mirror of
https://github.com/kasmtech/KasmVNC.git
synced 2024-12-01 04:23:22 +01:00
569 lines
17 KiB
C++
569 lines
17 KiB
C++
/* Copyright (C) 2002-2005 RealVNC Ltd. All Rights Reserved.
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* Copyright 2011-2015 Pierre Ossman for Cendio AB
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*
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* This is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This software 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 General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this software; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
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* USA.
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*/
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#include <fcntl.h>
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#include <stdio.h>
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#include <string.h>
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#include <unistd.h>
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#include <errno.h>
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#include <set>
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#include <string>
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#include <vector>
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#include <rfb/Configuration.h>
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#include <rfb/Logger_stdio.h>
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#include <rfb/LogWriter.h>
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#include <rfb/util.h>
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#include <rfb/ServerCore.h>
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#include <rdr/HexOutStream.h>
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#include <rfb/LogWriter.h>
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#include <rfb/Hostname.h>
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#include <rfb/Region.h>
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#include <rfb/ledStates.h>
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#include <rfb/Watermark.h>
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#include <network/iceip.h>
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#include <network/TcpSocket.h>
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#include <network/UnixSocket.h>
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#include "XserverDesktop.h"
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#include "vncExtInit.h"
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#include "vncHooks.h"
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#include "vncBlockHandler.h"
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#include "vncSelection.h"
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#include "XorgGlue.h"
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#include "RandrGlue.h"
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#include "xorg-version.h"
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extern "C" {
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void vncSetGlueContext(int screenIndex);
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int wakeuppipe[2];
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}
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using namespace rfb;
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static rfb::LogWriter vlog("vncext");
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// We can't safely get this from Xorg
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#define MAXSCREENS 16
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static unsigned long vncExtGeneration = 0;
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static bool initialised = false;
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static XserverDesktop* desktop[MAXSCREENS] = { 0, };
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void* vncFbptr[MAXSCREENS] = { 0, };
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int vncFbstride[MAXSCREENS];
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int vncInetdSock = -1;
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static std::vector<dlp_mimetype_t> dlp_mimetypes;
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struct CaseInsensitiveCompare {
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bool operator() (const std::string &a, const std::string &b) const {
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return strcasecmp(a.c_str(), b.c_str()) < 0;
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}
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};
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typedef std::set<std::string, CaseInsensitiveCompare> ParamSet;
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static ParamSet allowOverrideSet;
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rfb::AliasParameter rfbwait("rfbwait", "Alias for ClientWaitTimeMillis",
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&rfb::Server::clientWaitTimeMillis);
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rfb::IntParameter rfbport("rfbport", "TCP port to listen for RFB protocol",0);
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rfb::StringParameter rfbunixpath("rfbunixpath", "Unix socket to listen for RFB protocol", "");
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rfb::IntParameter rfbunixmode("rfbunixmode", "Unix socket access mode", 0600);
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rfb::StringParameter desktopName("desktop", "Name of VNC desktop","x11");
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rfb::BoolParameter localhostOnly("localhost",
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"Only allow connections from localhost",
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false);
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rfb::BoolParameter noWebsocket("noWebsocket",
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"Listen on a traditional VNC port instead of websocket",
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false);
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rfb::IntParameter websocketPort("websocketPort", "websocket port to listen for", 6800);
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rfb::StringParameter cert("cert", "SSL pem cert to use for websocket connections", "");
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rfb::StringParameter certkey("key", "SSL pem key to use for websocket connections (if separate)", "");
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rfb::BoolParameter sslonly("sslOnly", "Require SSL for websockets", false);
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rfb::BoolParameter disablebasicauth("DisableBasicAuth", "Disable basic auth for websockets", false);
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rfb::StringParameter interface("interface",
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"listen on the specified network address",
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"all");
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rfb::BoolParameter avoidShiftNumLock("AvoidShiftNumLock",
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"Avoid fake Shift presses for keys affected by NumLock.",
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true);
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rfb::StringParameter allowOverride("AllowOverride",
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"Comma separated list of parameters that can be modified using VNC extension.",
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"desktop,AcceptPointerEvents,SendCutText,AcceptCutText,SendPrimary,SetPrimary");
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rfb::BoolParameter setPrimary("SetPrimary", "Set the PRIMARY as well "
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"as the CLIPBOARD selection", true);
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rfb::BoolParameter sendPrimary("SendPrimary",
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"Send the PRIMARY as well as the CLIPBOARD selection",
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false);
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static PixelFormat vncGetPixelFormat(int scrIdx)
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{
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int depth, bpp;
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int trueColour, bigEndian;
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int redMask, greenMask, blueMask;
