VOID_Tools: Stop a warning when compiling in DEBUG.
VOID_Tools: Stop a warning when compiling in DEBUG.

// VOID // VOID
// //
// VOID_CBInfoBrowser.cs // VOID_CBInfoBrowser.cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using KSP; using KSP;
using System; using System;
using System.Collections.Generic; using System.Collections.Generic;
using ToadicusTools; using ToadicusTools;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public class VOID_CBInfoBrowser : VOID_WindowModule public class VOID_CBInfoBrowser : VOID_WindowModule
{ {
[AVOID_SaveValue("selectedBodyIdx1")] [AVOID_SaveValue("selectedBodyIdx1")]
protected VOID_SaveValue<int> selectedBodyIdx1 = 1; protected VOID_SaveValue<int> selectedBodyIdx1 = 1;
   
[AVOID_SaveValue("selectedBodyIdx2")] [AVOID_SaveValue("selectedBodyIdx2")]
protected VOID_SaveValue<int> selectedBodyIdx2 = 2; protected VOID_SaveValue<int> selectedBodyIdx2 = 2;
   
protected CelestialBody selectedBody1; protected CelestialBody selectedBody1;
protected CelestialBody selectedBody2; protected CelestialBody selectedBody2;
   
[AVOID_SaveValue("toggleOrbital")] [AVOID_SaveValue("toggleOrbital")]
protected VOID_SaveValue<bool> toggleOrbital = false; protected VOID_SaveValue<bool> toggleOrbital = false;
   
[AVOID_SaveValue("togglePhysical")] [AVOID_SaveValue("togglePhysical")]
protected VOID_SaveValue<bool> togglePhysical = false; protected VOID_SaveValue<bool> togglePhysical = false;
   
[AVOID_SaveValue("toggleScience")] [AVOID_SaveValue("toggleScience")]
protected VOID_SaveValue<bool> toggleScience = false; protected VOID_SaveValue<bool> toggleScience = false;
   
public VOID_CBInfoBrowser() public VOID_CBInfoBrowser()
{ {
this._Name = "Celestial Body Information Browser"; this._Name = "Celestial Body Information Browser";
   
this.WindowPos.x = 10; this.WindowPos.x = 10;
this.WindowPos.y = 85; this.WindowPos.y = 85;
} }
   
public override void ModuleWindow(int _) public override void ModuleWindow(int _)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
   
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("", GUILayout.ExpandWidth(true)); GUILayout.Label("", GUILayout.ExpandWidth(true));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.EndVertical(); GUILayout.EndVertical();
   
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
selectedBody1 = this.core.allBodies[selectedBodyIdx1]; selectedBody1 = this.core.allBodies[selectedBodyIdx1];
selectedBody2 = this.core.allBodies[selectedBodyIdx2]; selectedBody2 = this.core.allBodies[selectedBodyIdx2];
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
if (GUILayout.Button("<", GUILayout.ExpandWidth(false))) if (GUILayout.Button("<", GUILayout.ExpandWidth(false)))
{ {
selectedBodyIdx1--; selectedBodyIdx1--;
if (selectedBodyIdx1 < 0) selectedBodyIdx1 = this.core.allBodies.Count - 1; if (selectedBodyIdx1 < 0) selectedBodyIdx1 = this.core.allBodies.Count - 1;
} }
GUILayout.Label(this.core.allBodies[selectedBodyIdx1].bodyName, VOID_Styles.labelCenterBold, GUILayout.ExpandWidth(true)); GUILayout.Label(this.core.allBodies[selectedBodyIdx1].bodyName, VOID_Styles.labelCenterBold, GUILayout.ExpandWidth(true));
if (GUILayout.Button(">", GUILayout.ExpandWidth(false))) if (GUILayout.Button(">", GUILayout.ExpandWidth(false)))
{ {
selectedBodyIdx1++; selectedBodyIdx1++;
if (selectedBodyIdx1 > this.core.allBodies.Count - 1) selectedBodyIdx1 = 0; if (selectedBodyIdx1 > this.core.allBodies.Count - 1) selectedBodyIdx1 = 0;
} }
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
GUILayout.EndVertical(); GUILayout.EndVertical();
   
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
if (GUILayout.Button("<", GUILayout.ExpandWidth(false))) if (GUILayout.Button("<", GUILayout.ExpandWidth(false)))
{ {
selectedBodyIdx2--; selectedBodyIdx2--;
if (selectedBodyIdx2 < 0) selectedBodyIdx2 = this.core.allBodies.Count - 1; if (selectedBodyIdx2 < 0) selectedBodyIdx2 = this.core.allBodies.Count - 1;
} }
GUILayout.Label(this.core.allBodies[selectedBodyIdx2].bodyName, VOID_Styles.labelCenterBold, GUILayout.ExpandWidth(true)); GUILayout.Label(this.core.allBodies[selectedBodyIdx2].bodyName, VOID_Styles.labelCenterBold, GUILayout.ExpandWidth(true));
if (GUILayout.Button(">", GUILayout.ExpandWidth(false))) if (GUILayout.Button(">", GUILayout.ExpandWidth(false)))
{ {
selectedBodyIdx2++; selectedBodyIdx2++;
if (selectedBodyIdx2 > this.core.allBodies.Count - 1) selectedBodyIdx2 = 0; if (selectedBodyIdx2 > this.core.allBodies.Count - 1) selectedBodyIdx2 = 0;
} }
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
GUILayout.EndVertical(); GUILayout.EndVertical();
   
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
//toggle for orbital info chunk //toggle for orbital info chunk
if (GUILayout.Button("Orbital Characteristics", GUILayout.ExpandWidth(true))) toggleOrbital.value = !toggleOrbital; if (GUILayout.Button("Orbital Characteristics", GUILayout.ExpandWidth(true))) toggleOrbital.value = !toggleOrbital;
   
if (toggleOrbital) if (toggleOrbital)
{ {
//begin orbital into horizontal chunk //begin orbital into horizontal chunk
//print("begin orbital info section..."); //print("begin orbital info section...");
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
   
//begin orbital value labels column //begin orbital value labels column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
//print("printing row labels..."); //print("printing row labels...");
   
GUILayout.Label("Apoapsis:"); GUILayout.Label("Apoapsis:");
GUILayout.Label("Time to Ap:"); GUILayout.Label("Time to Ap:");
GUILayout.Label("Periapsis:"); GUILayout.Label("Periapsis:");
GUILayout.Label("Time to Pe:"); GUILayout.Label("Time to Pe:");
GUILayout.Label("Semi-major axis:"); GUILayout.Label("Semi-major axis:");
GUILayout.Label("Eccentricity:"); GUILayout.Label("Eccentricity:");
GUILayout.Label("Orbital period:"); GUILayout.Label("Orbital period:");
GUILayout.Label("Rotational period:"); GUILayout.Label("Rotational period:");
GUILayout.Label("Velocity:"); GUILayout.Label("Velocity:");
GUILayout.Label("Mean anomaly:"); GUILayout.Label("Mean anomaly:");
GUILayout.Label("True anomaly:"); GUILayout.Label("True anomaly:");
GUILayout.Label("Eccentric anomaly:"); GUILayout.Label("Eccentric anomaly:");
GUILayout.Label("Inclination:"); GUILayout.Label("Inclination:");
GUILayout.Label("Long. ascending node:"); GUILayout.Label("Long. ascending node:");
GUILayout.Label("Arg. of periapsis:"); GUILayout.Label("Arg. of periapsis:");
GUILayout.Label("Tidally locked:"); GUILayout.Label("Tidally locked:");
   
//end orbital value labels column //end orbital value labels column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//begin primary orbital values column //begin primary orbital values column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
body_OP_show_orbital_info(selectedBody1); body_OP_show_orbital_info(selectedBody1);
   
//end primary orbital values column //end primary orbital values column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//begin secondary orbital values column //begin secondary orbital values column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
body_OP_show_orbital_info(selectedBody2); body_OP_show_orbital_info(selectedBody2);
   
//end secondary orbital values column //end secondary orbital values column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//end orbital info horizontal chunk //end orbital info horizontal chunk
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
//toggle for physical info chunk //toggle for physical info chunk
if (GUILayout.Button("Physical Characteristics", GUILayout.ExpandWidth(true))) togglePhysical.value = !togglePhysical; if (GUILayout.Button("Physical Characteristics", GUILayout.ExpandWidth(true))) togglePhysical.value = !togglePhysical;
   
if (togglePhysical) if (togglePhysical)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
   
//begin physical info value label column //begin physical info value label column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
GUILayout.Label("Radius:"); GUILayout.Label("Radius:");
GUILayout.Label("Surface area:"); GUILayout.Label("Surface area:");
GUILayout.Label("Volume:"); GUILayout.Label("Volume:");
GUILayout.Label("Mass:"); GUILayout.Label("Mass:");
GUILayout.Label("Density:"); GUILayout.Label("Density:");
GUILayout.Label("Sphere of influence:"); GUILayout.Label("Sphere of influence:");
GUILayout.Label("Natural satellites:"); GUILayout.Label("Natural satellites:");
GUILayout.Label("Artificial satellites:"); GUILayout.Label("Artificial satellites:");
GUILayout.Label("Surface gravity:"); GUILayout.Label("Surface gravity:");
GUILayout.Label("Atmosphere altitude:"); GUILayout.Label("Atmosphere altitude:");
GUILayout.Label("Atmospheric O\u2082:"); GUILayout.Label("Atmospheric O\u2082:");
GUILayout.Label("Has ocean:"); GUILayout.Label("Has ocean:");
   
//end physical info value label column //end physical info value label column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//begin primary physical values column //begin primary physical values column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
body_OP_show_physical_info(selectedBody1); body_OP_show_physical_info(selectedBody1);
   
//end primary physical column //end primary physical column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//begin secondary physical values column //begin secondary physical values column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
body_OP_show_physical_info(selectedBody2); body_OP_show_physical_info(selectedBody2);
   
//end target physical values column //end target physical values column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//end physical value horizontal chunk //end physical value horizontal chunk
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
if (GUILayout.Button("Scientific Parameters", GUILayout.ExpandWidth(true))) if (GUILayout.Button("Scientific Parameters", GUILayout.ExpandWidth(true)))
{ {
toggleScience.value = !toggleScience; toggleScience.value = !toggleScience;
} }
   
if (toggleScience) if (toggleScience)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
   
//begin physical info value label column //begin physical info value label column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
   
/* /*
* public float RecoveryValue = 1f; * public float RecoveryValue = 1f;
   
public float InSpaceHighDataValue = 1f; public float InSpaceHighDataValue = 1f;
   
public float spaceAltitudeThreshold = 250000f; public float spaceAltitudeThreshold = 250000f;
   
public float flyingAltitudeThreshold = 18000f; public float flyingAltitudeThreshold = 18000f;
   
public float InSpaceLowDataValue = 1f; public float InSpaceLowDataValue = 1f;
   
public float SplashedDataValue = 1f; public float SplashedDataValue = 1f;
   
public float LandedDataValue = 1f; public float LandedDataValue = 1f;
   
public float FlyingHighDataValue = 1f; public float FlyingHighDataValue = 1f;
   
public float FlyingLowDataValue = 1f; public float FlyingLowDataValue = 1f;
*/ */
   
GUILayout.Label("Surface Multiplier:"); GUILayout.Label("Surface Multiplier:");
GUILayout.Label("Ocean Multiplier:"); GUILayout.Label("Ocean Multiplier:");
GUILayout.Label("Flying-Low Multiplier:"); GUILayout.Label("Flying-Low Multiplier:");
GUILayout.Label("Flying-High Multiplier:"); GUILayout.Label("Flying-High Multiplier:");
GUILayout.Label("Low Orbit Multiplier:"); GUILayout.Label("Low Orbit Multiplier:");
GUILayout.Label("High Orbit Multiplier:"); GUILayout.Label("High Orbit Multiplier:");
GUILayout.Label("'Flying-High' Altitude:"); GUILayout.Label("'Flying-High' Altitude:");
GUILayout.Label("'High Orbit' Altitude:"); GUILayout.Label("'High Orbit' Altitude:");
GUILayout.Label("Recovery Multiplier:"); GUILayout.Label("Recovery Multiplier:");
   
//end physical info value label column //end physical info value label column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//begin primary physical values column //begin primary physical values column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
this.cbColumnScience(selectedBody1); this.cbColumnScience(selectedBody1);
   
//end primary physical column //end primary physical column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//begin secondary physical values column //begin secondary physical values column
GUILayout.BeginVertical(GUILayout.Width(150)); GUILayout.BeginVertical(GUILayout.Width(150));
   
this.cbColumnScience(selectedBody2); this.cbColumnScience(selectedBody2);
   
//end target physical values column //end target physical values column
GUILayout.EndVertical(); GUILayout.EndVertical();
   
//end physical value horizontal chunk //end physical value horizontal chunk
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
GUI.DragWindow(); GUI.DragWindow();
} }
   
private void body_OP_show_orbital_info(CelestialBody body) private void body_OP_show_orbital_info(CelestialBody body)
{ {
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label((body.orbit.ApA / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label((body.orbit.ApA / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(VOID_Tools.ConvertInterval(body.orbit.timeToAp), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(VOID_Tools.FormatInterval(body.orbit.timeToAp), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label((body.orbit.PeA / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label((body.orbit.PeA / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(VOID_Tools.ConvertInterval(body.orbit.timeToPe), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(VOID_Tools.FormatInterval(body.orbit.timeToPe), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label((body.orbit.semiMajorAxis / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label((body.orbit.semiMajorAxis / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(body.orbit.eccentricity.ToString("F4") + "", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(body.orbit.eccentricity.ToString("F4") + "", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(VOID_Tools.ConvertInterval(body.orbit.period), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(VOID_Tools.FormatInterval(body.orbit.period), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(VOID_Tools.ConvertInterval(body.rotationPeriod), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(VOID_Tools.FormatInterval(body.rotationPeriod), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label((body.orbit.orbitalSpeed / 1000).ToString("F2") + "km/s", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label((body.orbit.orbitalSpeed / 1000).ToString("F2") + "km/s", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
// Toadicus edit: convert mean anomaly into degrees. // Toadicus edit: convert mean anomaly into degrees.
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label((body.orbit.meanAnomaly * 180d / Math.PI).ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label((body.orbit.meanAnomaly * 180d / Math.PI).ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(body.orbit.trueAnomaly.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(body.orbit.trueAnomaly.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
// Toadicus edit: convert eccentric anomaly into degrees. // Toadicus edit: convert eccentric anomaly into degrees.
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label((body.orbit.eccentricAnomaly * 180d / Math.PI).ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label((body.orbit.eccentricAnomaly * 180d / Math.PI).ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(body.orbit.inclination.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(body.orbit.inclination.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(body.orbit.LAN.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(body.orbit.LAN.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(body.orbit.argumentOfPeriapsis.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(body.orbit.argumentOfPeriapsis.ToString("F3") + "°", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else else
{ {
string body_tidally_locked = "No"; string body_tidally_locked = "No";
if (body.tidallyLocked) body_tidally_locked = "Yes"; if (body.tidallyLocked) body_tidally_locked = "Yes";
GUILayout.Label(body_tidally_locked, VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(body_tidally_locked, VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
} }
} }
   
private void body_OP_show_physical_info(CelestialBody body) private void body_OP_show_physical_info(CelestialBody body)
{ {
   
GUILayout.Label((body.Radius / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label((body.Radius / 1000).ToString("##,#") + "km", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
GUILayout.Label((((body.Radius * body.Radius) * 4 * Math.PI) / 1000).ToString("0.00e+00") + "km²", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label((((body.Radius * body.Radius) * 4 * Math.PI) / 1000).ToString("0.00e+00") + "km²", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
// divide by 1000 to convert m to km // divide by 1000 to convert m to km
GUILayout.Label((((4d / 3) * Math.PI * (body.Radius * body.Radius * body.Radius)) / 1000).ToString("0.00e+00") + "km³", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label((((4d / 3) * Math.PI * (body.Radius * body.Radius * body.Radius)) / 1000).ToString("0.00e+00") + "km³", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
GUILayout.Label(body.Mass.ToString("0.00e+00") + "kg", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(body.Mass.ToString("0.00e+00") + "kg", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
double p = body.Mass / ((body.Radius * body.Radius * body.Radius) * (4d / 3) * Math.PI); double p = body.Mass / ((body.Radius * body.Radius * body.Radius) * (4d / 3) * Math.PI);
   
GUILayout.Label(p.ToString("##,#") + "kg/m³", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(p.ToString("##,#") + "kg/m³", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.bodyName == "Sun") GUILayout.Label(Tools.MuMech_ToSI(body.sphereOfInfluence), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); if (body.bodyName == "Sun") GUILayout.Label(Tools.MuMech_ToSI(body.sphereOfInfluence), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
else GUILayout.Label(Tools.MuMech_ToSI(body.sphereOfInfluence), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); else GUILayout.Label(Tools.MuMech_ToSI(body.sphereOfInfluence), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
GUILayout.Label(body.orbitingBodies.Count.ToString(), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(body.orbitingBodies.Count.ToString(), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
//show # artificial satellites //show # artificial satellites
int num_art_sats = 0; int num_art_sats = 0;
foreach (Vessel v in FlightGlobals.Vessels) foreach (Vessel v in FlightGlobals.Vessels)
{ {
if (v.mainBody == body && v.situation.ToString() == "ORBITING") num_art_sats++; if (v.mainBody == body && v.situation.ToString() == "ORBITING") num_art_sats++;
} }
   
GUILayout.Label(num_art_sats.ToString(), VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(num_art_sats.ToString(), VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
double g_ASL = (VOID_Core.Constant_G * body.Mass) / (body.Radius * body.Radius); double g_ASL = (VOID_Core.Constant_G * body.Mass) / (body.Radius * body.Radius);
   
