8676df6856
interface which is somewhat stagnant.)
329 lines
14 KiB
C++
329 lines
14 KiB
C++
// LFSGlass.cxx - Network interface program to send data to display processor over LAN
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//
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// Created by: J. Wojnaroski -- castle@mminternet.com
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// Date: 21 Nov 2001
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//
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// Extended from original network code developed by C. Olson
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//
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// Modified 12/02/01 - Update engine structure for multi-engine models
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// - Added data preamble to id msg types
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//
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// Modified 01/23/02 - Converted portions of the Engine and Gear accesssors to properties
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// - Removed data from navigation functions. Glass provides own nav functions
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//
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// Modified 03/05/03 - Modified to reduce need to search property tree for each node per frame
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License as
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// published by the Free Software Foundation; either version 2 of the
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// License, or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful, but
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// WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// 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 program; if not, write to the Free Software
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// Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
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//
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#include <simgear/debug/logstream.hxx>
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#include <simgear/io/iochannel.hxx>
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#include <vector>
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#include "lfsglass.hxx"
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#include <FDM/flight.hxx>
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#include <Main/globals.hxx>
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#include <Main/fg_props.hxx>
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SG_USING_STD(vector);
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FGLFSGlass::FGLFSGlass() :
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press_node(fgGetNode("/environment/pressure-inhg[0]", true)),
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temp_node(fgGetNode("/environment/temperature-degc[0]", true)),
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wind_dir_node(fgGetNode("/environment/wind-from-heading-deg[0]", true)),
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wind_speed_node(fgGetNode("/environment/wind-speed-kt[0]", true)),
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magvar_node(fgGetNode("/environment/magnetic-variation-deg[0]", true)),
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p_latitude(fgGetNode("/position/latitude-deg", true)),
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p_longitude(fgGetNode("/position/longitude-deg", true)),
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p_elev_node(fgGetNode("/position/altitude-ft", true)),
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p_altitude_agl(fgGetNode("/position/altitude-agl-ft", true)),
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p_pitch(fgGetNode("/orientation/pitch-deg[0]", true)),
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p_bank(fgGetNode("/orientation/roll-deg[0]", true)),
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p_heading(fgGetNode("/orientation/heading-magnetic-deg[0]", true)),
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p_yaw(fgGetNode("/fdm/jsbsim/aero/beta-rad[0]", true)),
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p_yaw_rate(fgGetNode("/fdm/jsbsim/aero/betadot-rad_sec[0]", true)),
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vel_kcas(fgGetNode("/velocities/airspeed-kt[0]", true)),
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p_vvi(fgGetNode("/velocities/vertical-speed-fps[0]", true )),
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p_mach(fgGetNode("/velocities/mach[0]", true )),
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p_left_aileron(fgGetNode("surface-positions/left-aileron-pos-norm", true)),
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p_right_aileron(fgGetNode("surface-positions/right-aileron-pos-norm", true)),
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p_elevator(fgGetNode("surface-positions/elevator-pos-norm", true)),
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p_elevator_trim(fgGetNode("surface-positions/elevator_trim-pos-norm", true)),
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p_rudder(fgGetNode("surface-positions/rudder-pos-norm", true)),
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p_flaps(fgGetNode("surface-positions/flap-pos-norm", true)),
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p_flaps_cmd(fgGetNode("/controls/flight/flaps", true)),
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p_park_brake(fgGetNode("/controls/gear/brake-parking", true)),
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egt0_node(fgGetNode("/engines/engine/EGT_degC[0]", true)),
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egt1_node(fgGetNode("/engines/engine[1]/EGT_degC[0]", true)),
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egt2_node(fgGetNode("/engines/engine[2]/EGT_degC[0]", true)),
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egt3_node(fgGetNode("/engines/engine[3]/EGT_degC[0]", true)),
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epr0_node(fgGetNode("/engines/engine/EPR[0]", true)),
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epr1_node(fgGetNode("/engines/engine[1]/EPR[0]", true)),
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epr2_node(fgGetNode("/engines/engine[2]/EPR[0]", true)),
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epr3_node(fgGetNode("/engines/engine[3]/EPR[0]", true)),
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n10_node(fgGetNode("/engines/engine/N1[0]", true)),
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n11_node(fgGetNode("/engines/engine[1]/N1[0]", true)),
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n12_node(fgGetNode("/engines/engine[2]/N1[0]", true)),
