: key = 0xff0d; break; |
---|
| 1127 | case KeyEvent.VK_ESCAPE: key = 0xff1b; break; |
---|
| 1128 | } |
---|
| 1129 | } |
---|
| 1130 | } else if (key == 0x7f) { |
---|
| 1131 | // Delete |
---|
| 1132 | key = 0xffff; |
---|
| 1133 | } else if (key > 0xff) { |
---|
| 1134 | // JDK1.1 on X incorrectly passes some keysyms straight through, |
---|
| 1135 | // so we do too. JDK1.1.4 seems to have fixed this. |
---|
| 1136 | // The keysyms passed are 0xff00 .. XK_BackSpace .. XK_Delete |
---|
| 1137 | // Also, we pass through foreign currency keysyms (0x20a0..0x20af). |
---|
| 1138 | if ((key < 0xff00 || key > 0xffff) && |
---|
| 1139 | !(key >= 0x20a0 && key <= 0x20af)) |
---|
| 1140 | return; |
---|
| 1141 | } |
---|
| 1142 | } |
---|
| 1143 | |
---|
| 1144 | // Fake keyPresses for keys that only generates keyRelease events |
---|
| 1145 | if ((key == 0xe5) || (key == 0xc5) || // XK_aring / XK_Aring |
---|
| 1146 | (key == 0xe4) || (key == 0xc4) || // XK_adiaeresis / XK_Adiaeresis |
---|
| 1147 | (key == 0xf6) || (key == 0xd6) || // XK_odiaeresis / XK_Odiaeresis |
---|
| 1148 | (key == 0xa7) || (key == 0xbd) || // XK_section / XK_onehalf |
---|
| 1149 | (key == 0xa3)) { // XK_sterling |
---|
| 1150 | // Make sure we do not send keypress events twice on platforms |
---|
| 1151 | // with correct JVMs (those that actually report KeyPress for all |
---|
| 1152 | // keys) |
---|
| 1153 | if (down) |
---|
| 1154 | brokenKeyPressed = true; |
---|
| 1155 | |
---|
| 1156 | if (!down && !brokenKeyPressed) { |
---|
| 1157 | // We've got a release event for this key, but haven't received |
---|
| 1158 | // a press. Fake it. |
---|
| 1159 | eventBufLen = 0; |
---|
| 1160 | writeModifierKeyEvents(evt.getModifiers()); |
---|
| 1161 | writeKeyEvent(key, true); |
---|
| 1162 | os.write(eventBuf, 0, eventBufLen); |
---|
| 1163 | } |
---|
| 1164 | |
---|
| 1165 | if (!down) |
---|
| 1166 | brokenKeyPressed = false; |
---|
| 1167 | } |
---|
| 1168 | |
---|
| 1169 | eventBufLen = 0; |
---|
| 1170 | writeModifierKeyEvents(evt.getModifiers()); |
---|
| 1171 | writeKeyEvent(key, down); |
---|
| 1172 | |
---|
| 1173 | // Always release all modifiers after an "up" event |
---|
| 1174 | if (!down) |
---|
| 1175 | writeModifierKeyEvents(0); |
---|
| 1176 | |
---|
| 1177 | os.write(eventBuf, 0, eventBufLen); |
---|
| 1178 | } |
---|
| 1179 | |
---|
| 1180 | |
---|
| 1181 | // |
---|
| 1182 | // Add a raw key event with the given X keysym to eventBuf. |
---|
| 1183 | // |
---|
| 1184 | |
---|
| 1185 | void writeKeyEvent(int keysym, boolean down) { |
---|
| 1186 | eventBuf[eventBufLen++] = (byte) KeyboardEvent; |
---|
| 1187 | eventBuf[eventBufLen++] = (byte) (down ? 1 : 0); |
---|
| 1188 | eventBuf[eventBufLen++] = (byte) 0; |
---|
| 1189 | eventBuf[eventBufLen++] = (byte) 0; |
---|
| 1190 | eventBuf[eventBufLen++] = (byte) ((keysym >> 24) & 0xff); |
---|
| 1191 | eventBuf[eventBufLen++] = (byte) ((keysym >> 16) & 0xff); |
---|
| 1192 | eventBuf[eventBufLen++] = (byte) ((keysym >> 8) & 0xff); |
---|
| 1193 | eventBuf[eventBufLen++] = (byte) (keysym & 0xff); |
---|
| 1194 | } |
---|
| 1195 | |
---|
| 1196 | |
---|
| 1197 | // |
---|
| 1198 | // Write key events to set the correct modifier state. |
---|
| 1199 | // |
---|
| 1200 | |
---|
| 1201 | int oldModifiers = 0; |
---|
| 1202 | |
---|
| 1203 | void writeModifierKeyEvents(int newModifiers) { |
---|
| 1204 | if ((newModifiers & CTRL_MASK) != (oldModifiers & CTRL_MASK)) |
---|
| 1205 | writeKeyEvent(0xffe3, (newModifiers & CTRL_MASK) != 0); |
---|
| 1206 | |
---|
| 1207 | if ((newModifiers & SHIFT_MASK) != (oldModifiers & SHIFT_MASK)) |
---|
| 1208 | writeKeyEvent(0xffe1, (newModifiers & SHIFT_MASK) != 0); |
---|
| 1209 | |
---|
| 1210 | if ((newModifiers & META_MASK) != (oldModifiers & META_MASK)) |
---|
| 1211 | writeKeyEvent(0xffe7, (newModifiers & META_MASK) != 0); |
---|
| 1212 | |
---|