GUILayout.Label(Tools.MuMech_ToSI(g_ASL) + "m/s²", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(Tools.MuMech_ToSI(g_ASL) + "m/s²", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
   
if (body.atmosphere) if (body.atmosphere)
{ {
GUILayout.Label("≈ " + Tools.MuMech_ToSI(body.maxAtmosphereAltitude) + "m", GUILayout.Label("≈ " + Tools.MuMech_ToSI(body.maxAtmosphereAltitude) + "m",
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
string O2 = "No"; string O2 = "No";
if (body.atmosphereContainsOxygen == true) O2 = "Yes"; if (body.atmosphereContainsOxygen == true) O2 = "Yes";
GUILayout.Label(O2, VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(O2, VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
} }
else else
{ {
GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label("N/A", VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
} }
   
string ocean = "No"; string ocean = "No";
if (body.ocean == true) ocean = "Yes"; if (body.ocean == true) ocean = "Yes";
GUILayout.Label(ocean, VOID_Styles.labelRight, GUILayout.ExpandWidth(true)); GUILayout.Label(ocean, VOID_Styles.labelRight, GUILayout.ExpandWidth(true));
} }
   
private void cbColumnScience(CelestialBody body) private void cbColumnScience(CelestialBody body)
{ {
/*GUILayout.Label("Surface Science Multiplier:"); /*GUILayout.Label("Surface Science Multiplier:");
GUILayout.Label("Ocean Science Multiplier:"); GUILayout.Label("Ocean Science Multiplier:");
GUILayout.Label("Low-Atmosphere Science Multiplier:"); GUILayout.Label("Low-Atmosphere Science Multiplier:");
GUILayout.Label("High-Atmosphere Science Multiplier:"); GUILayout.Label("High-Atmosphere Science Multiplier:");
GUILayout.Label("Low Orbit Science Multiplier:"); GUILayout.Label("Low Orbit Science Multiplier:");
GUILayout.Label("High Orbit Science Multiplier:"); GUILayout.Label("High Orbit Science Multiplier:");
GUILayout.Label("'In Space' Altitude:"); GUILayout.Label("'In Space' Altitude:");
GUILayout.Label("'Flying' Altitude:"); GUILayout.Label("'Flying' Altitude:");
GUILayout.Label("Recovery Multiplier:");*/ GUILayout.Label("Recovery Multiplier:");*/
   
var scienceValues = body.scienceValues; var scienceValues = body.scienceValues;
   
GUILayout.Label(scienceValues.LandedDataValue.ToString("0.0#"), GUILayout.Label(scienceValues.LandedDataValue.ToString("0.0#"),
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label( GUILayout.Label(
body.ocean ? scienceValues.SplashedDataValue.ToString("0.0#") : "N/A", body.ocean ? scienceValues.SplashedDataValue.ToString("0.0#") : "N/A",
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label( GUILayout.Label(
body.atmosphere ? scienceValues.FlyingLowDataValue.ToString("0.0#") : "N/A", body.atmosphere ? scienceValues.FlyingLowDataValue.ToString("0.0#") : "N/A",
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label( GUILayout.Label(
body.atmosphere ? scienceValues.FlyingHighDataValue.ToString("0.0#") : "N/A", body.atmosphere ? scienceValues.FlyingHighDataValue.ToString("0.0#") : "N/A",
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label(scienceValues.InSpaceLowDataValue.ToString("0.0#"), GUILayout.Label(scienceValues.InSpaceLowDataValue.ToString("0.0#"),
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label(scienceValues.InSpaceHighDataValue.ToString("0.0#"), GUILayout.Label(scienceValues.InSpaceHighDataValue.ToString("0.0#"),
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label( GUILayout.Label(
body.atmosphere ? scienceValues.flyingAltitudeThreshold.ToString("N0") : "N/A", body.atmosphere ? scienceValues.flyingAltitudeThreshold.ToString("N0") : "N/A",
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label( GUILayout.Label(
scienceValues.spaceAltitudeThreshold.ToString("N0"), scienceValues.spaceAltitudeThreshold.ToString("N0"),
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
   
GUILayout.Label(scienceValues.RecoveryValue.ToString("0.0#"), GUILayout.Label(scienceValues.RecoveryValue.ToString("0.0#"),
VOID_Styles.labelRight, VOID_Styles.labelRight,
GUILayout.ExpandWidth(true)); GUILayout.ExpandWidth(true));
} }
} }
} }
// VOID // VOID
// //
// VOID_Data.cs // VOID_Data.cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using Engineer.VesselSimulator; using Engineer.VesselSimulator;
using KSP; using KSP;
using System; using System;
using System.Collections.Generic; using System.Collections.Generic;
using ToadicusTools; using ToadicusTools;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public static class VOID_Data public static class VOID_Data
{ {
private static Dictionary<int, IVOID_DataValue> dataValues = new Dictionary<int, IVOID_DataValue>(); private static Dictionary<int, IVOID_DataValue> dataValues = new Dictionary<int, IVOID_DataValue>();
public static Dictionary<int, IVOID_DataValue> DataValues public static Dictionary<int, IVOID_DataValue> DataValues
{ {
get get
{ {
return dataValues; return dataValues;
} }
} }
   
#region Constants #region Constants
   
private static double kerbinGee; private static double kerbinGee;
   
public static double KerbinGee public static double KerbinGee
{ {
get get
{ {
if (kerbinGee == default(double)) if (kerbinGee == default(double))
{ {
kerbinGee = core.HomeBody.gravParameter / (core.HomeBody.Radius * core.HomeBody.Radius); kerbinGee = core.HomeBody.gravParameter / (core.HomeBody.Radius * core.HomeBody.Radius);
} }
   
return kerbinGee; return kerbinGee;
} }
} }
   
#endregion #endregion
   
#region Core Data #region Core Data
   
public static VOID_Core core public static VOID_Core core
{ {
get get
{ {
if (HighLogic.LoadedSceneIsEditor) if (HighLogic.LoadedSceneIsEditor)
{ {
return VOID_EditorCore.Instance; return VOID_EditorCore.Instance;
} }
else else
{ {
return VOID_Core.Instance; return VOID_Core.Instance;
} }
} }
} }
   
#endregion #endregion
   
#region Atmosphere #region Atmosphere
   
public static readonly VOID_DoubleValue atmDensity = public static readonly VOID_DoubleValue atmDensity =
new VOID_DoubleValue( new VOID_DoubleValue(
"Atmosphere Density", "Atmosphere Density",
new Func<double>(() => core.vessel.atmDensity * 1000f), new Func<double>(() => core.vessel.atmDensity * 1000f),
"g/m³" "g/m³"
); );
   
public static readonly VOID_FloatValue atmLimit = public static readonly VOID_FloatValue atmLimit =
new VOID_FloatValue( new VOID_FloatValue(
"Atmosphere Limit", "Atmosphere Limit",
new Func<float>(() => core.vessel.mainBody.maxAtmosphereAltitude), new Func<float>(() => core.vessel.mainBody.maxAtmosphereAltitude),
"m" "m"
); );
   
public static readonly VOID_DoubleValue atmPressure = public static readonly VOID_DoubleValue atmPressure =
new VOID_DoubleValue( new VOID_DoubleValue(
"Pressure", "Pressure",
new Func<double>(() => core.vessel.staticPressure), new Func<double>(() => core.vessel.staticPressure),
"atm" "atm"
); );
   
public static readonly VOID_FloatValue temperature = public static readonly VOID_FloatValue temperature =
new VOID_FloatValue( new VOID_FloatValue(
"Temperature", "Temperature",
new Func<float>(() => core.vessel.flightIntegrator.getExternalTemperature()), new Func<float>(() => core.vessel.flightIntegrator.getExternalTemperature()),
"°C" "°C"
); );
   
#endregion #endregion
   
#region Attitude #region Attitude
   
public static readonly VOID_StrValue vesselHeading = public static readonly VOID_StrValue vesselHeading =
new VOID_StrValue( new VOID_StrValue(
"Heading", "Heading",
delegate() delegate()
{ {
double heading = core.vessel.getSurfaceHeading(); double heading = core.vessel.getSurfaceHeading();
string cardinal = VOID_Tools.get_heading_text(heading); string cardinal = VOID_Tools.get_heading_text(heading);
   
return string.Format( return string.Format(
"{0}° {1}", "{0}° {1}",
heading.ToString("F2"), heading.ToString("F2"),
cardinal cardinal
); );
} }
); );
   
public static readonly VOID_DoubleValue vesselPitch = public static readonly VOID_DoubleValue vesselPitch =
new VOID_DoubleValue( new VOID_DoubleValue(
"Pitch", "Pitch",
() => core.vessel.getSurfacePitch(), () => core.vessel.getSurfacePitch(),
"°" "°"
); );
   
#endregion #endregion
   
#region Career #region Career
   
public static readonly VOID_StrValue fundingStatus = public static readonly VOID_StrValue fundingStatus =
new VOID_StrValue( new VOID_StrValue(
string.Intern("Funds"), string.Intern("Funds"),
delegate() delegate()
{ {
if (VOID_CareerStatus.Instance == null) if (VOID_CareerStatus.Instance == null)
{ {
return string.Empty; return string.Empty;
} }
   
return string.Format("{0} ({1})", return string.Format("{0} ({1})",
VOID_CareerStatus.Instance.currentFunds.ToString("#,#.##"), VOID_CareerStatus.Instance.currentFunds.ToString("#,#.##"),
VOID_CareerStatus.formatDelta(VOID_CareerStatus.Instance.lastFundsChange) VOID_CareerStatus.formatDelta(VOID_CareerStatus.Instance.lastFundsChange)
); );
} }
); );
   
public static readonly VOID_StrValue reputationStatus = public static readonly VOID_StrValue reputationStatus =
new VOID_StrValue( new VOID_StrValue(
string.Intern("Reputation"), string.Intern("Reputation"),
delegate() delegate()
{ {
if (VOID_CareerStatus.Instance == null) if (VOID_CareerStatus.Instance == null)
{ {
return string.Empty; return string.Empty;
} }
   
return string.Format("{0} ({1})", return string.Format("{0} ({1})",
VOID_CareerStatus.Instance.currentReputation.ToString("#,#.##"), VOID_CareerStatus.Instance.currentReputation.ToString("#,#.##"),
VOID_CareerStatus.formatDelta(VOID_CareerStatus.Instance.lastRepChange) VOID_CareerStatus.formatDelta(VOID_CareerStatus.Instance.lastRepChange)
); );
} }
); );
   
public static readonly VOID_StrValue scienceStatus = public static readonly VOID_StrValue scienceStatus =
new VOID_StrValue( new VOID_StrValue(
string.Intern("Science"), string.Intern("Science"),
delegate() delegate()
{ {
if (VOID_CareerStatus.Instance == null) if (VOID_CareerStatus.Instance == null)
{ {
return string.Empty; return string.Empty;
} }
   
return string.Format("{0} ({1})", return string.Format("{0} ({1})",
VOID_CareerStatus.Instance.currentScience.ToString("#,#.##"), VOID_CareerStatus.Instance.currentScience.ToString("#,#.##"),
VOID_CareerStatus.formatDelta(VOID_CareerStatus.Instance.lastScienceChange) VOID_CareerStatus.formatDelta(VOID_CareerStatus.Instance.lastScienceChange)
); );
} }
); );
   
#endregion #endregion
   
#region Control #region Control
   
public static readonly VOID_FloatValue mainThrottle = public static readonly VOID_FloatValue mainThrottle =
new VOID_FloatValue( new VOID_FloatValue(
"Throttle", "Throttle",
new Func<float>(() => core.vessel.ctrlState.mainThrottle * 100f), new Func<float>(() => core.vessel.ctrlState.mainThrottle * 100f),
"%" "%"
); );
   
#endregion #endregion
   
#region Engineering #region Engineering
   
public static readonly VOID_IntValue partCount = public static readonly VOID_IntValue partCount =
new VOID_IntValue( new VOID_IntValue(
"Parts", "Parts",
new Func<int>(() => core.vessel.Parts.Count), new Func<int>(() => core.vessel.Parts.Count),
"" ""
); );
   
#region Mass #region Mass
   
public static readonly VOID_StrValue comboResourceMass = public static readonly VOID_StrValue comboResourceMass =
new VOID_StrValue( new VOID_StrValue(
"Resource Mass (curr / total)", "Resource Mass (curr / total)",
delegate() delegate()
{ {
return string.Format("{0} / {1}", return string.Format("{0} / {1}",
stageResourceMass.ValueUnitString("F3"), stageResourceMass.ValueUnitString("F3"),
resourceMass.ValueUnitString("F3") resourceMass.ValueUnitString("F3")
); );
} }
); );
   
public static readonly VOID_DoubleValue resourceMass = public static readonly VOID_DoubleValue resourceMass =
new VOID_DoubleValue( new VOID_DoubleValue(
"Resource Mass", "Resource Mass",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
return core.LastStage.totalMass - core.LastStage.totalBaseMass; return core.LastStage.totalMass - core.LastStage.totalBaseMass;
}, },
"tons" "tons"
); );
   
public static readonly VOID_DoubleValue stageResourceMass = public static readonly VOID_DoubleValue stageResourceMass =
new VOID_DoubleValue( new VOID_DoubleValue(
"Resource Mass (Stage)", "Resource Mass (Stage)",
delegate() delegate()
{ {
if (core.LastStage == null) if (core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
return core.LastStage.mass - core.LastStage.baseMass; return core.LastStage.mass - core.LastStage.baseMass;
}, },
"tons" "tons"
); );
   
public static readonly VOID_DoubleValue totalMass = public static readonly VOID_DoubleValue totalMass =
new VOID_DoubleValue( new VOID_DoubleValue(
"Total Mass", "Total Mass",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
return core.LastStage.totalMass; return core.LastStage.totalMass;
}, },
"tons" "tons"
); );
   
#endregion #endregion
   
#region DeltaV #region DeltaV
   
public static readonly VOID_DoubleValue stageDeltaV = public static readonly VOID_DoubleValue stageDeltaV =
new VOID_DoubleValue( new VOID_DoubleValue(
"DeltaV (Current Stage)", "DeltaV (Current Stage)",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
return double.NaN; return double.NaN;
return core.LastStage.deltaV; return core.LastStage.deltaV;
}, },
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue totalDeltaV = public static readonly VOID_DoubleValue totalDeltaV =
new VOID_DoubleValue( new VOID_DoubleValue(
"DeltaV (Total)", "DeltaV (Total)",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
return double.NaN; return double.NaN;
return core.LastStage.totalDeltaV; return core.LastStage.totalDeltaV;
}, },
"m/s" "m/s"
); );
   
#endregion #endregion
   
#region Propulsion #region Propulsion
   
public static readonly VOID_StrValue currmaxThrustWeight = public static readonly VOID_StrValue currmaxThrustWeight =
new VOID_StrValue( new VOID_StrValue(
"T:W (curr/max)", "T:W (curr/max)",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
return "N/A"; return "N/A";
   
return string.Format( return string.Format(
"{0} / {1}", "{0} / {1}",
(VOID_Data.currThrustWeight.Value).ToString("F2"), (VOID_Data.currThrustWeight.Value).ToString("F2"),
(VOID_Data.maxThrustWeight.Value).ToString("F2") (VOID_Data.maxThrustWeight.Value).ToString("F2")
); );
} }
); );
   
public static readonly VOID_StrValue currmaxThrust = public static readonly VOID_StrValue currmaxThrust =
new VOID_StrValue( new VOID_StrValue(
"Thrust (curr/max)", "Thrust (curr/max)",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
return "N/A"; return "N/A";
   
double currThrust = core.LastStage.actualThrust; double currThrust = core.LastStage.actualThrust;
double maxThrust = core.LastStage.thrust; double maxThrust = core.LastStage.thrust;
   
return string.Format( return string.Format(
"{0} / {1}", "{0} / {1}",
currThrust.ToString("F1"), currThrust.ToString("F1"),
maxThrust.ToString("F1") maxThrust.ToString("F1")
); );
} }
); );
   
public static readonly VOID_DoubleValue stageMassFlow = public static readonly VOID_DoubleValue stageMassFlow =
new VOID_DoubleValue( new VOID_DoubleValue(
"Stage Mass Flow", "Stage Mass Flow",
delegate() delegate()
{ {
if (core.LastStage == null) if (core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
double stageIsp = core.LastStage.isp; double stageIsp = core.LastStage.isp;
double stageThrust = stageNominalThrust; double stageThrust = stageNominalThrust;
   
Tools.PostDebugMessage(typeof(VOID_Data), "calculating stageMassFlow from:\n" + Tools.PostDebugMessage(typeof(VOID_Data), "calculating stageMassFlow from:\n" +
"\tstageIsp: {0}\n" + "\tstageIsp: {0}\n" +
"\tstageThrust: {1}\n" + "\tstageThrust: {1}\n" +
"\tKerbinGee: {2}\n", "\tKerbinGee: {2}\n",
stageIsp, stageIsp,
stageThrust, stageThrust,
KerbinGee KerbinGee
); );
   
return stageThrust / (stageIsp * KerbinGee); return stageThrust / (stageIsp * KerbinGee);
}, },
"Mg/s" "Mg/s"
); );
   
public static readonly VOID_DoubleValue stageNominalThrust = public static readonly VOID_DoubleValue stageNominalThrust =
new VOID_DoubleValue( new VOID_DoubleValue(
"Nominal Stage Thrust", "Nominal Stage Thrust",
delegate() delegate()
{ {
if (core.LastStage == null) if (core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
if (core.LastStage.actualThrust == 0d) if (core.LastStage.actualThrust == 0d)
{ {
return core.LastStage.thrust; return core.LastStage.thrust;
} }
else else
{ {
return core.LastStage.actualThrust; return core.LastStage.actualThrust;
} }
}, },
"kN" "kN"
); );
   
#endregion #endregion
   
#region Kinetics #region Kinetics
   
public static readonly VOID_DoubleValue currThrustWeight = public static readonly VOID_DoubleValue currThrustWeight =
new VOID_DoubleValue( new VOID_DoubleValue(
"T:W Ratio", "T:W Ratio",
delegate() delegate()
{ {
if (core.LastStage == null) if (core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
return core.LastStage.actualThrustToWeight; return core.LastStage.actualThrustToWeight;
}, },
"" ""
); );
   