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n13_node(fgGetNode("/engines/engine[3]/N1[0]", true)),
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n20_node(fgGetNode("/engines/engine/N2[0]", true)),
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n21_node(fgGetNode("/engines/engine[1]/N2[0]", true)),
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n22_node(fgGetNode("/engines/engine[2]/N2[0]", true)),
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n23_node(fgGetNode("/engines/engine[3]/N2[0]", true)),
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oil_temp0(fgGetNode("engines/engine/oil-temp-degF[0]", true)),
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oil_temp1(fgGetNode("engines/engine[1]/oil-temp-degF[0]", true)),
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oil_temp2(fgGetNode("engines/engine[2]/oil-temp-degF[0]", true)),
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oil_temp3(fgGetNode("engines/engine[3]/oil-temp-degF[0]", true)),
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tank0_node(fgGetNode("/consumables/fuel/tank/level-lb[0]", true)),
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tank1_node(fgGetNode("/consumables/fuel/tank[1]/level-lb[0]", true)),
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tank2_node(fgGetNode("/consumables/fuel/tank[2]/level-lb[0]", true)),
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tank3_node(fgGetNode("/consumables/fuel/tank[3]/level-lb[0]", true)),
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tank4_node(fgGetNode("/consumables/fuel/tank[4]/level-lb[0]", true)),
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tank5_node(fgGetNode("/consumables/fuel/tank[5]/level-lb[0]", true)),
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tank6_node(fgGetNode("/consumables/fuel/tank[6]/level-lb[0]", true)),
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tank7_node(fgGetNode("/consumables/fuel/tank[7]/level-lb[0]", true)),
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p_alphadot(fgGetNode("/fdm/jsbsim/aero/alphadot-rad_sec[0]", true)),
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p_betadot(fgGetNode("/fdm/jsbsim/aero/betadot-rad_sec[0]", true))
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{
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}
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FGLFSGlass::~FGLFSGlass() {
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}
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// open hailing frequencies
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bool FGLFSGlass::open() {
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if ( is_enabled() ) {
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SG_LOG( SG_IO, SG_ALERT, "This shouldn't happen, but the channel "
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<< "is already in use, ignoring" );
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return false;
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}
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SGIOChannel *io = get_io_channel();
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if ( ! io->open( get_direction() ) ) {
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SG_LOG( SG_IO, SG_ALERT, "Error opening channel communication layer." );
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return false;
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}
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set_enabled( true );
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return true;
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}
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//static void collect_data( const FGInterface *fdm, ogcFGData *data ) {
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void FGLFSGlass::collect_data( const FGInterface *fdm, FGLFSGlassData *data ) {
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data->version_id = OGC_VERSION;
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data->longitude = p_longitude->getDoubleValue();
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data->latitude = p_latitude->getDoubleValue();
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data->elevation = p_elev_node->getDoubleValue();
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data->magvar = magvar_node->getDoubleValue();
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data->pitch = p_pitch->getDoubleValue();
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data->bank = p_bank->getDoubleValue();
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data->heading = p_heading->getDoubleValue();
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//data->altitude = p_altitude->getDoubleValue();
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data->altitude_agl = p_altitude_agl->getDoubleValue();
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data->vvi = p_vvi->getDoubleValue();
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data->mach = p_mach->getDoubleValue();
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data->groundspeed = cur_fdm_state->get_V_ground_speed();
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data->v_keas = cur_fdm_state->get_V_equiv_kts();
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data->v_kcas = vel_kcas->getDoubleValue();
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data->phi_dot = cur_fdm_state->get_Phi_dot();
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data->theta_dot = cur_fdm_state->get_Theta_dot();
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data->psi_dot = cur_fdm_state->get_Psi_dot();
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data->alpha = cur_fdm_state->get_Alpha();
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data->beta = p_yaw->getDoubleValue();
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data->alpha_dot = p_alphadot->getDoubleValue();
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data->beta_dot = p_yaw_rate->getDoubleValue();
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//data->rudder_trim = p_Controls->get_rudder_trim();
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data->parking_brake = p_park_brake->getDoubleValue();
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data->left_aileron = p_left_aileron->getDoubleValue();
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data->right_aileron = p_right_aileron->getDoubleValue();
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data->elevator = p_elevator->getDoubleValue();
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data->elevator_trim = p_elevator_trim->getDoubleValue();
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data->rudder = p_rudder->getDoubleValue();
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data->flaps = p_flaps->getDoubleValue();