| 1213 | if ((newModifiers & ALT_MASK) != (oldModifiers & ALT_MASK)) |
---|
| 1214 | writeKeyEvent(0xffe9, (newModifiers & ALT_MASK) != 0); |
---|
| 1215 | |
---|
| 1216 | oldModifiers = newModifiers; |
---|
| 1217 | } |
---|
| 1218 | |
---|
| 1219 | |
---|
| 1220 | // |
---|
| 1221 | // Compress and write the data into the recorded session file. This |
---|
| 1222 | // method assumes the recording is on (rec != null). |
---|
| 1223 | // |
---|
| 1224 | |
---|
| 1225 | void recordCompressedData(byte[] data, int off, int len) throws IOException { |
---|
| 1226 | Deflater deflater = new Deflater(); |
---|
| 1227 | deflater.setInput(data, off, len); |
---|
| 1228 | int bufSize = len + len / 100 + 12; |
---|
| 1229 | byte[] buf = new byte[bufSize]; |
---|
| 1230 | deflater.finish(); |
---|
| 1231 | int compressedSize = deflater.deflate(buf); |
---|
| 1232 | recordCompactLen(compressedSize); |
---|
| 1233 | rec.write(buf, 0, compressedSize); |
---|
| 1234 | } |
---|
| 1235 | |
---|
| 1236 | void recordCompressedData(byte[] data) throws IOException { |
---|
| 1237 | recordCompressedData(data, 0, data.length); |
---|
| 1238 | } |
---|
| 1239 | |
---|
| 1240 | // |
---|
| 1241 | // Write an integer in compact representation (1..3 bytes) into the |
---|
| 1242 | // recorded session file. This method assumes the recording is on |
---|
| 1243 | // (rec != null). |
---|
| 1244 | // |
---|
| 1245 | |
---|
| 1246 | void recordCompactLen(int len) throws IOException { |
---|
| 1247 | byte[] buf = new byte[3]; |
---|
| 1248 | int bytes = 0; |
---|
| 1249 | buf[bytes++] = (byte)(len & 0x7F); |
---|
| 1250 | if (len > 0x7F) { |
---|
| 1251 | buf[bytes-1] |= 0x80; |
---|
| 1252 | buf[bytes++] = (byte)(len >> 7 & 0x7F); |
---|
| 1253 | if (len > 0x3FFF) { |
---|
| 1254 | buf[bytes-1] |= 0x80; |
---|
| 1255 | buf[bytes++] = (byte)(len >> 14 & 0xFF); |
---|
| 1256 | } |
---|
| 1257 | } |
---|
| 1258 | rec.write(buf, 0, bytes); |
---|
| 1259 | } |
---|
| 1260 | |
---|
| 1261 | public void startTiming() { |
---|
| 1262 | timing = true; |
---|
| 1263 | |
---|
| 1264 | // Carry over up to 1s worth of previous rate for smoothing. |
---|
| 1265 | |
---|
| 1266 | if (timeWaitedIn100us > 10000) { |
---|
| 1267 | timedKbits = timedKbits * 10000 / timeWaitedIn100us; |
---|
| 1268 | timeWaitedIn100us = 10000; |
---|
| 1269 | } |
---|
| 1270 | } |
---|
| 1271 | |
---|
| 1272 | public void stopTiming() { |
---|
| 1273 | timing = false; |
---|
| 1274 | if (timeWaitedIn100us < timedKbits/2) |
---|
| 1275 | timeWaitedIn100us = timedKbits/2; // upper limit 20Mbit/s |
---|
| 1276 | } |
---|
| 1277 | |
---|
| 1278 | public long kbitsPerSecond() { |
---|
| 1279 | return timedKbits * 10000 / timeWaitedIn100us; |
---|
| 1280 | } |
---|
| 1281 | |
---|
| 1282 | public long timeWaited() { |
---|
| 1283 | return timeWaitedIn100us; |
---|
| 1284 | } |
---|
| 1285 | |
---|
| 1286 | public void readFully(byte b[]) throws IOException { |
---|
| 1287 | readFully(b, 0, b.length); |
---|
| 1288 | } |
---|
| 1289 | |
---|
| 1290 | public void readFully(byte b[], int off, int len) throws IOException { |
---|
| 1291 | long before = 0; |
---|
| 1292 | if (timing) |
---|
| 1293 | before = System.currentTimeMillis(); |
---|
| 1294 | |
---|
| 1295 | is.readFully(b, off, len); |
---|
| 1296 | |
---|
| 1297 | if (timing) { |
---|
| 1298 | long after = System.currentTimeMillis(); |
---|
| 1299 | long newTimeWaited = (after - before) * 10; |
---|
| 1300 | int newKbits = len * 8 / 1000; |
---|
| 1301 | |
---|
| 1302 | // limit rate to between 10kbit/s and 40Mbit/s |
---|
| 1303 | |
---|
| 1304 | if (newTimeWaited > newKbits*1000) newTimeWaited = newKbits*1000; |
---|
| 1305 | if (newTimeWaited < newKbits/4) newTimeWaited = newKbits/4; |
---|
| 1306 | |
---|
| 1307 | timeWaitedIn100us += newTimeWaited; |
---|
| 1308 | timedKbits += newKbits; |
---|
| 1309 | } |
---|
| 1310 | } |
---|
| 1311 | |
---|
| 1312 | } |
---|