   
   
public static readonly VOID_DoubleValue maxThrustWeight = public static readonly VOID_DoubleValue maxThrustWeight =
new VOID_DoubleValue( new VOID_DoubleValue(
"T:W Ratio", "T:W Ratio",
delegate() delegate()
{ {
if (core.LastStage == null) if (core.LastStage == null)
{ {
return double.NaN; return double.NaN;
} }
   
return core.LastStage.thrustToWeight; return core.LastStage.thrustToWeight;
}, },
"" ""
); );
   
public static readonly VOID_DoubleValue nominalThrustWeight = public static readonly VOID_DoubleValue nominalThrustWeight =
new VOID_DoubleValue( new VOID_DoubleValue(
"Thrust-to-Weight Ratio", "Thrust-to-Weight Ratio",
delegate() delegate()
{ {
if (HighLogic.LoadedSceneIsEditor || currThrustWeight.Value == 0d) if (HighLogic.LoadedSceneIsEditor || currThrustWeight.Value == 0d)
{ {
return maxThrustWeight.Value; return maxThrustWeight.Value;
} }
   
return currThrustWeight.Value; return currThrustWeight.Value;
}, },
"" ""
); );
   
public static readonly VOID_DoubleValue surfaceThrustWeight = public static readonly VOID_DoubleValue surfaceThrustWeight =
new VOID_DoubleValue( new VOID_DoubleValue(
"Max T:W @ surface", "Max T:W @ surface",
delegate() delegate()
{ {
if (core.Stages == null || core.LastStage == null) if (core.Stages == null || core.LastStage == null)
return double.NaN; return double.NaN;
   
double maxThrust = core.LastStage.thrust; double maxThrust = core.LastStage.thrust;
double mass = core.LastStage.totalMass; double mass = core.LastStage.totalMass;
double gravity = (VOID_Core.Constant_G * core.vessel.mainBody.Mass) / double gravity = (VOID_Core.Constant_G * core.vessel.mainBody.Mass) /
(core.vessel.mainBody.Radius * core.vessel.mainBody.Radius); (core.vessel.mainBody.Radius * core.vessel.mainBody.Radius);
double weight = mass * gravity; double weight = mass * gravity;
   
return maxThrust / weight; return maxThrust / weight;
}, },
"" ""
); );
   
public static readonly VOID_Vector3dValue vesselThrustOffset = public static readonly VOID_Vector3dValue vesselThrustOffset =
new VOID_Vector3dValue( new VOID_Vector3dValue(
"Thrust Offset", "Thrust Offset",
delegate() delegate()
{ {
if (core.vessel == null) if (core.vessel == null)
{ {
return Vector3d.zero; return Vector3d.zero;
} }
   
List<PartModule> engineModules = core.vessel.getModulesOfType<PartModule>(); List<PartModule> engineModules = core.vessel.getModulesOfType<PartModule>();
   
Vector3d thrustPos = Vector3d.zero; Vector3d thrustPos = Vector3d.zero;
Vector3d thrustDir = Vector3d.zero; Vector3d thrustDir = Vector3d.zero;
float thrust = 0; float thrust = 0;
   
foreach (PartModule engine in engineModules) foreach (PartModule engine in engineModules)
{ {
float moduleThrust = 0; float moduleThrust = 0;
   
switch (engine.moduleName) switch (engine.moduleName)
{ {
case "ModuleEngines": case "ModuleEngines":
case "ModuleEnginesFX": case "ModuleEnginesFX":
break; break;
default: default:
continue; continue;
} }
   
if (!engine.isEnabled) if (!engine.isEnabled)
{ {
continue; continue;
} }
   
CenterOfThrustQuery cotQuery = new CenterOfThrustQuery(); CenterOfThrustQuery cotQuery = new CenterOfThrustQuery();
   
if (engine is ModuleEngines) if (engine is ModuleEngines)
{ {
ModuleEngines engineModule = engine as ModuleEngines; ModuleEngines engineModule = engine as ModuleEngines;
   
moduleThrust = engineModule.finalThrust; moduleThrust = engineModule.finalThrust;
   
engineModule.OnCenterOfThrustQuery(cotQuery); engineModule.OnCenterOfThrustQuery(cotQuery);
} }
else // engine is ModuleEnginesFX else // engine is ModuleEnginesFX
{ {
ModuleEnginesFX engineFXModule = engine as ModuleEnginesFX; ModuleEnginesFX engineFXModule = engine as ModuleEnginesFX;
   
moduleThrust = engineFXModule.finalThrust; moduleThrust = engineFXModule.finalThrust;
   
engineFXModule.OnCenterOfThrustQuery(cotQuery); engineFXModule.OnCenterOfThrustQuery(cotQuery);
} }
   
if (moduleThrust != 0d) if (moduleThrust != 0d)
{ {
cotQuery.thrust = moduleThrust; cotQuery.thrust = moduleThrust;
} }
   
thrustPos += cotQuery.pos * cotQuery.thrust; thrustPos += cotQuery.pos * cotQuery.thrust;
thrustDir += cotQuery.dir * cotQuery.thrust; thrustDir += cotQuery.dir * cotQuery.thrust;
thrust += cotQuery.thrust; thrust += cotQuery.thrust;
} }
   
if (thrust != 0) if (thrust != 0)
{ {
thrustPos /= thrust; thrustPos /= thrust;
thrustDir /= thrust; thrustDir /= thrust;
} }
   
Transform vesselTransform = core.vessel.transform; Transform vesselTransform = core.vessel.transform;
   
thrustPos = vesselTransform.InverseTransformPoint(thrustPos); thrustPos = vesselTransform.InverseTransformPoint(thrustPos);
thrustDir = vesselTransform.InverseTransformDirection(thrustDir); thrustDir = vesselTransform.InverseTransformDirection(thrustDir);
   
Vector3d thrustOffset = VectorTools.PointDistanceToLine( Vector3d thrustOffset = VectorTools.PointDistanceToLine(
thrustPos, thrustDir.normalized, core.vessel.findLocalCenterOfMass()); thrustPos, thrustDir.normalized, core.vessel.findLocalCenterOfMass());
   
Tools.PostDebugMessage(typeof(VOID_Data), "vesselThrustOffset:\n" + Tools.PostDebugMessage(typeof(VOID_Data), "vesselThrustOffset:\n" +
"\tthrustPos: {0}\n" + "\tthrustPos: {0}\n" +
"\tthrustDir: {1}\n" + "\tthrustDir: {1}\n" +
"\tthrustOffset: {2}\n" + "\tthrustOffset: {2}\n" +
"\tvessel.CoM: {3}", "\tvessel.CoM: {3}",
thrustPos, thrustPos,
thrustDir.normalized, thrustDir.normalized,
thrustOffset, thrustOffset,
core.vessel.findWorldCenterOfMass() core.vessel.findWorldCenterOfMass()
); );
   
return thrustOffset; return thrustOffset;
}, },
"m" "m"
); );
   
#endregion #endregion
   
#region Air Breathing #region Air Breathing
   
public static readonly VOID_StrValue intakeAirStatus = public static readonly VOID_StrValue intakeAirStatus =
new VOID_StrValue( new VOID_StrValue(
"Intake Air (Curr / Req)", "Intake Air (Curr / Req)",
delegate() delegate()
{ {
double currentAmount; double currentAmount;
double currentRequirement; double currentRequirement;
   
currentAmount = 0d; currentAmount = 0d;
currentRequirement = 0d; currentRequirement = 0d;
   
foreach (Part part in core.vessel.Parts) foreach (Part part in core.vessel.Parts)
{ {
if (part.enabled) if (part.enabled)
{ {
ModuleEngines engineModule; ModuleEngines engineModule;
ModuleEnginesFX enginesFXModule; ModuleEnginesFX enginesFXModule;
List<Propellant> propellantList = null; List<Propellant> propellantList = null;
   
if (part.tryGetFirstModuleOfType<ModuleEngines>(out engineModule)) if (part.tryGetFirstModuleOfType<ModuleEngines>(out engineModule))
{ {
propellantList = engineModule.propellants; propellantList = engineModule.propellants;
} }
else if (part.tryGetFirstModuleOfType<ModuleEnginesFX>(out enginesFXModule)) else if (part.tryGetFirstModuleOfType<ModuleEnginesFX>(out enginesFXModule))
{ {
propellantList = enginesFXModule.propellants; propellantList = enginesFXModule.propellants;
} }
   
if (propellantList != null) if (propellantList != null)
{ {
foreach (Propellant propellant in propellantList) foreach (Propellant propellant in propellantList)
{ {
if (propellant.name == "IntakeAir") if (propellant.name == "IntakeAir")
{ {
currentRequirement += propellant.currentRequirement / TimeWarp.fixedDeltaTime; currentRequirement += propellant.currentRequirement / TimeWarp.fixedDeltaTime;
break; break;
} }
} }
} }
} }
   
ModuleResourceIntake intakeModule; ModuleResourceIntake intakeModule;
   
if (part.enabled && part.tryGetFirstModuleOfType<ModuleResourceIntake>(out intakeModule)) if (part.enabled && part.tryGetFirstModuleOfType<ModuleResourceIntake>(out intakeModule))
{ {
if (intakeModule.resourceName == "IntakeAir") if (intakeModule.resourceName == "IntakeAir")
{ {
currentAmount += intakeModule.airFlow; currentAmount += intakeModule.airFlow;
} }
} }
} }
   
if (currentAmount == 0 && currentRequirement == 0) if (currentAmount == 0 && currentRequirement == 0)
{ {
return "N/A"; return "N/A";
} }
   
return string.Format("{0:F3} / {1:F3}", currentAmount, currentRequirement); return string.Format("{0:F3} / {1:F3}", currentAmount, currentRequirement);
} }
); );
   
#endregion #endregion
   
#region Crew #region Crew
   
public static readonly VOID_IntValue vesselCrewCount = public static readonly VOID_IntValue vesselCrewCount =
new VOID_IntValue( new VOID_IntValue(
"Crew Onboard", "Crew Onboard",
delegate() delegate()
{ {
if (core.vessel != null) if (core.vessel != null)
{ {
return core.vessel.GetCrewCount(); return core.vessel.GetCrewCount();
} }
else else
{ {
return 0; return 0;
} }
}, },
"" ""
); );
   
public static readonly VOID_IntValue vesselCrewCapacity = public static readonly VOID_IntValue vesselCrewCapacity =
new VOID_IntValue( new VOID_IntValue(
"Crew Capacity", "Crew Capacity",
delegate() delegate()
{ {
if (core.vessel != null) if (core.vessel != null)
{ {
return core.vessel.GetCrewCapacity(); return core.vessel.GetCrewCapacity();
} }
else else
{ {
return 0; return 0;
} }
}, },
"" ""
); );
   
#endregion #endregion
   
#endregion #endregion
   
#region Location #region Location
   
public static readonly VOID_DoubleValue downrangeDistance = public static readonly VOID_DoubleValue downrangeDistance =
new VOID_DoubleValue( new VOID_DoubleValue(
"Downrange Distance", "Downrange Distance",
delegate() delegate()
{ {
   
if (core.vessel == null || if (core.vessel == null ||
Planetarium.fetch == null || Planetarium.fetch == null ||
core.vessel.mainBody != Planetarium.fetch.Home) core.vessel.mainBody != Planetarium.fetch.Home)
{ {
return double.NaN; return double.NaN;
} }
   
double vesselLongitude = core.vessel.longitude * Math.PI / 180d; double vesselLongitude = core.vessel.longitude * Math.PI / 180d;
double vesselLatitude = core.vessel.latitude * Math.PI / 180d; double vesselLatitude = core.vessel.latitude * Math.PI / 180d;
   
const double kscLongitude = 285.442323427289 * Math.PI / 180d; const double kscLongitude = 285.442323427289 * Math.PI / 180d;
const double kscLatitude = -0.0972112860655246 * Math.PI / 180d; const double kscLatitude = -0.0972112860655246 * Math.PI / 180d;
   
double diffLon = vesselLongitude - kscLongitude; double diffLon = vesselLongitude - kscLongitude;
double diffLat = vesselLatitude - kscLatitude; double diffLat = vesselLatitude - kscLatitude;
   
double sinHalfDiffLat = Math.Sin(diffLat / 2d); double sinHalfDiffLat = Math.Sin(diffLat / 2d);
double sinHalfDiffLon = Math.Sin(diffLon / 2d); double sinHalfDiffLon = Math.Sin(diffLon / 2d);
   
double cosVesselLon = Math.Cos(vesselLongitude); double cosVesselLon = Math.Cos(vesselLongitude);
double cosKSCLon = Math.Cos(kscLongitude); double cosKSCLon = Math.Cos(kscLongitude);
   
double haversine = double haversine =
sinHalfDiffLat * sinHalfDiffLat + sinHalfDiffLat * sinHalfDiffLat +
cosVesselLon * cosKSCLon * sinHalfDiffLon * sinHalfDiffLon; cosVesselLon * cosKSCLon * sinHalfDiffLon * sinHalfDiffLon;
   
double arc = 2d * Math.Atan2(Math.Sqrt(haversine), Math.Sqrt(1d - haversine)); double arc = 2d * Math.Atan2(Math.Sqrt(haversine), Math.Sqrt(1d - haversine));
   
return core.vessel.mainBody.Radius * arc; return core.vessel.mainBody.Radius * arc;
}, },
"m" "m"
); );
   
public static readonly VOID_StrValue surfLatitude = public static readonly VOID_StrValue surfLatitude =
new VOID_StrValue( new VOID_StrValue(
"Latitude", "Latitude",
new Func<string>(() => VOID_Tools.GetLatitudeString(core.vessel)) new Func<string>(() => VOID_Tools.GetLatitudeString(core.vessel))
); );
   
public static readonly VOID_StrValue surfLongitude = public static readonly VOID_StrValue surfLongitude =
new VOID_StrValue( new VOID_StrValue(
"Longitude", "Longitude",
new Func<string>(() => VOID_Tools.GetLongitudeString(core.vessel)) new Func<string>(() => VOID_Tools.GetLongitudeString(core.vessel))
); );
   
public static readonly VOID_DoubleValue trueAltitude = public static readonly VOID_DoubleValue trueAltitude =
new VOID_DoubleValue( new VOID_DoubleValue(
"Altitude (true)", "Altitude (true)",
delegate() delegate()
{ {
double alt_true = core.vessel.orbit.altitude - core.vessel.terrainAltitude; double alt_true = core.vessel.orbit.altitude - core.vessel.terrainAltitude;
// HACK: This assumes that on worlds with oceans, all water is fixed at 0 m, // HACK: This assumes that on worlds with oceans, all water is fixed at 0 m,
// and water covers the whole surface at 0 m. // and water covers the whole surface at 0 m.
if (core.vessel.terrainAltitude < 0 && core.vessel.mainBody.ocean) if (core.vessel.terrainAltitude < 0 && core.vessel.mainBody.ocean)
alt_true = core.vessel.orbit.altitude; alt_true = core.vessel.orbit.altitude;
return alt_true; return alt_true;
}, },
"m" "m"
); );
   
#endregion #endregion
   
#region Kinematics #region Kinematics
   
public static readonly VOID_DoubleValue geeForce = public static readonly VOID_DoubleValue geeForce =
new VOID_DoubleValue( new VOID_DoubleValue(
"G-force", "G-force",
new Func<double>(() => core.vessel.geeForce), new Func<double>(() => core.vessel.geeForce),
"gees" "gees"
); );
   
public static readonly VOID_DoubleValue horzVelocity = public static readonly VOID_DoubleValue horzVelocity =
new VOID_DoubleValue( new VOID_DoubleValue(
"Horizontal speed", "Horizontal speed",
new Func<double>(() => core.vessel.horizontalSrfSpeed), new Func<double>(() => core.vessel.horizontalSrfSpeed),
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue surfVelocity = public static readonly VOID_DoubleValue surfVelocity =
new VOID_DoubleValue( new VOID_DoubleValue(
"Surface velocity", "Surface velocity",
new Func<double>(() => core.vessel.srf_velocity.magnitude), new Func<double>(() => core.vessel.srf_velocity.magnitude),
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue vertVelocity = public static readonly VOID_DoubleValue vertVelocity =
new VOID_DoubleValue( new VOID_DoubleValue(
"Vertical speed", "Vertical speed",
new Func<double>(() => core.vessel.verticalSpeed), new Func<double>(() => core.vessel.verticalSpeed),
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue vesselAccel = public static readonly VOID_DoubleValue vesselAccel =
new VOID_DoubleValue( new VOID_DoubleValue(
"Acceleration", "Acceleration",
() => geeForce * KerbinGee, () => geeForce * KerbinGee,
"m/s²" "m/s²"
); );
   
public static readonly VOID_DoubleValue vesselAngularVelocity = public static readonly VOID_DoubleValue vesselAngularVelocity =
new VOID_DoubleValue( new VOID_DoubleValue(
"Angular Velocity", "Angular Velocity",
delegate() delegate()
{ {
if (core.vessel != null) if (core.vessel != null)
{ {
return core.vessel.angularVelocity.magnitude; return core.vessel.angularVelocity.magnitude;
} }
else else
{ {
return double.NaN; return double.NaN;
} }
}, },
"rad/s" "rad/s"
); );
   
#endregion #endregion
   
#region Navigation #region Navigation
   
public static int upcomingManeuverNodes public static int upcomingManeuverNodes
{ {
get get
{ {
if (core.vessel == null || if (core.vessel == null ||
core.vessel.patchedConicSolver == null || core.vessel.patchedConicSolver == null ||
core.vessel.patchedConicSolver.maneuverNodes == null) core.vessel.patchedConicSolver.maneuverNodes == null)
{ {
return 0; return 0;
} }
   
return core.vessel.patchedConicSolver.maneuverNodes.Count; return core.vessel.patchedConicSolver.maneuverNodes.Count;
} }
} }
   
public static readonly VOID_StrValue burnTimeDoneAtNode = public static readonly VOID_StrValue burnTimeDoneAtNode =
new VOID_StrValue( new VOID_StrValue(
"Full burn time to be half done at node", "Full burn time to be half done at node",
delegate() delegate()
{ {
if (core.LastStage == null && upcomingManeuverNodes < 1) if (core.LastStage == null && upcomingManeuverNodes < 1)
{ {
return "N/A"; return "N/A";
} }
   