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data->flaps_cmd = p_flaps_cmd->getDoubleValue();
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data->gear_nose = fgGetDouble("gear/gear[0]/position-norm[0]");
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data->gear_left = fgGetDouble("gear/gear[1]/position-norm[0]");
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data->gear_right = fgGetDouble("gear/gear[2]/position-norm[0]");
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data->gear_left_rear = fgGetDouble("gear/gear[3]/position-norm[0]");
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data->gear_right_rear = fgGetDouble("gear/gear[4]/position-norm[0]");
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data->parking_brake = p_park_brake->getDoubleValue();
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data->wow_main = fgGetBool("gear/gear[1]/wow[0]") && fgGetBool("gear/gear[2]/wow[0]");
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data->wow_nose = fgGetBool("gear/gear[0]/wow[0]");
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//cout << "Nose " << data->wow_nose << " Main " << wow_main << endl;
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//data->rpm[0] = fgGetDouble("/engines/engine[0]/rpm");
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//data->rpm[1] = fgGetDouble("/engines/engine[1]/rpm");
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data->epr[0] = epr0_node->getDoubleValue();
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data->epr[1] = epr1_node->getDoubleValue();
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data->epr[2] = epr2_node->getDoubleValue();
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data->epr[3] = epr3_node->getDoubleValue();
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data->egt[0] = egt0_node->getDoubleValue();
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data->egt[1] = egt1_node->getDoubleValue();
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data->egt[2] = egt2_node->getDoubleValue();
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data->egt[3] = egt3_node->getDoubleValue();
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data->n2_turbine[0] = n20_node->getDoubleValue();
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data->n2_turbine[1] = n21_node->getDoubleValue();
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data->n2_turbine[2] = n22_node->getDoubleValue();
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data->n2_turbine[3] = n23_node->getDoubleValue();
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data->n1_turbine[0] = n10_node->getDoubleValue();
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data->n1_turbine[1] = n11_node->getDoubleValue();
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data->n1_turbine[2] = n12_node->getDoubleValue();
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data->n1_turbine[3] = n13_node->getDoubleValue();
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// This is really lbs/hr (pph), converted in FGSimTurbine
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data->fuel_flow[0] = fgGetDouble("/engines/engine[0]/fuel-flow-gph");
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data->fuel_flow[1] = fgGetDouble("/engines/engine[1]/fuel-flow-gph");
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data->fuel_flow[2] = fgGetDouble("/engines/engine[2]/fuel-flow-gph");
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data->fuel_flow[3] = fgGetDouble("/engines/engine[3]/fuel-flow-gph");
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data->oil_pressure[0] = fgGetDouble("/engines/engine[0]/oil-pressure-psi");
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data->oil_pressure[1] = fgGetDouble("/engines/engine[1]/oil-pressure-psi");
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data->oil_pressure[2] = fgGetDouble("/engines/engine[2]/oil-pressure-psi");
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data->oil_pressure[3] = fgGetDouble("/engines/engine[3]/oil-pressure-psi");
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//data->oil_temp[0] = fgGetDouble("/engines/engine[0]/oil-temperature-degf");
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//data->oil_temp[1] = fgGetDouble("/engines/engine[1]/oil-temperature-degf");
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//data->oil_temp[2] = fgGetDouble("/engines/engine[2]/oil-temperature-degf");
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//data->oil_temp[3] = fgGetDouble("/engines/engine[3]/oil-temperature-degf");
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data->oil_temp[0] = oil_temp0->getDoubleValue();
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data->oil_temp[1] = oil_temp1->getDoubleValue();
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data->oil_temp[2] = oil_temp2->getDoubleValue();
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data->oil_temp[3] = oil_temp3->getDoubleValue();
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data->hyd_pressure[0] = fgGetDouble("/engines/engine[0]/hyd-pressure-psi");
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data->hyd_pressure[1] = fgGetDouble("/engines/engine[1]/hyd-pressure-psi");
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data->hyd_pressure[2] = fgGetDouble("/engines/engine[2]/hyd-pressure-psi");
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data->hyd_pressure[3] = fgGetDouble("/engines/engine[3]/hyd-pressure-psi");
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// just a temp thing until htdraulic model built
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// data->hyd_pressure[0] = 2750.0;
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// data->hyd_pressure[1] = 2755.0;
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// data->hyd_pressure[2] = 2747.0;
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// data->hyd_pressure[3] = 2851.0;
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//data->man_pressure[0] = fgGetDouble("/engines/engine[0]/mp-osi");
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//data->man_pressure[1] = fgGetDouble("/engines/engine[1]/mp-osi");
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data->fuel_tank[0] = tank0_node->getDoubleValue() * 0.001;
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data->fuel_tank[1] = tank1_node->getDoubleValue() * 0.001;
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data->fuel_tank[2] = tank2_node->getDoubleValue() * 0.001;
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data->fuel_tank[3] = tank3_node->getDoubleValue() * 0.001;
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data->fuel_tank[4] = tank4_node->getDoubleValue() * 0.001;
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data->fuel_tank[5] = tank5_node->getDoubleValue() * 0.001; // 747 stab tank