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int redShift, greenShift, blueShift;
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int redMax, greenMax, blueMax;
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vncGetScreenFormat(scrIdx, &depth, &bpp, &trueColour, &bigEndian,
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&redMask, &greenMask, &blueMask);
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if (!trueColour) {
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vlog.error("pseudocolour not supported");
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abort();
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}
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redShift = ffs(redMask) - 1;
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greenShift = ffs(greenMask) - 1;
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blueShift = ffs(blueMask) - 1;
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redMax = redMask >> redShift;
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greenMax = greenMask >> greenShift;
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blueMax = blueMask >> blueShift;
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return PixelFormat(bpp, depth, bigEndian, trueColour,
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redMax, greenMax, blueMax,
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redShift, greenShift, blueShift);
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}
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static void parseOverrideList(const char *text, ParamSet &out)
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{
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for (const char* iter = text; ; ++iter) {
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if (*iter == ',' || *iter == '\0') {
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out.insert(std::string(text, iter));
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text = iter + 1;
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if (*iter == '\0')
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break;
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}
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}
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}
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static void parseClipTypes()
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{
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char *str = strdup(Server::DLP_Clip_Types);
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char * const origstr = str;
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while (1) {
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char *cur = strsep(&str, ",");
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if (!cur)
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break;
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if (!cur[0])
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continue;
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// Hardcoded filters
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if (!strcmp(cur, "TEXT") ||
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!strcmp(cur, "STRING") ||
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strstr(cur, "text/plain") ||
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!strcmp(cur, "UTF8_STRING"))
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continue;
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struct dlp_mimetype_t m;
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strncpy(m.mime, cur, sizeof(m.mime));
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m.mime[sizeof(m.mime) - 1] = '\0';
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dlp_mimetypes.push_back(m);
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vlog.debug("Adding DLP binary mime type %s", m.mime);
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}
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vlog.debug("Total %u binary mime types", dlp_mimetypes.size());
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free(origstr);
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}
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void vncExtensionInit(void)
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{
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if (vncExtGeneration == vncGetServerGeneration()) {
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vlog.error("vncExtensionInit: called twice in same generation?");
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return;
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}
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vncExtGeneration = vncGetServerGeneration();
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if (vncGetScreenCount() > MAXSCREENS)
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vncFatalError("vncExtensionInit: too many screens\n");
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if (sizeof(ShortRect) != sizeof(struct UpdateRect))
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vncFatalError("vncExtensionInit: Incompatible ShortRect size\n");
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vncAddExtension();
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if (!initialised) {
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parseClipTypes();
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getPublicIP();
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}
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vncSelectionInit();
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vlog.info("VNC extension running!");
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try {
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if (!initialised) {
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rfb::initStdIOLoggers();
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parseOverrideList(allowOverride, allowOverrideSet);
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allowOverride.setImmutable();
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if (!Server::DLP_ClipLog[0] ||
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(strcmp(Server::DLP_ClipLog, "off") &&
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strcmp(Server::DLP_ClipLog, "info") &&
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strcmp(Server::DLP_ClipLog, "verbose")))
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vncFatalError("Invalid value to %s", Server::DLP_ClipLog.getName());
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unsigned dummyX, dummyY;
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if (!Server::maxVideoResolution[0] ||
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sscanf(Server::maxVideoResolution, "%ux%u", &dummyX, &dummyY) != 2 ||
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dummyX < 16 ||
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dummyY < 16)
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vncFatalError("Invalid value to %s", Server::maxVideoResolution.getName());
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if (!watermarkInit())
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vncFatalError("Invalid watermark params");
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pipe(wakeuppipe);
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const int flags = fcntl(wakeuppipe[0], F_GETFL, 0);
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fcntl(wakeuppipe[0], F_SETFL, flags | O_NONBLOCK);
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vncSetNotifyFd(wakeuppipe[0], 0, true, false);
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unsigned i;
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for (i = 0; i < MAX_UNIX_RELAYS; i++) {
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if (unixrelays[i] == -1)
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break;
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vncSetNotifyFd(unixrelays[i], 0, true, false);
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vlog.info("Listening to unix relay socket %s", unixrelaynames[i]);
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}
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initialised = true;
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}
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for (int scr = 0; scr < vncGetScreenCount(); scr++) {
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if (!desktop[scr]) {
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std::list<network::SocketListener*> listeners;