ManeuverNode node = core.vessel.patchedConicSolver.maneuverNodes[0]; ManeuverNode node = core.vessel.patchedConicSolver.maneuverNodes[0];
   
if ((node.UT - Planetarium.GetUniversalTime()) < 0) if ((node.UT - Planetarium.GetUniversalTime()) < 0)
{ {
return string.Empty; return string.Empty;
} }
   
double interval = (node.UT - currentNodeBurnDuration) - Planetarium.GetUniversalTime(); double interval = (node.UT - currentNodeBurnDuration) - Planetarium.GetUniversalTime();
   
if (double.IsNaN(interval)) if (double.IsNaN(interval))
{ {
return string.Intern("NaN"); return string.Intern("NaN");
} }
   
int sign = Math.Sign(interval); int sign = Math.Sign(interval);
interval = Math.Abs(interval); interval = Math.Abs(interval);
   
string format; string format;
   
if (sign >= 0) if (sign >= 0)
{ {
format = string.Intern("T - {0}"); format = string.Intern("T - {0}");
} }
else else
{ {
format = string.Intern("T + {0}"); format = string.Intern("T + {0}");
} }
   
return string.Format(format, VOID_Tools.ConvertInterval(interval)); return string.Format(format, VOID_Tools.FormatInterval(interval));
} }
); );
   
public static readonly VOID_StrValue burnTimeHalfDoneAtNode = public static readonly VOID_StrValue burnTimeHalfDoneAtNode =
new VOID_StrValue( new VOID_StrValue(
"Full burn time to be half done at node", "Full burn time to be half done at node",
delegate() delegate()
{ {
if (core.LastStage == null && upcomingManeuverNodes < 1) if (core.LastStage == null && upcomingManeuverNodes < 1)
{ {
return "N/A"; return "N/A";
} }
   
ManeuverNode node = core.vessel.patchedConicSolver.maneuverNodes[0]; ManeuverNode node = core.vessel.patchedConicSolver.maneuverNodes[0];
   
if ((node.UT - Planetarium.GetUniversalTime()) < 0) if ((node.UT - Planetarium.GetUniversalTime()) < 0)
{ {
return string.Empty; return string.Empty;
} }
   
double interval = (node.UT - currentNodeHalfBurnDuration) - Planetarium.GetUniversalTime(); double interval = (node.UT - currentNodeHalfBurnDuration) - Planetarium.GetUniversalTime();
   
if (double.IsNaN(interval)) if (double.IsNaN(interval))
{ {
return string.Intern("NaN"); return string.Intern("NaN");
} }
   
int sign = Math.Sign(interval); int sign = Math.Sign(interval);
interval = Math.Abs(interval); interval = Math.Abs(interval);
   
string format; string format;
   
if (sign >= 0) if (sign >= 0)
{ {
format = string.Intern("T - {0}"); format = string.Intern("T - {0}");
} }
else else
{ {
format = string.Intern("T + {0}"); format = string.Intern("T + {0}");
} }
   
return string.Format(format, VOID_Tools.ConvertInterval(interval)); return string.Format(format, VOID_Tools.FormatInterval(interval));
} }
); );
   
public static readonly VOID_DoubleValue currManeuverDeltaV = public static readonly VOID_DoubleValue currManeuverDeltaV =
new VOID_DoubleValue( new VOID_DoubleValue(
"Current Maneuver Delta-V", "Current Maneuver Delta-V",
delegate() delegate()
{ {
if (upcomingManeuverNodes > 0) if (upcomingManeuverNodes > 0)
{ {
return core.vessel.patchedConicSolver.maneuverNodes[0].DeltaV.magnitude; return core.vessel.patchedConicSolver.maneuverNodes[0].DeltaV.magnitude;
} }
else else
{ {
return double.NaN; return double.NaN;
} }
}, },
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue currManeuverDVRemaining = public static readonly VOID_DoubleValue currManeuverDVRemaining =
new VOID_DoubleValue( new VOID_DoubleValue(
"Remaining Maneuver Delta-V", "Remaining Maneuver Delta-V",
delegate() delegate()
{ {
if (upcomingManeuverNodes > 0) if (upcomingManeuverNodes > 0)
{ {
return core.vessel.patchedConicSolver.maneuverNodes[0].GetBurnVector(core.vessel.orbit).magnitude; return core.vessel.patchedConicSolver.maneuverNodes[0].GetBurnVector(core.vessel.orbit).magnitude;
} }
else else
{ {
return double.NaN; return double.NaN;
} }
}, },
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue currentNodeBurnDuration = public static readonly VOID_DoubleValue currentNodeBurnDuration =
new VOID_DoubleValue( new VOID_DoubleValue(
"Total Burn Time", "Total Burn Time",
delegate() delegate()
{ {
if (core.LastStage == null || currManeuverDeltaV.Value == double.NaN) if (core.LastStage == null || currManeuverDeltaV.Value == double.NaN)
{ {
return double.NaN; return double.NaN;
} }
   
double stageThrust = stageNominalThrust; double stageThrust = stageNominalThrust;
   
return burnTime(currManeuverDeltaV.Value, totalMass, stageMassFlow, stageThrust); return burnTime(currManeuverDeltaV.Value, totalMass, stageMassFlow, stageThrust);
}, },
"s" "s"
); );
   
public static readonly VOID_DoubleValue currentNodeBurnRemaining = public static readonly VOID_DoubleValue currentNodeBurnRemaining =
new VOID_DoubleValue( new VOID_DoubleValue(
"Burn Time Remaining", "Burn Time Remaining",
delegate() delegate()
{ {
if (core.LastStage == null || currManeuverDVRemaining == double.NaN) if (core.LastStage == null || currManeuverDVRemaining == double.NaN)
{ {
return double.NaN; return double.NaN;
} }
   
double stageThrust = stageNominalThrust; double stageThrust = stageNominalThrust;
   
return burnTime(currManeuverDVRemaining, totalMass, stageMassFlow, stageThrust); return burnTime(currManeuverDVRemaining, totalMass, stageMassFlow, stageThrust);
}, },
"s" "s"
); );
   
public static readonly VOID_DoubleValue currentNodeHalfBurnDuration = public static readonly VOID_DoubleValue currentNodeHalfBurnDuration =
new VOID_DoubleValue( new VOID_DoubleValue(
"Half Burn Time", "Half Burn Time",
delegate() delegate()
{ {
if (core.LastStage == null || currManeuverDeltaV.Value == double.NaN) if (core.LastStage == null || currManeuverDeltaV.Value == double.NaN)
{ {
return double.NaN; return double.NaN;
} }
   
double stageThrust = stageNominalThrust; double stageThrust = stageNominalThrust;
   
return burnTime(currManeuverDeltaV.Value / 2d, totalMass, stageMassFlow, stageThrust); return burnTime(currManeuverDeltaV.Value / 2d, totalMass, stageMassFlow, stageThrust);
}, },
"s" "s"
); );
   
public static readonly VOID_DoubleValue nextManeuverDeltaV = public static readonly VOID_DoubleValue nextManeuverDeltaV =
new VOID_DoubleValue( new VOID_DoubleValue(
"Current Maneuver Delta-V", "Current Maneuver Delta-V",
delegate() delegate()
{ {
if (upcomingManeuverNodes > 1) if (upcomingManeuverNodes > 1)
{ {
return core.vessel.patchedConicSolver.maneuverNodes[1].DeltaV.magnitude; return core.vessel.patchedConicSolver.maneuverNodes[1].DeltaV.magnitude;
} }
else else
{ {
return double.NaN; return double.NaN;
} }
}, },
"m/s" "m/s"
); );
   
#endregion #endregion
   
#region Orbits #region Orbits
   
public static readonly VOID_StrValue primaryName = public static readonly VOID_StrValue primaryName =
new VOID_StrValue( new VOID_StrValue(
VOID_Localization.void_primary, VOID_Localization.void_primary,
delegate() delegate()
{ {
if (core.vessel == null) if (core.vessel == null)
{ {
return string.Empty; return string.Empty;
} }
return core.vessel.mainBody.name; return core.vessel.mainBody.name;
} }
); );
   
public static readonly VOID_DoubleValue orbitAltitude = public static readonly VOID_DoubleValue orbitAltitude =
new VOID_DoubleValue( new VOID_DoubleValue(
"Altitude (ASL)", "Altitude (ASL)",
new Func<double>(() => core.vessel.orbit.altitude), new Func<double>(() => core.vessel.orbit.altitude),
"m" "m"
); );
   
public static readonly VOID_DoubleValue orbitVelocity = public static readonly VOID_DoubleValue orbitVelocity =
new VOID_DoubleValue( new VOID_DoubleValue(
VOID_Localization.void_velocity, VOID_Localization.void_velocity,
new Func<double>(() => core.vessel.orbit.vel.magnitude), new Func<double>(() => core.vessel.orbit.vel.magnitude),
"m/s" "m/s"
); );
   
public static readonly VOID_DoubleValue orbitApoAlt = public static readonly VOID_DoubleValue orbitApoAlt =
new VOID_DoubleValue( new VOID_DoubleValue(
VOID_Localization.void_apoapsis, VOID_Localization.void_apoapsis,
new Func<double>(() => core.vessel.orbit.ApA), new Func<double>(() => core.vessel.orbit.ApA),
"m" "m"
); );
   
public static readonly VOID_DoubleValue oribtPeriAlt = public static readonly VOID_DoubleValue oribtPeriAlt =
new VOID_DoubleValue( new VOID_DoubleValue(
VOID_Localization.void_periapsis, VOID_Localization.void_periapsis,
new Func<double>(() => core.vessel.orbit.PeA), new Func<double>(() => core.vessel.orbit.PeA),
"m" "m"
); );
   
public static readonly VOID_StrValue timeToApo = public static readonly VOID_StrValue timeToApo =
new VOID_StrValue( new VOID_StrValue(
"Time to Apoapsis", "Time to Apoapsis",
new Func<string>(() => VOID_Tools.ConvertInterval(core.vessel.orbit.timeToAp)) new Func<string>(() => VOID_Tools.FormatInterval(core.vessel.orbit.timeToAp))
); );
   
public static readonly VOID_StrValue timeToPeri = public static readonly VOID_StrValue timeToPeri =
new VOID_StrValue( new VOID_StrValue(
"Time to Periapsis", "Time to Periapsis",
new Func<string>(() => VOID_Tools.ConvertInterval(core.vessel.orbit.timeToPe)) new Func<string>(() => VOID_Tools.FormatInterval(core.vessel.orbit.timeToPe))
); );
   
public static readonly VOID_DoubleValue orbitInclination = public static readonly VOID_DoubleValue orbitInclination =
new VOID_DoubleValue( new VOID_DoubleValue(
"Inclination", "Inclination",
new Func<double>(() => core.vessel.orbit.inclination), new Func<double>(() => core.vessel.orbit.inclination),
"°" "°"
); );
   
public static readonly VOID_DoubleValue gravityAccel = public static readonly VOID_DoubleValue gravityAccel =
new VOID_DoubleValue( new VOID_DoubleValue(
"Gravity", "Gravity",
delegate() delegate()
{ {
double orbitRadius = core.vessel.mainBody.Radius + double orbitRadius = core.vessel.mainBody.Radius +
core.vessel.mainBody.GetAltitude(core.vessel.findWorldCenterOfMass()); core.vessel.mainBody.GetAltitude(core.vessel.findWorldCenterOfMass());
return (VOID_Core.Constant_G * core.vessel.mainBody.Mass) / return (VOID_Core.Constant_G * core.vessel.mainBody.Mass) /
(orbitRadius * orbitRadius); (orbitRadius * orbitRadius);
}, },
"m/s²" "m/s²"
); );
   
public static readonly VOID_StrValue orbitPeriod = public static readonly VOID_StrValue orbitPeriod =
new VOID_StrValue( new VOID_StrValue(
"Period", "Period",
new Func<string>(() => VOID_Tools.ConvertInterval(core.vessel.orbit.period)) new Func<string>(() => VOID_Tools.FormatInterval(core.vessel.orbit.period))
); );
   
public static readonly VOID_DoubleValue semiMajorAxis = public static readonly VOID_DoubleValue semiMajorAxis =
new VOID_DoubleValue( new VOID_DoubleValue(
"Semi-Major Axis", "Semi-Major Axis",
new Func<double>(() => core.vessel.orbit.semiMajorAxis), new Func<double>(() => core.vessel.orbit.semiMajorAxis),
"m" "m"
); );
   
public static readonly VOID_DoubleValue eccentricity = public static readonly VOID_DoubleValue eccentricity =
new VOID_DoubleValue( new VOID_DoubleValue(
"Eccentricity", "Eccentricity",
new Func<double>(() => core.vessel.orbit.eccentricity), new Func<double>(() => core.vessel.orbit.eccentricity),
"" ""
); );
   
public static readonly VOID_DoubleValue meanAnomaly = public static readonly VOID_DoubleValue meanAnomaly =
new VOID_DoubleValue( new VOID_DoubleValue(
"Mean Anomaly", "Mean Anomaly",
new Func<double>(() => core.vessel.orbit.meanAnomaly * 180d / Math.PI), new Func<double>(() => core.vessel.orbit.meanAnomaly * 180d / Math.PI),
"°" "°"
); );
   
public static readonly VOID_DoubleValue trueAnomaly = public static readonly VOID_DoubleValue trueAnomaly =
new VOID_DoubleValue( new VOID_DoubleValue(
"True Anomaly", "True Anomaly",
new Func<double>(() => core.vessel.orbit.trueAnomaly), new Func<double>(() => core.vessel.orbit.trueAnomaly),
"°" "°"
); );
   
public static readonly VOID_DoubleValue eccAnomaly = public static readonly VOID_DoubleValue eccAnomaly =
new VOID_DoubleValue( new VOID_DoubleValue(
"Eccentric Anomaly", "Eccentric Anomaly",
new Func<double>(() => core.vessel.orbit.eccentricAnomaly * 180d / Math.PI), new Func<double>(() => core.vessel.orbit.eccentricAnomaly * 180d / Math.PI),
"°" "°"
); );
   
public static readonly VOID_DoubleValue longitudeAscNode = public static readonly VOID_DoubleValue longitudeAscNode =
new VOID_DoubleValue( new VOID_DoubleValue(
"Long. Ascending Node", "Long. Ascending Node",
new Func<double>(() => core.vessel.orbit.LAN), new Func<double>(() => core.vessel.orbit.LAN),
"°" "°"
); );
   
public static readonly VOID_DoubleValue argumentPeriapsis = public static readonly VOID_DoubleValue argumentPeriapsis =
new VOID_DoubleValue( new VOID_DoubleValue(
"Argument of Periapsis", "Argument of Periapsis",
new Func<double>(() => core.vessel.orbit.argumentOfPeriapsis), new Func<double>(() => core.vessel.orbit.argumentOfPeriapsis),
"°" "°"
); );
   
public static readonly VOID_DoubleValue localSiderealLongitude = public static readonly VOID_DoubleValue localSiderealLongitude =
new VOID_DoubleValue( new VOID_DoubleValue(
"Local Sidereal Longitude", "Local Sidereal Longitude",
new Func<double>(() => VOID_Tools.FixDegreeDomain( new Func<double>(() => VOID_Tools.FixDegreeDomain(
core.vessel.longitude + core.vessel.orbit.referenceBody.rotationAngle)), core.vessel.longitude + core.vessel.orbit.referenceBody.rotationAngle)),
"°" "°"
); );
   
#endregion #endregion
   
#region Science #region Science
   
public static readonly VOID_StrValue expSituation = public static readonly VOID_StrValue expSituation =
new VOID_StrValue( new VOID_StrValue(
"Situation", "Situation",
new Func<string>(() => core.vessel.GetExperimentSituation().HumanString()) new Func<string>(() => core.vessel.GetExperimentSituation().HumanString())
); );
   
public static readonly VOID_StrValue currBiome = public static readonly VOID_StrValue currBiome =
new VOID_StrValue( new VOID_StrValue(
"Biome", "Biome",
new Func<string>(() => VOID_Tools.GetBiome(core.vessel).name) new Func<string>(() => VOID_Tools.GetBiome(core.vessel).name)
); );
   
#endregion #endregion
   
#region Surface #region Surface
   
public static readonly VOID_DoubleValue terrainElevation = public static readonly VOID_DoubleValue terrainElevation =
new VOID_DoubleValue( new VOID_DoubleValue(
"Terrain elevation", "Terrain elevation",
new Func<double>(() => core.vessel.terrainAltitude), new Func<double>(() => core.vessel.terrainAltitude),
"m" "m"
); );
   
#endregion #endregion
   
private static double burnTime(double deltaV, double initialMass, double massFlow, double thrust) private static double burnTime(double deltaV, double initialMass, double massFlow, double thrust)
{ {
Tools.PostDebugMessage(typeof(VOID_Data), "calculating burnTime from:\n" + Tools.PostDebugMessage(typeof(VOID_Data), "calculating burnTime from:\n" +
"\tdeltaV: {0}\n" + "\tdeltaV: {0}\n" +
"\tinitialMass: {1}\n" + "\tinitialMass: {1}\n" +
"\tmassFlow: {2}\n" + "\tmassFlow: {2}\n" +
"\tthrust: {3}\n", "\tthrust: {3}\n",
deltaV, deltaV,
initialMass, initialMass,
massFlow, massFlow,
thrust thrust
); );
return initialMass / massFlow * (1d - Math.Exp(-deltaV * massFlow / thrust)); return initialMass / massFlow * (1d - Math.Exp(-deltaV * massFlow / thrust));
} }
} }
} }
   