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data->fuel_tank[6] = tank6_node->getDoubleValue() * 0.001; // 747 res2 tank
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data->fuel_tank[7] = tank7_node->getDoubleValue() * 0.001; // 747 res3 tank
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double total_fuel = 0.0;
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for ( int t= 0; t<8; t++ ) total_fuel += data->fuel_tank[t];
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data->fuel_tank[8] = total_fuel;
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//data->fuel_tank[8] = 386000.0; // total fuel load
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//cout << endl << "Send " << data->fuel_tank[0] << endl;
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/*********
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data->boost_pumps[0] = boost1_node->getBoolValue();
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data->boost_pumps[1] = boost2_node->getBoolValue();
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data->boost_pumps[2] = boost3_node->getBoolValue();
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data->boost_pumps[3] = boost4_node->getBoolValue();
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data->boost_pumps[4] = boost5_node->getBoolValue();
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data->boost_pumps[5] = boost6_node->getBoolValue();
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data->boost_pumps[6] = boost7_node->getBoolValue();
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data->boost_pumps[7] = boost8_node->getBoolValue();
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data->over_ride_pumps[0] = ovride0_node->getBoolValue();
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data->over_ride_pumps[1] = ovride1_node->getBoolValue();
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data->over_ride_pumps[2] = ovride2_node->getBoolValue();
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data->over_ride_pumps[3] = ovride3_node->getBoolValue();
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data->over_ride_pumps[4] = ovride4_node->getBoolValue();
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data->over_ride_pumps[5] = ovride5_node->getBoolValue();
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data->x_feed_valve[0] = x_feed0_node->getBoolValue();
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data->x_feed_valve[1] = x_feed1_node->getBoolValue();
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data->x_feed_valve[2] = x_feed2_node->getBoolValue();
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data->x_feed_valve[3] = x_feed3_node->getBoolValue();
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**********/
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data->total_temperature = cur_fdm_state->get_Total_temperature();
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data->total_pressure = cur_fdm_state->get_Total_pressure();
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data->dynamic_pressure = cur_fdm_state->get_Dynamic_pressure();
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data->static_pressure = press_node->getDoubleValue();
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data->static_temperature = temp_node->getDoubleValue();
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data->wind = wind_speed_node->getDoubleValue();
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data->wind_dir = wind_dir_node->getDoubleValue();
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data->sea_level_pressure = fgGetDouble("/environment/sea-level-pressure-inhg");
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}
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static void distribute_data( const FGLFSGlassData *data, FGInterface *chunk ) {
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// just a place holder until the CDU is developed
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}
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// process work for this port
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bool FGLFSGlass::process() {
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SGIOChannel *io = get_io_channel();
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int length = sizeof(buf);
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if ( get_direction() == SG_IO_OUT ) {
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collect_data( cur_fdm_state, &buf );
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//collect_data( &buf );
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if ( ! io->write( (char *)(& buf), length ) ) {
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SG_LOG( SG_IO, SG_ALERT, "Error writing data." );
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return false;
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}
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} else if ( get_direction() == SG_IO_IN ) {
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if ( io->get_type() == sgFileType ) {
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if ( io->read( (char *)(& buf), length ) == length ) {
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SG_LOG( SG_IO, SG_DEBUG, "Success reading data." );
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distribute_data( &buf, cur_fdm_state );
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}
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} else {
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while ( io->read( (char *)(& buf), length ) == length ) {
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SG_LOG( SG_IO, SG_DEBUG, "Success reading data." );
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distribute_data( &buf, cur_fdm_state );
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}
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}
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}
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return true;
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}
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// close the channel
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bool FGLFSGlass::close() {
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SGIOChannel *io = get_io_channel();
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set_enabled( false );
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if ( ! io->close() ) {
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return false;
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}
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return true;
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}
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