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if (scr == 0 && vncInetdSock != -1) {
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if (network::isSocketListening(vncInetdSock))
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{
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listeners.push_back(new network::TcpListener(vncInetdSock));
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vlog.info("inetd wait");
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}
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} else if (rfbunixpath.getValueStr()[0] != '\0') {
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char path[PATH_MAX];
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int mode = (int)rfbunixmode;
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if (scr == 0)
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strncpy(path, rfbunixpath, sizeof(path));
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else
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snprintf(path, sizeof(path), "%s.%d",
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rfbunixpath.getValueStr(), scr);
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path[sizeof(path)-1] = '\0';
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listeners.push_back(new network::UnixListener(path, mode));
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vlog.info("Listening for VNC connections on %s (mode %04o)",
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path, mode);
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} else {
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const char *addr = interface;
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int port = rfbport;
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if (port == 0) port = 5900 + atoi(vncGetDisplay());
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port += 1000 * scr;
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if (strcasecmp(addr, "all") == 0)
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addr = 0;
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if (!noWebsocket)
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network::createWebsocketListeners(&listeners, websocketPort,
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localhostOnly ? "local" : addr,
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sslonly, cert, certkey, disablebasicauth, httpDir);
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else if (localhostOnly)
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network::createLocalTcpListeners(&listeners, port);
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else
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network::createTcpListeners(&listeners, addr, port);
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if (noWebsocket)
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vlog.info("Listening for VNC connections on %s interface(s), port %d",
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localhostOnly ? "local" : (const char*)interface,
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port);
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else
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vlog.info("Listening for websocket connections on %s interface(s), port %d",
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localhostOnly ? "local" : (const char*)interface,
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(int) websocketPort);
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}
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CharArray desktopNameStr(desktopName.getData());
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PixelFormat pf = vncGetPixelFormat(scr);
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vncSetGlueContext(scr);
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desktop[scr] = new XserverDesktop(scr,
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listeners,
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desktopNameStr.buf,
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pf,
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vncGetScreenWidth(),
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vncGetScreenHeight(),
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vncFbptr[scr],
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vncFbstride[scr]);
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vlog.info("created VNC server for screen %d", scr);
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if (scr == 0 && vncInetdSock != -1 && listeners.empty()) {
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network::Socket* sock = new network::TcpSocket(vncInetdSock);
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desktop[scr]->addClient(sock, false);
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vlog.info("added inetd sock");
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}
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}
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vncHooksInit(scr);
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}
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} catch (rdr::Exception& e) {
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vncFatalError("vncExtInit: %s\n",e.str());
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}
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vncRegisterBlockHandlers();
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}
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void vncExtensionClose(void)
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{
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try {
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for (int scr = 0; scr < vncGetScreenCount(); scr++) {
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delete desktop[scr];
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desktop[scr] = NULL;
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}
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} catch (rdr::Exception& e) {
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vncFatalError("vncExtInit: %s\n",e.str());
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}
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}
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void vncHandleSocketEvent(int fd, int scrIdx, int read, int write)
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{
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desktop[scrIdx]->handleSocketEvent(fd, read, write);
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}
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void vncCallBlockHandlers(int* timeout)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->blockHandler(timeout);
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}
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int vncGetAvoidShiftNumLock(void)
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{
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return (bool)avoidShiftNumLock;
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}
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int vncGetSetPrimary(void)
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{
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return (bool)setPrimary;
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}
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int vncGetSendPrimary(void)
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{
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return (bool)sendPrimary;
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}
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void vncUpdateDesktopName(void)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->setDesktopName(desktopName);
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}
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void vncAnnounceClipboard(int available)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->announceClipboard(available);
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}
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void vncSendBinaryClipboardData(const char* mime, const unsigned char *data,
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const unsigned len)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->sendBinaryClipboardData(mime, data, len);
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}
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void vncGetBinaryClipboardData(const char *mime, const unsigned char **ptr,