   
// VOID // VOID
// //
// VOID_DataLogger.cs // VOID_DataLogger.cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using KSP; using KSP;
using System; using System;
using System.Collections.Generic; using System.Collections.Generic;
using System.IO; using System.IO;
using System.Text; using System.Text;
using ToadicusTools; using ToadicusTools;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public class VOID_DataLogger : VOID_WindowModule, IVOID_BehaviorModule public class VOID_DataLogger : VOID_WindowModule, IVOID_BehaviorModule
{ {
/* /*
* Fields * Fields
* */ * */
protected bool stopwatch1_running; #region Fields
   
protected bool _loggingActive; protected bool _loggingActive;
protected bool first_write; protected bool firstWrite;
   
protected double stopwatch1; [AVOID_SaveValue("logInterval")]
  protected VOID_SaveValue<float> logInterval;
protected string csv_log_interval_str; protected string logIntervalStr;
   
protected float csv_log_interval; protected float csvCollectTimer;
   
protected double csvCollectTimer; protected List<byte> csvBytes;
   
protected System.Text.UTF8Encoding utf8Encoding; protected string _fileName;
protected FileStream _outputFile; protected FileStream _outputFile;
   
protected List<string> csvList = new List<string>(); protected uint outstandingWrites;
   
  protected System.Text.UTF8Encoding _utf8Encoding;
   
  #endregion
   
/* /*
* Properties * Properties
* */ * */
   
  #region Properties
   
// TODO: Add configurable or incremental file names. // TODO: Add configurable or incremental file names.
protected bool loggingActive protected bool loggingActive
{ {
get get
{ {
return this._loggingActive; return this._loggingActive;
} }
set set
{ {
if (value != this._loggingActive) if (value != this._loggingActive)
{ {
if (value) if (value)
{ {
  this.csvCollectTimer = 0f;
} }
else else
{ {
if (this._outputFile != null) this.CloseFileIfOpen();
{  
Tools.DebugLogger logger = Tools.DebugLogger.New(this);  
   
logger.Append("CSV logging disabled, ");  
   
logger.Append("disposing file.");  
logger.Print();  
this.outputFile.Dispose();  
this._outputFile = null;  
}  
} }
   
this._loggingActive = value; this._loggingActive = value;
} }
} }
} }
   
protected string fileName protected string fileName
{ {
get get
{ {
return KSP.IO.IOUtils.GetFilePathFor( if (this._fileName == null || this._fileName == string.Empty)
typeof(VOID_Core), {
string.Format( this._fileName = KSP.IO.IOUtils.GetFilePathFor(
"{0}_{1}", typeof(VOID_Core),
this.vessel.vesselName, string.Format(
"data.csv" "{0}_{1}",
), this.vessel.vesselName,
null "data.csv"
); ),
  null
  );
  }
   
  return this._fileName;
} }
} }
   
protected FileStream outputFile protected FileStream outputFile
{ {
get get
{ {
if (this._outputFile == null) if (this._outputFile == null)
{ {
Tools.DebugLogger logger = Tools.DebugLogger.New(this); Tools.DebugLogger logger = Tools.DebugLogger.New(this);
logger.AppendFormat("Initializing output file '{0}' with mode ", this.fileName); logger.AppendFormat("Initializing output file '{0}' with mode ", this.fileName);
   
if (File.Exists(this.fileName)) if (File.Exists(this.fileName))
{ {
logger.Append("append"); logger.Append("append");
this._outputFile = new FileStream(this.fileName, FileMode.Append, FileAccess.Write, FileShare.Write, 512, true); this._outputFile = new FileStream(
  this.fileName,
  FileMode.Append,
  FileAccess.Write,
  FileShare.Read,
  512,
  true
  );
} }
else else
{ {
logger.Append("create"); logger.Append("create");
this._outputFile = new FileStream(this.fileName, FileMode.Create, FileAccess.Write, FileShare.Write, 512, true); this._outputFile = new FileStream(
  this.fileName,
byte[] bom = utf8Encoding.GetPreamble(); FileMode.Create,
  FileAccess.Write,
  FileShare.Read,
  512,
  true
  );
   
  byte[] byteOrderMark = utf8Encoding.GetPreamble();
   
logger.Append(" and writing preamble"); logger.Append(" and writing preamble");
outputFile.Write(bom, 0, bom.Length); this._outputFile.Write(byteOrderMark, 0, byteOrderMark.Length);
} }
   
logger.Append('.'); logger.Append('.');
   
  logger.AppendFormat(" File is {0}opened asynchronously.", this._outputFile.IsAsync ? "" : "not ");
   
logger.Print(); logger.Print();
} }
   
return this._outputFile; return this._outputFile;
} }
} }
   
  public UTF8Encoding utf8Encoding
  {
  get
  {
  if (this._utf8Encoding == null)
  {
  this._utf8Encoding = new UTF8Encoding(true);
  }
   
  return this._utf8Encoding;
  }
  }
   
  #endregion
   
/* /*
* Methods * Methods
* */ * */
public VOID_DataLogger() #region Monobehaviour Lifecycle
{  
this._Name = "CSV Data Logger";  
   
this.stopwatch1_running = false;  
   
this.loggingActive = false;  
this.first_write = true;  
   
this.stopwatch1 = 0;  
this.csv_log_interval_str = "0.5";  
   
this.csvCollectTimer = 0;  
   
this.WindowPos.x = Screen.width - 520;  
this.WindowPos.y = 85;  
}  
   
public override void ModuleWindow(int _)  
{  
GUIStyle txt_white = new GUIStyle(GUI.skin.label);  
txt_white.normal.textColor = txt_white.focused.textColor = Color.white;  
txt_white.alignment = TextAnchor.UpperRight;  
GUIStyle txt_green = new GUIStyle(GUI.skin.label);  
txt_green.normal.textColor = txt_green.focused.textColor = Color.green;  
txt_green.alignment = TextAnchor.UpperRight;  
GUIStyle txt_yellow = new GUIStyle(GUI.skin.label);  
txt_yellow.normal.textColor = txt_yellow.focused.textColor = Color.yellow;  
txt_yellow.alignment = TextAnchor.UpperRight;  
   
GUILayout.BeginVertical();  
   
GUILayout.Label("System time: " + DateTime.Now.ToString("HH:mm:ss"));  
GUILayout.Label(VOID_Tools.ConvertInterval(stopwatch1));  
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));  
if (GUILayout.Button("Start"))  
{  
if (stopwatch1_running == false) stopwatch1_running = true;  
}  
if (GUILayout.Button("Stop"))  
{  
if (stopwatch1_running == true) stopwatch1_running = false;  
}  
if (GUILayout.Button("Reset"))  
{  
if (stopwatch1_running == true) stopwatch1_running = false;  
stopwatch1 = 0;  
}  
GUILayout.EndHorizontal();  
   
GUIStyle label_style = txt_white;  
string log_label = "Inactive";  
if (loggingActive && vessel.situation.ToString() == "PRELAUNCH")  
{  
log_label = "Awaiting launch";  
label_style = txt_yellow;  
}  
if (loggingActive && vessel.situation.ToString() != "PRELAUNCH")  
{  
log_label = "Active";  
label_style = txt_green;  
}  
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));  
this.loggingActive = GUILayout.Toggle(loggingActive, "Data logging: ", GUILayout.ExpandWidth(false));  
   
GUILayout.Label(log_label, label_style, GUILayout.ExpandWidth(true));  
GUILayout.EndHorizontal();  
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));  
GUILayout.Label("Interval: ", GUILayout.ExpandWidth(false));  
csv_log_interval_str = GUILayout.TextField(csv_log_interval_str, GUILayout.ExpandWidth(true));  
GUILayout.Label("s", GUILayout.ExpandWidth(false));  
GUILayout.EndHorizontal();  
   
float new_log_interval;  
if (float.TryParse(csv_log_interval_str, out new_log_interval))  
{  
csv_log_interval = new_log_interval;  
}  
   
GUILayout.EndVertical();  
GUI.DragWindow();  
}  
   
public void Update() public void Update()
{ {
  if (this.csvBytes != null && this.csvBytes.Count > 0)
  {
  // csvList is not empty, write it
  this.AsyncWriteData();
  }
   
// CSV Logging // CSV Logging
// from ISA MapSat // from ISA MapSat
if (loggingActive) if (loggingActive)
{ {
//data logging is on //data logging is on
//increment timers //increment timers
csvCollectTimer += Time.deltaTime; this.csvCollectTimer += Time.deltaTime;
   
if (csvCollectTimer >= csv_log_interval && vessel.situation != Vessel.Situations.PRELAUNCH) if (this.csvCollectTimer >= this.logInterval)
{ {
//data logging is on, vessel is not prelaunch, and interval has passed //data logging is on, vessel is not prelaunch, and interval has passed
//write a line to the list //write a line to the list
line_to_csvList(); //write to the csv this.CollectLogData();
} }
   
if (csvList.Count > 0)  
{  
// csvList is not empty and interval between writings to file has elapsed  
//write it  
   
// Tools.PostDebugMessage("")  
   
this.AsyncWriteData();  
}  
}  
else  
{  
//data logging is off  
//reset any timers and clear anything from csvList  
csvCollectTimer = 0f;  
if (csvList.Count > 0) csvList.Clear();  
}  
   
if (stopwatch1_running)  
{  
stopwatch1 += Time.deltaTime;  
} }
} }
   
public void FixedUpdate() {} public void FixedUpdate() {}
   
public void OnDestroy() public void OnDestroy()
{ {
Tools.DebugLogger logger = Tools.DebugLogger.New(this); Tools.DebugLogger logger = Tools.DebugLogger.New(this);
   
logger.Append("Destroying..."); logger.Append("Destroying...");
   
if (this.csvList.Count > 0) this.CloseFileIfOpen();
{  
logger.Append(" Writing final data...");  
this.AsyncWriteData();  
}  
   
if (this._outputFile != null)  
{  
logger.Append(" Closing File...");  
this.outputFile.Close();  
}  
   
logger.Append(" Done."); logger.Append(" Done.");
logger.Print(); logger.Print(false);
} }
   
protected void AsyncWriteCallback(IAsyncResult result) #endregion
{  
Tools.PostDebugMessage(this, "Got async callback, IsCompleted = {0}", result.IsCompleted); #region VOID_Module Overrides
   
this.outputFile.EndWrite(result); public override void LoadConfig()
} {
  base.LoadConfig();
private void AsyncWriteData()  
{ this.logIntervalStr = this.logInterval.value.ToString("#.0##");
if (this.utf8Encoding == null) }
{  
this.utf8Encoding = new System.Text.UTF8Encoding(true, true); public override void ModuleWindow(int _)
} {
  GUILayout.BeginVertical();
List<byte> bytes = new List<byte>();  
  GUILayout.Label(
foreach (string line in this.csvList) string.Format("System time: {0}", DateTime.Now.ToString("HH:mm:ss")),
{ GUILayout.ExpandWidth(true)
byte[] lineBytes = utf8Encoding.GetBytes(line); );
bytes.AddRange(lineBytes); GUILayout.Label(
} string.Format("Kerbin time: {0}", VOID_Tools.FormatDate(Planetarium.GetUniversalTime())),
  GUILayout.ExpandWidth(true)
WriteState state = new WriteState(); );
   
state.bytes = bytes.ToArray(); GUIStyle activeLabelStyle = VOID_Styles.labelRed;
  string activeLabelText = "Inactive";
var writeCallback = new AsyncCallback(this.AsyncWriteCallback); if (loggingActive)
  {
this.outputFile.BeginWrite(state.bytes, 0, state.bytes.Length, writeCallback, state); activeLabelText = "Active";
  activeLabelStyle = VOID_Styles.labelGreen;
this.csvList.Clear(); }
}  
  GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
private void line_to_csvList()  
{ this.loggingActive = GUILayout.Toggle(loggingActive, "Data logging: ", GUILayout.ExpandWidth(false));
  GUILayout.Label(activeLabelText, activeLabelStyle, GUILayout.ExpandWidth(true));
   
  GUILayout.EndHorizontal();
   
  GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
   
  GUILayout.Label("Interval: ", GUILayout.ExpandWidth(false));
   
  logIntervalStr = GUILayout.TextField(logIntervalStr, GUILayout.ExpandWidth(true));
  GUILayout.Label("s", GUILayout.ExpandWidth(false));
   
  GUILayout.EndHorizontal();
   
  float newLogInterval;
  if (float.TryParse(logIntervalStr, out newLogInterval))
  {
  logInterval.value = newLogInterval;
  this.logIntervalStr = this.logInterval.value.ToString("#.0##");
  }
   
  GUILayout.EndVertical();
   
  GUI.DragWindow();
  }
   
  #endregion
   
  #region Data Collection
   
  private void CollectLogData()
  {
  if (this.csvBytes == null)
  {
  this.csvBytes = new List<byte>();
  }
   
//called if logging is on and interval has passed //called if logging is on and interval has passed
//writes one line to the csvList //writes one line to the csvList
   
StringBuilder line = new StringBuilder(); StringBuilder line = new StringBuilder();
   
if (first_write) if (firstWrite)
{ {
first_write = false; firstWrite = false;
line.Append( line.Append(
  "\"Kerbin Universal Time (s)\"," +
"\"Mission Elapsed Time (s)\t\"," + "\"Mission Elapsed Time (s)\t\"," +
"\"Altitude ASL (m)\"," + "\"Altitude ASL (m)\"," +
"\"Altitude above terrain (m)\"," + "\"Altitude above terrain (m)\"," +
"\"Surface Latitude (°)\"," + "\"Surface Latitude (°)\"," +
"\"Surface Longitude (°)\"," + "\"Surface Longitude (°)\"," +
"\"Orbital Velocity (m/s)\"," + "\"Orbital Velocity (m/s)\"," +
"\"Surface Velocity (m/s)\"," + "\"Surface Velocity (m/s)\"," +
"\"Vertical Speed (m/s)\"," + "\"Vertical Speed (m/s)\"," +
"\"Horizontal Speed (m/s)\"," + "\"Horizontal Speed (m/s)\"," +
"\"Gee Force (gees)\"," + "\"Gee Force (gees)\"," +
"\"Temperature (°C)\"," + "\"Temperature (°C)\"," +
"\"Gravity (m/s²)\"," + "\"Gravity (m/s²)\"," +
"\"Atmosphere Density (g/m³)\"," + "\"Atmosphere Density (g/m³)\"," +
"\"Downrange Distance (m)\"," + "\"Downrange Distance (m)\"," +
"\n" "\n"
); );
} }
   
  // Universal time
  line.Append(Planetarium.GetUniversalTime().ToString("F2"));
  line.Append(',');
   
//Mission time //Mission time
line.Append(vessel.missionTime.ToString("F3")); line.Append(vessel.missionTime.ToString("F3"));
line.Append(','); line.Append(',');
   
//Altitude ASL //Altitude ASL
line.Append(vessel.orbit.altitude.ToString("F3")); line.Append(VOID_Data.orbitAltitude.Value.ToString("F3"));
line.Append(','); line.Append(',');
   
//Altitude (true) //Altitude (true)
double alt_true = vessel.orbit.altitude - vessel.terrainAltitude; line.Append(VOID_Data.trueAltitude.Value.ToString("F3"));
if (vessel.terrainAltitude < 0) alt_true = vessel.orbit.altitude;  
line.Append(alt_true.ToString("F3"));  
line.Append(','); line.Append(',');
   
// Surface Latitude // Surface Latitude
line.Append('"'); line.Append('"');
line.Append(VOID_Data.surfLatitude.Value); line.Append(VOID_Data.surfLatitude.Value);
line.Append('"'); line.Append('"');
line.Append(','); line.Append(',');
   
// Surface Longitude // Surface Longitude
line.Append('"'); line.Append('"');
line.Append(VOID_Data.surfLongitude.Value); line.Append(VOID_Data.surfLongitude.Value);
line.Append('"'); line.Append('"');
line.Append(','); line.Append(',');
   
//Orbital velocity //Orbital velocity
line.Append(vessel.orbit.vel.magnitude.ToString("F3")); line.Append(VOID_Data.orbitVelocity.Value.ToString("F3"));
line.Append(','); line.Append(',');
   
//surface velocity //surface velocity
line.Append(vessel.srf_velocity.magnitude.ToString("F3")); line.Append(VOID_Data.surfVelocity.Value.ToString("F3"));
line.Append(','); line.Append(',');
   
//vertical speed //vertical speed
line.Append(vessel.verticalSpeed.ToString("F3")); line.Append(VOID_Data.vertVelocity.Value.ToString("F3"));
line.Append(','); line.Append(',');
   
//horizontal speed //horizontal speed
line.Append(vessel.horizontalSrfSpeed.ToString("F3")); line.Append(VOID_Data.horzVelocity.Value.ToString("F3"));
line.Append(','); line.Append(',');
   
//gee force //gee force
line.Append(vessel.geeForce.ToString("F3")); line.Append(VOID_Data.geeForce.Value.ToString("F3"));
line.Append(','); line.Append(',');
   
//temperature //temperature
line.Append(vessel.flightIntegrator.getExternalTemperature().ToString("F2")); line.Append(VOID_Data.temperature.Value.ToString("F2"));
line.Append(','); line.Append(',');
   
//gravity //gravity
double r_vessel = vessel.mainBody.Radius + vessel.mainBody.GetAltitude(vessel.findWorldCenterOfMass()); line.Append(VOID_Data.gravityAccel.Value.ToString("F3"));
double g_vessel = (VOID_Core.Constant_G * vessel.mainBody.Mass) / (r_vessel * r_vessel);  
line.Append(g_vessel.ToString("F3"));  
line.Append(','); line.Append(',');
   
//atm density //atm density
line.Append((vessel.atmDensity * 1000).ToString("F3")); line.Append(VOID_Data.atmDensity.Value.ToString("G3"));
line.Append(','); line.Append(',');
   
// Downrange Distance // Downrange Distance
line.Append((VOID_Data.downrangeDistance.Value.ToString("G3"))); line.Append((VOID_Data.downrangeDistance.Value.ToString("G3")));
   
line.Append('\n'); line.Append('\n');
   
csvList.Add(line.ToString()); csvBytes.AddRange(this.utf8Encoding.GetBytes(line.ToString()));
   
csvCollectTimer = 0f; this.csvCollectTimer = 0f;
} }
   
  #endregion
   
  #region File IO Methods
   
  protected void AsyncWriteCallback(IAsyncResult result)
  {
  Tools.PostDebugMessage(this, "Got async callback, IsCompleted = {0}", result.IsCompleted);
   
  this.outputFile.EndWrite(result);
  this.outstandingWrites--;
  }
   
  private void AsyncWriteData()
  {
  WriteState state = new WriteState();
   
  state.bytes = this.csvBytes.ToArray();
  state.stream = this.outputFile;
   
  this.outstandingWrites++;
  var writeCallback = new AsyncCallback(this.AsyncWriteCallback);
   
  this.outputFile.BeginWrite(state.bytes, 0, state.bytes.Length, writeCallback, state);
   
  this.csvBytes.Clear();
  }
   
  private void CloseFileIfOpen()
  {
  Tools.DebugLogger logger = Tools.DebugLogger.New(this);
   
  logger.AppendFormat("Cleaning up file {0}...", this.fileName);
   
  if (this.csvBytes.Count > 0)
  {
  logger.Append(" Writing remaining data...");
  this.AsyncWriteData();
  }
   
  logger.Append(" Waiting for writes to finish.");
  while (this.outstandingWrites > 0)
  {
  logger.Append('.');
  System.Threading.Thread.Sleep(10);
  }
   
  if (this._outputFile != null)
  {
  this._outputFile.Close();
  this._outputFile = null;
  logger.Append(" File closed.");
  }
   
  logger.Print(false);
  }
   
  #endregion
   
  #region Constructors & Destructors
   
  public VOID_DataLogger()
  {
  this._Name = "CSV Data Logger";
   
  this.loggingActive = false;
  this.firstWrite = true;
   
  this.logInterval = 0.5f;
  this.csvCollectTimer = 0f;
   
  this.outstandingWrites = 0;
   
  this.WindowPos.x = Screen.width - 520f;
  this.WindowPos.y = 85f;
  }
   
  ~VOID_DataLogger()
  {
  this.OnDestroy();
  }
   
  #endregion
   
  #region Subclasses
   
private class WriteState private class WriteState
{ {
public byte[] bytes; public byte[] bytes;
public KSP.IO.FileStream stream; public FileStream stream;
} }
   
  #endregion
} }
} }
   
   
// VOID // VOID
// //
// VOID_HUD.cs // VOID_HUD.cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using Engineer.VesselSimulator; using Engineer.VesselSimulator;
using KSP; using KSP;
using System; using System;
using System.Collections.Generic; using System.Collections.Generic;
using System.Linq; using System.Linq;
using System.Text; using System.Text;
using ToadicusTools; using ToadicusTools;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public class VOID_HUDAdvanced : VOID_Module, IVOID_Module public class VOID_HUDAdvanced : VOID_Module, IVOID_Module
{ {
/* /*
* Fields * Fields
* */ * */
protected VOID_HUD primaryHUD; protected VOID_HUD primaryHUD;
   
protected Rect leftHUDdefaultPos; protected Rect leftHUDdefaultPos;
protected Rect rightHUDdefaultPos; protected Rect rightHUDdefaultPos;
   
[AVOID_SaveValue("leftHUDPos")] [AVOID_SaveValue("leftHUDPos")]
protected VOID_SaveValue<Rect> leftHUDPos; protected VOID_SaveValue<Rect> leftHUDPos;
[AVOID_SaveValue("rightHUDPos")] [AVOID_SaveValue("rightHUDPos")]
protected VOID_SaveValue<Rect> rightHUDPos; protected VOID_SaveValue<Rect> rightHUDPos;
   
[AVOID_SaveValue("positionsLocked")] [AVOID_SaveValue("positionsLocked")]
protected VOID_SaveValue<bool> positionsLocked; protected VOID_SaveValue<bool> positionsLocked;
   
/* /*
* Properties * Properties
* */ * */
public int ColorIndex public int ColorIndex
{ {
get get
{ {
if (this.primaryHUD == null) if (this.primaryHUD == null)
{ {
return 0; return 0;
} }
   
return this.primaryHUD.ColorIndex; return this.primaryHUD.ColorIndex;
} }
} }
   
/* /*
* Methods * Methods
* */ * */
public VOID_HUDAdvanced() : base() public VOID_HUDAdvanced() : base()
{ {
this._Name = "Advanced Heads-Up Display"; this._Name = "Advanced Heads-Up Display";
   
this.toggleActive = true; this.toggleActive = true;
   
this.leftHUDdefaultPos = new Rect( this.leftHUDdefaultPos = new Rect(
Screen.width * .5f - (float)GameSettings.UI_SIZE * .25f - 300f, Screen.width * .5f - (float)GameSettings.UI_SIZE * .25f - 300f,
Screen.height - 200f, Screen.height - 200f,
300f, 90f 300f, 90f
); );
this.leftHUDPos = new Rect(this.leftHUDdefaultPos); this.leftHUDPos = new Rect(this.leftHUDdefaultPos);
   
this.rightHUDdefaultPos = new Rect( this.rightHUDdefaultPos = new Rect(
Screen.width * .5f + (float)GameSettings.UI_SIZE * .25f, Screen.width * .5f + (float)GameSettings.UI_SIZE * .25f,
Screen.height - 200f, Screen.height - 200f,
300f, 90f 300f, 90f
); );
this.rightHUDPos = new Rect(this.rightHUDdefaultPos); this.rightHUDPos = new Rect(this.rightHUDdefaultPos);
   
this.positionsLocked = true; this.positionsLocked = true;
   
Tools.PostDebugMessage (this, "Constructed."); Tools.PostDebugMessage (this, "Constructed.");
} }
   
protected void leftHUDWindow(int id) protected void leftHUDWindow(int id)
{ {
StringBuilder leftHUD; StringBuilder leftHUD;
   
leftHUD = new StringBuilder(); leftHUD = new StringBuilder();
   
VOID_Styles.labelHud.alignment = TextAnchor.UpperRight; VOID_Styles.labelHud.alignment = TextAnchor.UpperRight;
   
if (this.core.powerAvailable) if (this.core.powerAvailable)
{ {
leftHUD.AppendFormat( leftHUD.AppendFormat(
string.Intern("Mass: {0}\n"), string.Intern("Mass: {0}\n"),
VOID_Data.totalMass.ToSIString(2) VOID_Data.totalMass.ToSIString(2)
); );
   
if (VOID_Data.vesselCrewCapacity > 0) if (VOID_Data.vesselCrewCapacity > 0)
{ {
leftHUD.AppendFormat( leftHUD.AppendFormat(
string.Intern("Crew: {0} / {1}\n"), string.Intern("Crew: {0} / {1}\n"),
VOID_Data.vesselCrewCount.Value, VOID_Data.vesselCrewCount.Value,
VOID_Data.vesselCrewCapacity.Value VOID_Data.vesselCrewCapacity.Value
); );
} }
   
leftHUD.AppendFormat( leftHUD.AppendFormat(
string.Intern("Acc: {0} T:W: {1}\n"), string.Intern("Acc: {0} T:W: {1}\n"),
VOID_Data.vesselAccel.ToSIString(2), VOID_Data.vesselAccel.ToSIString(2),
VOID_Data.currThrustWeight.Value.ToString("f2") VOID_Data.currThrustWeight.Value.ToString("f2")
); );
   
leftHUD.AppendFormat( leftHUD.AppendFormat(
string.Intern("Ang Vel: {0}\n"), string.Intern("Ang Vel: {0}\n"),
VOID_Data.vesselAngularVelocity.ToSIString(2) VOID_Data.vesselAngularVelocity.ToSIString(2)
); );
   
if (VOID_Data.stageNominalThrust != 0d) if (VOID_Data.stageNominalThrust != 0d)
{ {
leftHUD.AppendFormat( leftHUD.AppendFormat(
string.Intern("Thrust Offset: {0}\n"), string.Intern("Thrust Offset: {0}\n"),
VOID_Data.vesselThrustOffset.Value.ToString("F1") VOID_Data.vesselThrustOffset.Value.ToString("F1")
); );
} }
} }
else else
{ {
VOID_Styles.labelHud.normal.textColor = Color.red; VOID_Styles.labelHud.normal.textColor = Color.red;
leftHUD.Append(string.Intern("-- POWER LOST --")); leftHUD.Append(string.Intern("-- POWER LOST --"));
} }
   
GUILayout.Label(leftHUD.ToString(), VOID_Styles.labelHud, GUILayout.ExpandWidth(true)); GUILayout.Label(leftHUD.ToString(), VOID_Styles.labelHud, GUILayout.ExpandWidth(true));
   
if (!this.positionsLocked) if (!this.positionsLocked)
{ {
GUI.DragWindow(); GUI.DragWindow();
} }
   
GUI.BringWindowToBack(id); GUI.BringWindowToBack(id);
} }
   
protected void rightHUDWindow(int id) protected void rightHUDWindow(int id)
{ {
StringBuilder rightHUD; StringBuilder rightHUD;
   
rightHUD = new StringBuilder(); rightHUD = new StringBuilder();
   
VOID_Styles.labelHud.alignment = TextAnchor.UpperLeft; VOID_Styles.labelHud.alignment = TextAnchor.UpperLeft;
   
if (this.core.powerAvailable) if (this.core.powerAvailable)
{ {
rightHUD.AppendFormat( rightHUD.AppendFormat(
"Burn Δv (Rem/Tot): {0} / {1}\n", "Burn Δv (Rem/Tot): {0} / {1}\n",
VOID_Data.currManeuverDVRemaining.ValueUnitString("f2"), VOID_Data.currManeuverDVRemaining.ValueUnitString("f2"),
VOID_Data.currManeuverDeltaV.ValueUnitString("f2") VOID_Data.currManeuverDeltaV.ValueUnitString("f2")
); );
   
if (VOID_Data.upcomingManeuverNodes > 1) if (VOID_Data.upcomingManeuverNodes > 1)
{ {
rightHUD.AppendFormat("Next Burn Δv: {0}\n", rightHUD.AppendFormat("Next Burn Δv: {0}\n",
VOID_Data.nextManeuverDeltaV.ValueUnitString("f2") VOID_Data.nextManeuverDeltaV.ValueUnitString("f2")
); );
} }
   
rightHUD.AppendFormat("Burn Time (Rem/Total): {0} / {1}\n", rightHUD.AppendFormat("Burn Time (Rem/Total): {0} / {1}\n",
VOID_Tools.ConvertInterval(VOID_Data.currentNodeBurnRemaining.Value), VOID_Tools.FormatInterval(VOID_Data.currentNodeBurnRemaining.Value),
VOID_Tools.ConvertInterval(VOID_Data.currentNodeBurnDuration.Value) VOID_Tools.FormatInterval(VOID_Data.currentNodeBurnDuration.Value)
); );
   
if (VOID_Data.burnTimeDoneAtNode.Value != string.Empty) if (VOID_Data.burnTimeDoneAtNode.Value != string.Empty)
{ {
rightHUD.AppendFormat("{0} (done @ node)\n", rightHUD.AppendFormat("{0} (done @ node)\n",
VOID_Data.burnTimeDoneAtNode.Value VOID_Data.burnTimeDoneAtNode.Value
); );
   
rightHUD.AppendFormat("{0} (½ done @ node)", rightHUD.AppendFormat("{0} (½ done @ node)",
VOID_Data.burnTimeHalfDoneAtNode.Value VOID_Data.burnTimeHalfDoneAtNode.Value
); );
} }
else else
{ {
rightHUD.Append("Node is past"); rightHUD.Append("Node is past");
} }
} }
else else
{ {
VOID_Styles.labelHud.normal.textColor = Color.red; VOID_Styles.labelHud.normal.textColor = Color.red;
rightHUD.Append(string.Intern("-- POWER LOST --")); rightHUD.Append(string.Intern("-- POWER LOST --"));
} }
   
GUILayout.Label(rightHUD.ToString(), VOID_Styles.labelHud, GUILayout.ExpandWidth(true)); GUILayout.Label(rightHUD.ToString(), VOID_Styles.labelHud, GUILayout.ExpandWidth(true));
   
if (!this.positionsLocked) if (!this.positionsLocked)
{ {
GUI.DragWindow(); GUI.DragWindow();
} }
   
GUI.BringWindowToBack(id); GUI.BringWindowToBack(id);
} }
   
public override void DrawGUI() public override void DrawGUI()
{ {
if (this.primaryHUD == null) if (this.primaryHUD == null)
{ {
foreach (IVOID_Module module in this.core.Modules) foreach (IVOID_Module module in this.core.Modules)
{ {
if (module is VOID_HUD) if (module is VOID_HUD)
{ {
this.primaryHUD = module as VOID_HUD; this.primaryHUD = module as VOID_HUD;
} }
} }
} }
else else
{ {
if ((TimeWarp.WarpMode == TimeWarp.Modes.LOW) || (TimeWarp.CurrentRate <= TimeWarp.MaxPhysicsRate)) if ((TimeWarp.WarpMode == TimeWarp.Modes.LOW) || (TimeWarp.CurrentRate <= TimeWarp.MaxPhysicsRate))
{ {
SimManager.RequestSimulation(); SimManager.RequestSimulation();
} }
   
this.leftHUDPos.value = GUI.Window( this.leftHUDPos.value = GUI.Window(
this.core.windowID, this.core.windowID,
this.leftHUDPos, this.leftHUDPos,
VOID_Tools.GetWindowHandler(this.leftHUDWindow), VOID_Tools.GetWindowHandler(this.leftHUDWindow),
GUIContent.none, GUIContent.none,
GUIStyle.none GUIStyle.none
); );
   
if (VOID_Data.upcomingManeuverNodes > 0) if (VOID_Data.upcomingManeuverNodes > 0)
{ {
this.rightHUDPos.value = GUI.Window( this.rightHUDPos.value = GUI.Window(
this.core.windowID, this.core.windowID,
this.rightHUDPos, this.rightHUDPos,
VOID_Tools.GetWindowHandler(this.rightHUDWindow), VOID_Tools.GetWindowHandler(this.rightHUDWindow),
GUIContent.none, GUIContent.none,
GUIStyle.none GUIStyle.none
); );
} }
} }
} }
   
public override void DrawConfigurables() public override void DrawConfigurables()
{ {
this.positionsLocked = GUILayout.Toggle(this.positionsLocked, this.positionsLocked = GUILayout.Toggle(this.positionsLocked,
string.Intern("Lock Advanced HUD Positions"), string.Intern("Lock Advanced HUD Positions"),
GUILayout.ExpandWidth(false)); GUILayout.ExpandWidth(false));
} }
} }
} }
   
// VOID // VOID
// //
// VOID_Rendezvous.cs // VOID_Rendezvous.cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using KSP; using KSP;
using System; using System;
using System.Collections.Generic; using System.Collections.Generic;
using System.Linq; using System.Linq;
using ToadicusTools; using ToadicusTools;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public class VOID_Rendezvous : VOID_WindowModule public class VOID_Rendezvous : VOID_WindowModule
{ {
[AVOID_SaveValue("untoggleRegisterInfo")] [AVOID_SaveValue("untoggleRegisterInfo")]
protected VOID_SaveValue<bool> untoggleRegisterInfo = false; protected VOID_SaveValue<bool> untoggleRegisterInfo = false;
   
[AVOID_SaveValue("toggleExtendedOrbital")] [AVOID_SaveValue("toggleExtendedOrbital")]
protected VOID_SaveValue<bool> toggleExtendedOrbital = false; protected VOID_SaveValue<bool> toggleExtendedOrbital = false;
   
protected VOID_VesselRegister RegisterModule; protected VOID_VesselRegister RegisterModule;
   
public VOID_Rendezvous() public VOID_Rendezvous()
{ {
this._Name = "Rendezvous Information"; this._Name = "Rendezvous Information";
   
this.WindowPos.x = 845; this.WindowPos.x = 845;
this.WindowPos.y = 85; this.WindowPos.y = 85;
} }
   
public override void ModuleWindow(int _) public override void ModuleWindow(int _)
{ {
Vessel rendezvessel = new Vessel(); Vessel rendezvessel = new Vessel();
CelestialBody rendezbody = new CelestialBody(); CelestialBody rendezbody = new CelestialBody();
   
if (this.RegisterModule == null) if (this.RegisterModule == null)
{ {
this.RegisterModule = this.core.Modules.Where(m => typeof(VOID_VesselRegister).IsAssignableFrom(m.GetType())).FirstOrDefault() as VOID_VesselRegister; this.RegisterModule = this.core.Modules.Where(m => typeof(VOID_VesselRegister).IsAssignableFrom(m.GetType())).FirstOrDefault() as VOID_VesselRegister;
} }
   
GUILayout.BeginVertical(); GUILayout.BeginVertical();
   
//display both //display both
//Show Target Info //Show Target Info
GUILayout.Label("Target:", VOID_Styles.labelCenterBold); GUILayout.Label("Target:", VOID_Styles.labelCenterBold);
if (FlightGlobals.fetch.VesselTarget != null) if (FlightGlobals.fetch.VesselTarget != null)
{ {
//a KSP Target (body or vessel) is selected //a KSP Target (body or vessel) is selected
if (FlightGlobals.fetch.vesselTargetMode == VesselTargetModes.Direction) if (FlightGlobals.fetch.vesselTargetMode == VesselTargetModes.Direction)
{ {
//a Body is selected //a Body is selected
rendezbody = vessel.patchedConicSolver.targetBody; rendezbody = vessel.patchedConicSolver.targetBody;
display_rendezvous_info(null, rendezbody); display_rendezvous_info(null, rendezbody);
} }
else if (FlightGlobals.fetch.vesselTargetMode == VesselTargetModes.DirectionAndVelocity) else if (FlightGlobals.fetch.vesselTargetMode == VesselTargetModes.DirectionAndVelocity)
{ {
//a Vessel is selected //a Vessel is selected
rendezvessel = FlightGlobals.fetch.VesselTarget.GetVessel(); rendezvessel = FlightGlobals.fetch.VesselTarget.GetVessel();
display_rendezvous_info(rendezvessel, null); display_rendezvous_info(rendezvessel, null);
} }
//Show Unset button for both options above //Show Unset button for both options above
if (GUILayout.Button("Unset Target", GUILayout.ExpandWidth(false))) if (GUILayout.Button("Unset Target", GUILayout.ExpandWidth(false)))
{ {
FlightGlobals.fetch.SetVesselTarget(null); FlightGlobals.fetch.SetVesselTarget(null);
Tools.PostDebugMessage("VOID_Rendezvous: KSP Target set to null"); Tools.PostDebugMessage("VOID_Rendezvous: KSP Target set to null");
} }
   