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unsigned *len)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->getBinaryClipboardData(mime, ptr, len);
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}
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void vncClearBinaryClipboardData()
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->clearBinaryClipboardData();
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}
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int vncConnectClient(const char *addr)
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{
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if (strlen(addr) == 0) {
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try {
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desktop[0]->disconnectClients();
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} catch (rdr::Exception& e) {
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vlog.error("Disconnecting all clients: %s",e.str());
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return -1;
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}
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return 0;
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}
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char *host;
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int port;
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getHostAndPort(addr, &host, &port, 5500);
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try {
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network::Socket* sock = new network::TcpSocket(host, port);
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delete [] host;
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desktop[0]->addClient(sock, true);
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} catch (rdr::Exception& e) {
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vlog.error("Reverse connection: %s",e.str());
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return -1;
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}
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return 0;
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}
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void vncGetQueryConnect(uint32_t *opaqueId, const char**username,
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const char **address, int *timeout)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++) {
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desktop[scr]->getQueryConnect(opaqueId, username, address, timeout);
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if (opaqueId != 0)
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break;
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}
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}
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void vncApproveConnection(uint32_t opaqueId, int approve)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++) {
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desktop[scr]->approveConnection(opaqueId, approve,
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"Connection rejected by local user");
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}
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}
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void vncBell()
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->bell();
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}
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void vncSetLEDState(unsigned long leds)
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{
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unsigned int state;
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state = 0;
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if (leds & (1 << 0))
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state |= ledCapsLock;
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if (leds & (1 << 1))
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state |= ledNumLock;
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if (leds & (1 << 2))
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state |= ledScrollLock;
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->setLEDState(state);
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}
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void vncAddChanged(int scrIdx, const struct UpdateRect *extents,
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int nRects, const struct UpdateRect *rects)
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{
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Region reg;
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reg.setExtentsAndOrderedRects((const ShortRect*)extents,
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nRects, (const ShortRect*)rects);
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desktop[scrIdx]->add_changed(reg);
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}
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void vncAddCopied(int scrIdx, const struct UpdateRect *extents,
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int nRects, const struct UpdateRect *rects,
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int dx, int dy)
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{
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Region reg;
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reg.setExtentsAndOrderedRects((const ShortRect*)extents,
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nRects, (const ShortRect*)rects);
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desktop[scrIdx]->add_copied(reg, rfb::Point(dx, dy));
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}
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void vncSetCursor(int width, int height, int hotX, int hotY,
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const unsigned char *rgbaData)
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{
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for (int scr = 0; scr < vncGetScreenCount(); scr++)
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desktop[scr]->setCursor(width, height, hotX, hotY, rgbaData);
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}
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void vncSetCursorPos(int scrIdx, int x, int y)
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{
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desktop[scrIdx]->setCursorPos(x, y, true);
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}
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void vncPreScreenResize(int scrIdx)
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{
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// We need to prevent the RFB core from accessing the framebuffer
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// for a while as there might be updates thrown our way inside
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// the routines that change the screen (i.e. before we have a
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// pointer to the new framebuffer).
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desktop[scrIdx]->blockUpdates();
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}
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void vncPostScreenResize(int scrIdx, int success, int width, int height)
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{
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if (success) {
|
|
// Let the RFB core know of the new dimensions and framebuffer
|
|
try {
|
|
desktop[scrIdx]->setFramebuffer(width, height,
|
|
vncFbptr[scrIdx],
|
|
vncFbstride[scrIdx]);
|
|
} catch (rdr::Exception& e) {
|
|
vncFatalError("vncPostScreenResize: %s\n", e.str());
|
|
}
|
|
}
|
|
|
|
desktop[scrIdx]->unblockUpdates();
|
|
|
|
if (success) {
|
|
// Mark entire screen as changed
|
|
desktop[scrIdx]->add_changed(Region(Rect(0, 0, width, height)));
|
|
}
|
|
}
|
|
|
|
void vncRefreshScreenLayout(int scrIdx)
|
|
{
|
|
try {
|
|
desktop[scrIdx]->refreshScreenLayout();
|
|
} catch (rdr::Exception& e) {
|
|
vncFatalError("vncRefreshScreenLayout: %s\n", e.str());
|
|
}
|
|
}
|
|
|
|
int vncOverrideParam(const char *nameAndValue)
|
|
{
|
|
const char* equalSign = strchr(nameAndValue, '=');
|
|
if (!equalSign)
|
|
return 0;
|
|
|
|
std::string key(nameAndValue, equalSign);
|
|
if (allowOverrideSet.find(key) == allowOverrideSet.end())
|
|
return 0;
|
|
|
|
return rfb::Configuration::setParam(nameAndValue);
|
|
}
|
|
|
|
unsigned dlp_num_mimetypes()
|
|
{
|
|
return dlp_mimetypes.size();
|
|
}
|
|
|
|
const char *dlp_get_mimetype(const unsigned i)
|
|
{
|
|
return dlp_mimetypes[i].mime;
|
|
}
|