} }
else else
{ {
//no KSP Target selected //no KSP Target selected
GUILayout.Label("No Target Selected", VOID_Styles.labelCenterBold); GUILayout.Label("No Target Selected", VOID_Styles.labelCenterBold);
} }
   
//Show Vessel Register vessel info //Show Vessel Register vessel info
if (untoggleRegisterInfo == false && this.RegisterModule != default(IVOID_Module)) if (untoggleRegisterInfo == false && this.RegisterModule != default(IVOID_Module))
{ {
GUILayout.Label("Vessel Register:", VOID_Styles.labelCenterBold); GUILayout.Label("Vessel Register:", VOID_Styles.labelCenterBold);
if (this.RegisterModule.selectedVessel != null) if (this.RegisterModule.selectedVessel != null)
{ {
rendezvessel = this.RegisterModule.selectedVessel; rendezvessel = this.RegisterModule.selectedVessel;
display_rendezvous_info(rendezvessel, null); display_rendezvous_info(rendezvessel, null);
   
//show set/unset buttons //show set/unset buttons
if (FlightGlobals.fetch.VesselTarget == null || (FlightGlobals.fetch.VesselTarget != null && FlightGlobals.fetch.VesselTarget.GetVessel() != this.RegisterModule.selectedVessel)) if (FlightGlobals.fetch.VesselTarget == null || (FlightGlobals.fetch.VesselTarget != null && FlightGlobals.fetch.VesselTarget.GetVessel() != this.RegisterModule.selectedVessel))
{ {
//no Tgt set or Tgt is not this vessel //no Tgt set or Tgt is not this vessel
//show a Set button //show a Set button
if (GUILayout.Button("Set Target", GUILayout.ExpandWidth(false))) if (GUILayout.Button("Set Target", GUILayout.ExpandWidth(false)))
{ {
FlightGlobals.fetch.SetVesselTarget(rendezvessel); FlightGlobals.fetch.SetVesselTarget(rendezvessel);
Tools.PostDebugMessage("[VOID] KSP Target set to " + rendezvessel.vesselName); Tools.PostDebugMessage("[VOID] KSP Target set to " + rendezvessel.vesselName);
} }
} }
} }
else else
{ {
//vesreg Vessel is null //vesreg Vessel is null
//targ = null; //targ = null;
GUILayout.Label("No Vessel Selected", VOID_Styles.labelCenterBold); GUILayout.Label("No Vessel Selected", VOID_Styles.labelCenterBold);
} }
} }
   
untoggleRegisterInfo.value = GUILayout.Toggle(untoggleRegisterInfo, "Hide Vessel Register Info"); untoggleRegisterInfo.value = GUILayout.Toggle(untoggleRegisterInfo, "Hide Vessel Register Info");
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label(" ", GUILayout.ExpandWidth(true)); GUILayout.Label(" ", GUILayout.ExpandWidth(true));
if (GUILayout.Button("Close", GUILayout.ExpandWidth(false))) this.toggleActive = false; if (GUILayout.Button("Close", GUILayout.ExpandWidth(false))) this.toggleActive = false;
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.EndVertical(); GUILayout.EndVertical();
GUI.DragWindow(); GUI.DragWindow();
} }
   
private void display_rendezvous_info(Vessel v, CelestialBody cb) private void display_rendezvous_info(Vessel v, CelestialBody cb)
{ {
if (cb == null && v != null) if (cb == null && v != null)
{ {
//Display vessel rendezvous info //Display vessel rendezvous info
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label(v.vesselName, VOID_Styles.labelCenterBold, GUILayout.ExpandWidth(true)); GUILayout.Label(v.vesselName, VOID_Styles.labelCenterBold, GUILayout.ExpandWidth(true));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
if (v.situation == Vessel.Situations.ESCAPING || v.situation == Vessel.Situations.FLYING || v.situation == Vessel.Situations.ORBITING || v.situation == Vessel.Situations.SUB_ORBITAL) if (v.situation == Vessel.Situations.ESCAPING || v.situation == Vessel.Situations.FLYING || v.situation == Vessel.Situations.ORBITING || v.situation == Vessel.Situations.SUB_ORBITAL)
{ {
// Toadicus edit: added local sidereal longitude. // Toadicus edit: added local sidereal longitude.
// Toadicus edit: added local sidereal longitude. // Toadicus edit: added local sidereal longitude.
double LSL = v.longitude + v.orbit.referenceBody.rotationAngle; double LSL = v.longitude + v.orbit.referenceBody.rotationAngle;
LSL = VOID_Tools.FixDegreeDomain (LSL); LSL = VOID_Tools.FixDegreeDomain (LSL);
   
//display orbital info for orbiting/flying/suborbital/escaping vessels only //display orbital info for orbiting/flying/suborbital/escaping vessels only
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Ap/Pe:"); GUILayout.Label("Ap/Pe:");
GUILayout.Label(Tools.MuMech_ToSI(v.orbit.ApA) + "m / " + Tools.MuMech_ToSI(v.orbit.PeA) + "m", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI(v.orbit.ApA) + "m / " + Tools.MuMech_ToSI(v.orbit.PeA) + "m", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Altitude:"); GUILayout.Label("Altitude:");
GUILayout.Label(Tools.MuMech_ToSI(v.orbit.altitude) + "m", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI(v.orbit.altitude) + "m", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Inclination:"); GUILayout.Label("Inclination:");
GUILayout.Label(v.orbit.inclination.ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(v.orbit.inclination.ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
if (vessel.mainBody == v.mainBody) if (vessel.mainBody == v.mainBody)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Relative inclination:"); GUILayout.Label("Relative inclination:");
GUILayout.Label(Vector3d.Angle(vessel.orbit.GetOrbitNormal(), v.orbit.GetOrbitNormal()).ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(Vector3d.Angle(vessel.orbit.GetOrbitNormal(), v.orbit.GetOrbitNormal()).ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
//if (debugging) Debug.Log("[CHATR] v -> v relative incl OK"); //if (debugging) Debug.Log("[CHATR] v -> v relative incl OK");
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Velocity:"); GUILayout.Label("Velocity:");
GUILayout.Label(Tools.MuMech_ToSI(v.orbit.vel.magnitude) + "m/s", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI(v.orbit.vel.magnitude) + "m/s", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Relative velocity:"); GUILayout.Label("Relative velocity:");
GUILayout.Label(Tools.MuMech_ToSI(v.orbit.vel.magnitude - vessel.orbit.vel.magnitude) + "m/s", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI(v.orbit.vel.magnitude - vessel.orbit.vel.magnitude) + "m/s", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Distance:"); GUILayout.Label("Distance:");
GUILayout.Label(Tools.MuMech_ToSI((vessel.findWorldCenterOfMass() - v.findWorldCenterOfMass()).magnitude) + "m", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI((vessel.findWorldCenterOfMass() - v.findWorldCenterOfMass()).magnitude) + "m", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
// Toadicus edit: added local sidereal longitude. // Toadicus edit: added local sidereal longitude.
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Local Sidereal Longitude:"); GUILayout.Label("Local Sidereal Longitude:");
GUILayout.Label(LSL.ToString("F3") + "°", VOID_Styles.labelRight); GUILayout.Label(LSL.ToString("F3") + "°", VOID_Styles.labelRight);
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
toggleExtendedOrbital.value = GUILayout.Toggle(toggleExtendedOrbital, "Extended info"); toggleExtendedOrbital.value = GUILayout.Toggle(toggleExtendedOrbital, "Extended info");
   
if (toggleExtendedOrbital) if (toggleExtendedOrbital)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Period:"); GUILayout.Label("Period:");
GUILayout.Label(VOID_Tools.ConvertInterval(v.orbit.period), GUILayout.ExpandWidth(false)); GUILayout.Label(VOID_Tools.FormatInterval(v.orbit.period), GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Semi-major axis:"); GUILayout.Label("Semi-major axis:");
GUILayout.Label((v.orbit.semiMajorAxis / 1000).ToString("##,#") + "km", GUILayout.ExpandWidth(false)); GUILayout.Label((v.orbit.semiMajorAxis / 1000).ToString("##,#") + "km", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Eccentricity:"); GUILayout.Label("Eccentricity:");
GUILayout.Label(v.orbit.eccentricity.ToString("F4"), GUILayout.ExpandWidth(false)); GUILayout.Label(v.orbit.eccentricity.ToString("F4"), GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
// Toadicus edit: convert mean anomaly into degrees. // Toadicus edit: convert mean anomaly into degrees.
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Mean anomaly:"); GUILayout.Label("Mean anomaly:");
GUILayout.Label((v.orbit.meanAnomaly * 180d / Math.PI).ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label((v.orbit.meanAnomaly * 180d / Math.PI).ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("True anomaly:"); GUILayout.Label("True anomaly:");
GUILayout.Label(v.orbit.trueAnomaly.ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(v.orbit.trueAnomaly.ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
// Toadicus edit: convert eccentric anomaly into degrees. // Toadicus edit: convert eccentric anomaly into degrees.
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Eccentric anomaly:"); GUILayout.Label("Eccentric anomaly:");
GUILayout.Label((v.orbit.eccentricAnomaly * 180d / Math.PI).ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label((v.orbit.eccentricAnomaly * 180d / Math.PI).ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Long. ascending node:"); GUILayout.Label("Long. ascending node:");
GUILayout.Label(v.orbit.LAN.ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(v.orbit.LAN.ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Arg. of periapsis:"); GUILayout.Label("Arg. of periapsis:");
GUILayout.Label(v.orbit.argumentOfPeriapsis.ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(v.orbit.argumentOfPeriapsis.ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
} }
else else
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Latitude:"); GUILayout.Label("Latitude:");
GUILayout.Label(VOID_Tools.GetLatitudeString(vessel), GUILayout.ExpandWidth(false)); GUILayout.Label(VOID_Tools.GetLatitudeString(vessel), GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Longitude:"); GUILayout.Label("Longitude:");
GUILayout.Label(VOID_Tools.GetLongitudeString(vessel), GUILayout.ExpandWidth(false)); GUILayout.Label(VOID_Tools.GetLongitudeString(vessel), GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Distance:"); GUILayout.Label("Distance:");
GUILayout.Label(Tools.MuMech_ToSI((vessel.findWorldCenterOfMass() - v.findWorldCenterOfMass()).magnitude) + "m", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI((vessel.findWorldCenterOfMass() - v.findWorldCenterOfMass()).magnitude) + "m", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
} }
else if (cb != null && v == null) else if (cb != null && v == null)
{ {
//Display CelstialBody rendezvous info //Display CelstialBody rendezvous info
GUILayout.Label(cb.bodyName, VOID_Styles.labelCenterBold); GUILayout.Label(cb.bodyName, VOID_Styles.labelCenterBold);
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Ap/Pe:"); GUILayout.Label("Ap/Pe:");
GUILayout.Label(Tools.MuMech_ToSI(cb.orbit.ApA) + "m / " + Tools.MuMech_ToSI(cb.orbit.PeA) + "m", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI(cb.orbit.ApA) + "m / " + Tools.MuMech_ToSI(cb.orbit.PeA) + "m", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
//if (debugging) Debug.Log("[VOID] Ap/Pe OK"); //if (debugging) Debug.Log("[VOID] Ap/Pe OK");
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Inclination:"); GUILayout.Label("Inclination:");
GUILayout.Label(cb.orbit.inclination.ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(cb.orbit.inclination.ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
//if (debugging) Debug.Log("[VOID] Inclination OK"); //if (debugging) Debug.Log("[VOID] Inclination OK");
   
if (cb.referenceBody == vessel.mainBody) if (cb.referenceBody == vessel.mainBody)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Relative inclination:"); GUILayout.Label("Relative inclination:");
GUILayout.Label(Vector3d.Angle(vessel.orbit.GetOrbitNormal(), cb.orbit.GetOrbitNormal()).ToString("F3") + "°", GUILayout.ExpandWidth(false)); GUILayout.Label(Vector3d.Angle(vessel.orbit.GetOrbitNormal(), cb.orbit.GetOrbitNormal()).ToString("F3") + "°", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
//if (debugging) Debug.Log("[VOID] cb Relative inclination OK"); //if (debugging) Debug.Log("[VOID] cb Relative inclination OK");
} }
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Distance:"); GUILayout.Label("Distance:");
GUILayout.Label(Tools.MuMech_ToSI((vessel.mainBody.position - cb.position).magnitude) + "m", GUILayout.ExpandWidth(false)); GUILayout.Label(Tools.MuMech_ToSI((vessel.mainBody.position - cb.position).magnitude) + "m", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
//if (debugging) Debug.Log("[VOID] Distance OK"); //if (debugging) Debug.Log("[VOID] Distance OK");
   
//SUN2PLANET: //SUN2PLANET:
if (vessel.mainBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody) if (vessel.mainBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody)
{ {
VOID_Tools.display_transfer_angles_SUN2PLANET(cb, vessel); VOID_Tools.display_transfer_angles_SUN2PLANET(cb, vessel);
//if (debugging) Debug.Log("[VOID] SUN2PLANET OK"); //if (debugging) Debug.Log("[VOID] SUN2PLANET OK");
} }
   
//PLANET2PLANET //PLANET2PLANET
else if (vessel.mainBody.referenceBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody.referenceBody) else if (vessel.mainBody.referenceBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody.referenceBody)
{ {
VOID_Tools.display_transfer_angles_PLANET2PLANET(cb, vessel); VOID_Tools.display_transfer_angles_PLANET2PLANET(cb, vessel);
//if (debugging) Debug.Log("[VOID] PLANET2PLANET OK"); //if (debugging) Debug.Log("[VOID] PLANET2PLANET OK");
} }
   
//PLANET2MOON //PLANET2MOON
else if (vessel.mainBody.referenceBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody) else if (vessel.mainBody.referenceBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody)
{ {
VOID_Tools.display_transfer_angles_PLANET2MOON(cb, vessel); VOID_Tools.display_transfer_angles_PLANET2MOON(cb, vessel);
//if (debugging) Debug.Log("[VOID] PLANET2MOON OK"); //if (debugging) Debug.Log("[VOID] PLANET2MOON OK");
} }
   
//MOON2MOON //MOON2MOON
else if (vessel.mainBody.referenceBody.referenceBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody.referenceBody) else if (vessel.mainBody.referenceBody.referenceBody.bodyName == "Sun" && cb.referenceBody == vessel.mainBody.referenceBody)
{ {
VOID_Tools.display_transfer_angles_MOON2MOON(cb, vessel); VOID_Tools.display_transfer_angles_MOON2MOON(cb, vessel);
//if (debugging) Debug.Log("[VOID] MOON2MOON OK"); //if (debugging) Debug.Log("[VOID] MOON2MOON OK");
} }
   
//else GUILayout.Label("Transfer angle information\nunavailable for this target"); //else GUILayout.Label("Transfer angle information\nunavailable for this target");
   
} }
} }
} }
} }
// VOID // VOID
// //
// cs // cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using System; using System;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public static class VOID_Styles public static class VOID_Styles
{ {
public static bool Ready public static bool Ready
{ {
get; get;
private set; private set;
} }
   
public static GUIStyle labelDefault public static GUIStyle labelDefault
{ {
get; get;
private set; private set;
} }
   
public static GUIStyle labelLink public static GUIStyle labelLink
{ {
get; get;
private set; private set;
} }
   
public static GUIStyle labelCenter public static GUIStyle labelCenter
{ {
get; get;
private set; private set;
} }
   
public static GUIStyle labelCenterBold public static GUIStyle labelCenterBold
{ {
get; get;
private set; private set;
} }
   
  public static GUIStyle labelGreen
  {
  get;
  private set;
  }
   
public static GUIStyle labelHud public static GUIStyle labelHud
{ {
get; get;
private set; private set;
} }
   
public static GUIStyle labelRight public static GUIStyle labelRight
{ {
get; get;
private set; private set;
} }
   
public static GUIStyle labelRed public static GUIStyle labelRed
{ {
get; get;
private set; private set;
} }
   
public static void OnSkinChanged() public static void OnSkinChanged()
{ {
labelDefault = new GUIStyle(GUI.skin.label); labelDefault = new GUIStyle(GUI.skin.label);
   
labelLink = new GUIStyle(GUI.skin.label); labelLink = new GUIStyle(GUI.skin.label);
labelLink.fontStyle = FontStyle.Italic; labelLink.fontStyle = FontStyle.Italic;
labelLink.fontSize = (int)((float)labelLink.fontSize * .8f); labelLink.fontSize = (int)((float)labelLink.fontSize * .8f);
   
labelCenter = new GUIStyle(GUI.skin.label); labelCenter = new GUIStyle(GUI.skin.label);
labelCenter.normal.textColor = Color.white; labelCenter.normal.textColor = Color.white;
labelCenter.alignment = TextAnchor.UpperCenter; labelCenter.alignment = TextAnchor.UpperCenter;
   
labelCenterBold = new GUIStyle(GUI.skin.label); labelCenterBold = new GUIStyle(GUI.skin.label);
labelCenterBold.normal.textColor = Color.white; labelCenterBold.normal.textColor = Color.white;
labelCenterBold.alignment = TextAnchor.UpperCenter; labelCenterBold.alignment = TextAnchor.UpperCenter;
labelCenterBold.fontStyle = FontStyle.Bold; labelCenterBold.fontStyle = FontStyle.Bold;
   
labelHud = new GUIStyle(labelDefault); labelHud = new GUIStyle(labelDefault);
   
labelRight = new GUIStyle(GUI.skin.label); labelRight = new GUIStyle(GUI.skin.label);
labelRight.normal.textColor = Color.white; labelRight.normal.textColor = Color.white;
labelRight.alignment = TextAnchor.UpperRight; labelRight.alignment = TextAnchor.UpperRight;
   
labelRed = new GUIStyle(GUI.skin.label); labelRed = new GUIStyle(GUI.skin.label);
labelRed.normal.textColor = Color.red; labelRed.normal.textColor = Color.red;
labelRed.alignment = TextAnchor.MiddleCenter;  
  labelGreen = new GUIStyle(GUI.skin.label);
  labelGreen.normal.textColor = Color.green;
   
Ready = true; Ready = true;
} }
   
static VOID_Styles() static VOID_Styles()
{ {
Ready = false; Ready = false;
} }
} }
} }
   
   
// VOID // VOID
// //
// VOID_Tools.cs // VOID_Tools.cs
// //
// Copyright © 2014, toadicus // Copyright © 2014, toadicus
// All rights reserved. // All rights reserved.
// //
// Redistribution and use in source and binary forms, with or without modification, // Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met: // are permitted provided that the following conditions are met:
// //
// 1. Redistributions of source code must retain the above copyright notice, // 1. Redistributions of source code must retain the above copyright notice,
// this list of conditions and the following disclaimer. // this list of conditions and the following disclaimer.
// //
// 2. Redistributions in binary form must reproduce the above copyright notice, // 2. Redistributions in binary form must reproduce the above copyright notice,
// this list of conditions and the following disclaimer in the documentation and/or other // this list of conditions and the following disclaimer in the documentation and/or other
// materials provided with the distribution. // materials provided with the distribution.
// //
// 3. Neither the name of the copyright holder nor the names of its contributors may be used // 3. Neither the name of the copyright holder nor the names of its contributors may be used
// to endorse or promote products derived from this software without specific prior written permission. // to endorse or promote products derived from this software without specific prior written permission.
// //
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES,
// INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE // INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
// DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, // DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
// SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, // SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
// WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE // WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
   
using KSP; using KSP;
using System; using System;
using System.Collections.Generic; using System.Collections.Generic;
using ToadicusTools; using ToadicusTools;
using UnityEngine; using UnityEngine;
   
namespace VOID namespace VOID
{ {
public static partial class VOID_Tools public static partial class VOID_Tools
{ {
#region CelestialBody Utilities #region CelestialBody Utilities
public static bool hasAncestor(this CelestialBody bodyA, CelestialBody bodyB) public static bool hasAncestor(this CelestialBody bodyA, CelestialBody bodyB)
{ {
if (bodyA == null || bodyB == null) if (bodyA == null || bodyB == null)
{ {
return false; return false;
} }
   
while (bodyA.orbitDriver != null) while (bodyA.orbitDriver != null)
{ {
if (bodyA.orbit.referenceBody == bodyB) if (bodyA.orbit.referenceBody == bodyB)
{ {
return true; return true;
} }
   
bodyA = bodyA.orbit.referenceBody; bodyA = bodyA.orbit.referenceBody;
} }
   
return false; return false;
} }
   
public static bool NearestRelatedParents(ref CelestialBody bodyA, ref CelestialBody bodyB) public static bool NearestRelatedParents(ref CelestialBody bodyA, ref CelestialBody bodyB)
{ {
if (bodyA == null || bodyB == null || bodyA.orbitDriver == null || bodyB.orbitDriver == null) if (bodyA == null || bodyB == null || bodyA.orbitDriver == null || bodyB.orbitDriver == null)
{ {
throw new ArgumentException(string.Concat( throw new ArgumentException(string.Concat(
"CelestialBody::FindRelatedParents: ", "CelestialBody::FindRelatedParents: ",
"Neither body may be null, and both bodies must have orbits." "Neither body may be null, and both bodies must have orbits."
)); ));
} }
   
CelestialBody a, b; CelestialBody a, b;
   
a = bodyA; a = bodyA;
   
while (bodyA.orbitDriver != null) while (bodyA.orbitDriver != null)
{ {
b = bodyB; b = bodyB;
   
while (b.orbitDriver != null) while (b.orbitDriver != null)
{ {
if (a.orbit.referenceBody == b.orbit.referenceBody) if (a.orbit.referenceBody == b.orbit.referenceBody)
{ {
bodyA = a; bodyA = a;
bodyB = b; bodyB = b;
return true; return true;
} }
   
b = b.orbit.referenceBody; b = b.orbit.referenceBody;
} }
   
a = a.orbit.referenceBody; a = a.orbit.referenceBody;
} }
   
return false; return false;
} }
#endregion #endregion
   
#region VESSEL_EXTENSIONS_SCIENCE #region VESSEL_EXTENSIONS_SCIENCE
public static CBAttributeMap.MapAttribute GetBiome(this Vessel vessel) public static CBAttributeMap.MapAttribute GetBiome(this Vessel vessel)
{ {
CBAttributeMap.MapAttribute mapAttribute; CBAttributeMap.MapAttribute mapAttribute;
   
try try
{ {
CBAttributeMap BiomeMap = vessel.mainBody.BiomeMap; CBAttributeMap BiomeMap = vessel.mainBody.BiomeMap;
   
double lat = vessel.latitude * Math.PI / 180d; double lat = vessel.latitude * Math.PI / 180d;
double lon = vessel.longitude * Math.PI / 180d; double lon = vessel.longitude * Math.PI / 180d;
   
mapAttribute = BiomeMap.GetAtt(lat, lon); mapAttribute = BiomeMap.GetAtt(lat, lon);
   
/* /*
lon -= Math.PI / 2d; lon -= Math.PI / 2d;
   
if (lon < 0d) if (lon < 0d)
{ {
lon += 2d * Math.PI; lon += 2d * Math.PI;
} }
   
float v = (float)(lat / Math.PI) + 0.5f; float v = (float)(lat / Math.PI) + 0.5f;
float u = (float)(lon / (2d * Math.PI)); float u = (float)(lon / (2d * Math.PI));
   
Color pixelBilinear = BiomeMap.Map.GetPixelBilinear(u, v); Color pixelBilinear = BiomeMap.Map.GetPixelBilinear(u, v);
mapAttribute = BiomeMap.defaultAttribute; mapAttribute = BiomeMap.defaultAttribute;
   
if (BiomeMap.Map != null) if (BiomeMap.Map != null)
{ {
if (BiomeMap.exactSearch) if (BiomeMap.exactSearch)
{ {
for (int i = 0; i < BiomeMap.Attributes.Length; ++i) for (int i = 0; i < BiomeMap.Attributes.Length; ++i)
{ {
if (pixelBilinear == BiomeMap.Attributes[i].mapColor) if (pixelBilinear == BiomeMap.Attributes[i].mapColor)
{ {
mapAttribute = BiomeMap.Attributes[i]; mapAttribute = BiomeMap.Attributes[i];
} }
} }
} }
else else
{ {
float zero = 0; float zero = 0;
float num = 1 / zero; float num = 1 / zero;
for (int j = 0; j < BiomeMap.Attributes.Length; ++j) for (int j = 0; j < BiomeMap.Attributes.Length; ++j)
{ {
Color mapColor = BiomeMap.Attributes[j].mapColor; Color mapColor = BiomeMap.Attributes[j].mapColor;
float sqrMagnitude = ((Vector4)(mapColor - pixelBilinear)).sqrMagnitude; float sqrMagnitude = ((Vector4)(mapColor - pixelBilinear)).sqrMagnitude;
if (sqrMagnitude < num) if (sqrMagnitude < num)
{ {
bool testCase = true; bool testCase = true;
if (BiomeMap.nonExactThreshold != -1) if (BiomeMap.nonExactThreshold != -1)
{ {
testCase = (sqrMagnitude < BiomeMap.nonExactThreshold); testCase = (sqrMagnitude < BiomeMap.nonExactThreshold);
} }
if (testCase) if (testCase)
{ {
mapAttribute = BiomeMap.Attributes[j]; mapAttribute = BiomeMap.Attributes[j];
num = sqrMagnitude; num = sqrMagnitude;
} }
} }
} }
} }
} }
*/ */
} }
catch (NullReferenceException) catch (NullReferenceException)
{ {
mapAttribute = new CBAttributeMap.MapAttribute(); mapAttribute = new CBAttributeMap.MapAttribute();
mapAttribute.name = "N/A"; mapAttribute.name = "N/A";
} }
   
return mapAttribute; return mapAttribute;
} }
   
public static ExperimentSituations GetExperimentSituation(this Vessel vessel) public static ExperimentSituations GetExperimentSituation(this Vessel vessel)
{ {
if (vessel == null) if (vessel == null)
{ {
return ExperimentSituations.SrfSplashed; return ExperimentSituations.SrfSplashed;
} }
   
Vessel.Situations situation = vessel.situation; Vessel.Situations situation = vessel.situation;
   
switch (situation) switch (situation)
{ {
case Vessel.Situations.PRELAUNCH: case Vessel.Situations.PRELAUNCH:
case Vessel.Situations.LANDED: case Vessel.Situations.LANDED:
return ExperimentSituations.SrfLanded; return ExperimentSituations.SrfLanded;
case Vessel.Situations.SPLASHED: case Vessel.Situations.SPLASHED:
return ExperimentSituations.SrfSplashed; return ExperimentSituations.SrfSplashed;
case Vessel.Situations.FLYING: case Vessel.Situations.FLYING:
if (vessel.altitude < (double)vessel.mainBody.scienceValues.flyingAltitudeThreshold) if (vessel.altitude < (double)vessel.mainBody.scienceValues.flyingAltitudeThreshold)
{ {
return ExperimentSituations.FlyingLow; return ExperimentSituations.FlyingLow;
} }
else else
{ {
return ExperimentSituations.FlyingHigh; return ExperimentSituations.FlyingHigh;
} }
} }
   
if (vessel.altitude < (double)vessel.mainBody.scienceValues.spaceAltitudeThreshold) if (vessel.altitude < (double)vessel.mainBody.scienceValues.spaceAltitudeThreshold)
{ {
return ExperimentSituations.InSpaceLow; return ExperimentSituations.InSpaceLow;
} }
else else
{ {
return ExperimentSituations.InSpaceHigh; return ExperimentSituations.InSpaceHigh;
} }
} }
   
public static string HumanString(this ExperimentSituations situation) public static string HumanString(this ExperimentSituations situation)
{ {
switch (situation) switch (situation)
{ {
case ExperimentSituations.FlyingHigh: case ExperimentSituations.FlyingHigh:
return "Upper Atmosphere"; return "Upper Atmosphere";
case ExperimentSituations.FlyingLow: case ExperimentSituations.FlyingLow:
return "Flying"; return "Flying";
case ExperimentSituations.SrfLanded: case ExperimentSituations.SrfLanded:
return "Surface"; return "Surface";
case ExperimentSituations.InSpaceLow: case ExperimentSituations.InSpaceLow:
return "Near in Space"; return "Near in Space";
case ExperimentSituations.InSpaceHigh: case ExperimentSituations.InSpaceHigh:
return "High in Space"; return "High in Space";
case ExperimentSituations.SrfSplashed: case ExperimentSituations.SrfSplashed:
return "Splashed Down"; return "Splashed Down";
default: default:
return "Unknown"; return "Unknown";
} }
} }
#endregion #endregion
   
#region VESSEL_EXTENSIONS_LAT_LONG #region VESSEL_EXTENSIONS_LAT_LONG
public static string GetLongitudeString(this Vessel vessel, string format = "F4") public static string GetLongitudeString(this Vessel vessel, string format = "F4")
{ {
string dir_long = "W"; string dir_long = "W";
double v_long = vessel.longitude; double v_long = vessel.longitude;
   
v_long = FixDegreeDomain(v_long); v_long = FixDegreeDomain(v_long);
   
if (v_long < -180d) if (v_long < -180d)
{ {
v_long += 360d; v_long += 360d;
} }
if (v_long >= 180) if (v_long >= 180)
{ {
v_long -= 360d; v_long -= 360d;
} }
   
if (v_long > 0) if (v_long > 0)
dir_long = "E"; dir_long = "E";
   
return string.Format("{0}° {1}", Math.Abs(v_long).ToString(format), dir_long); return string.Format("{0}° {1}", Math.Abs(v_long).ToString(format), dir_long);
} }
   
public static string GetLatitudeString(this Vessel vessel, string format = "F4") public static string GetLatitudeString(this Vessel vessel, string format = "F4")
{ {
string dir_lat = "S"; string dir_lat = "S";
double v_lat = vessel.latitude; double v_lat = vessel.latitude;
if (v_lat > 0) if (v_lat > 0)
dir_lat = "N"; dir_lat = "N";
   
return string.Format("{0}° {1}", Math.Abs(v_lat).ToString(format), dir_lat); return string.Format("{0}° {1}", Math.Abs(v_lat).ToString(format), dir_lat);
} }
#endregion #endregion
   
#region VESSEL_EXTENSIONS_GENERAL #region VESSEL_EXTENSIONS_GENERAL
public static double TrueAltitude(Vessel vessel) public static double TrueAltitude(Vessel vessel)
{ {
double trueAltitude = vessel.orbit.altitude - vessel.terrainAltitude; double trueAltitude = vessel.orbit.altitude - vessel.terrainAltitude;
   
// HACK: This assumes that on worlds with oceans, all water is fixed at 0 m, // HACK: This assumes that on worlds with oceans, all water is fixed at 0 m,
// and water covers the whole surface at 0 m. // and water covers the whole surface at 0 m.
if (vessel.terrainAltitude < 0 && vessel.mainBody.ocean) if (vessel.terrainAltitude < 0 && vessel.mainBody.ocean)
{ {
trueAltitude = vessel.orbit.altitude; trueAltitude = vessel.orbit.altitude;
} }
   
return trueAltitude; return trueAltitude;
} }
   
public static double Radius(this Vessel vessel) public static double Radius(this Vessel vessel)
{ {
double radius; double radius;
   
radius = vessel.altitude; radius = vessel.altitude;
   
if (vessel.mainBody != null) if (vessel.mainBody != null)
{ {
radius += vessel.mainBody.Radius; radius += vessel.mainBody.Radius;
} }
   
return radius; return radius;
} }
#endregion #endregion
   
#region GEOMETRY_UTILS #region GEOMETRY_UTILS
public static double FixAngleDomain(double Angle, bool Degrees = false) public static double FixAngleDomain(double Angle, bool Degrees = false)
{ {
double Extent = 2d * Math.PI; double Extent = 2d * Math.PI;
if (Degrees) if (Degrees)
{ {
Extent = 360d; Extent = 360d;
} }
   
Angle = Angle % (Extent); Angle = Angle % (Extent);
if (Angle < 0d) if (Angle < 0d)
{ {
Angle += Extent; Angle += Extent;
} }
   
return Angle; return Angle;
} }
   
public static double FixDegreeDomain(double Angle) public static double FixDegreeDomain(double Angle)
{ {
return FixAngleDomain(Angle, true); return FixAngleDomain(Angle, true);
} }
#endregion #endregion
   
private static Dictionary<int, GUI.WindowFunction> functionCache; private static Dictionary<int, GUI.WindowFunction> functionCache;
public static UnityEngine.GUI.WindowFunction GetWindowHandler(Action<int> func) public static UnityEngine.GUI.WindowFunction GetWindowHandler(Action<int> func)
{ {
if (functionCache == null) if (functionCache == null)
{ {
functionCache = new Dictionary<int, GUI.WindowFunction>(); functionCache = new Dictionary<int, GUI.WindowFunction>();
} }
   
int hashCode = func.GetHashCode(); int hashCode = func.GetHashCode();
   
if (!functionCache.ContainsKey(hashCode)) if (!functionCache.ContainsKey(hashCode))
{ {
functionCache[hashCode] = delegate (int id) functionCache[hashCode] = delegate (int id)
{ {
try try
{ {
func(id); func(id);
} }
#if DEBUG #if DEBUG
catch (ArgumentException ex) catch (ArgumentException)
#else #else
catch (ArgumentException) catch (ArgumentException)
#endif #endif
{ {
Debug.LogWarning( Debug.LogWarning(
string.Format("[{0}]: ArgumentException caught during window call. This is not a bug.", string.Format("[{0}]: ArgumentException caught during window call. This is not a bug.",
func.Target.GetType().Name func.Target.GetType().Name
)); ));
   
/*#if DEBUG /*#if DEBUG
Debug.LogException(ex); Debug.LogException(ex);
#endif*/ #endif*/
} }
catch (Exception ex) catch (Exception ex)
{ {
Debug.LogError( Debug.LogError(
string.Format("[{0}]: {1} caught during window call.\nMessage:\n{2}\nStackTrace:\n{3}", string.Format("[{0}]: {1} caught during window call.\nMessage:\n{2}\nStackTrace:\n{3}",
func.Target.GetType().Name, func.Target.GetType().Name,
ex.GetType().Name, ex.GetType().Name,
ex.Message, ex.Message,
ex.StackTrace ex.StackTrace
)); ));
} }
}; };
} }
   
return functionCache[hashCode]; return functionCache[hashCode];
} }
   
/// <summary> /// <summary>
/// Converts the interval given in seconds to a human-friendly /// Formats the interval given in seconds as a human-friendly
/// time period in [years], [days], hours, minutes, and seconds. /// time period in [[[[years, ]days, ]hours, ]minutes, and ]seconds.
/// ///
/// Uses sidereal days, since "6 hours per day" is the Kerbal standard. /// Uses sidereal days, since "6 hours per day" is the Kerbal standard.
/// </summary> /// </summary>
/// <returns>Human readable interval</returns> /// <returns>Human readable interval</returns>
/// <param name="seconds"></param> /// <param name="seconds"></param>
public static string ConvertInterval(double seconds) public static string FormatInterval(double seconds)
{ {
double SecondsPerMinute = 60d; return UnpackedTime.FromSeconds(seconds).FormatAsSpan();
double SecondsPerHour = 3600d; }
double SecondsPerDay;  
double SecondsPerYear; /// <summary>
  /// Formats the date given in seconds since epoch as a human-friendly
if (GameSettings.KERBIN_TIME) /// date in the format YY, DD, HH:MM:SS
{ /// </summary>
SecondsPerDay = 21600d; /// <returns>The date.</returns>
SecondsPerYear = 9203545d; /// <param name="seconds">Seconds.</param>
} public static string FormatDate(double seconds)
else {
{ return UnpackedTime.FromSeconds(seconds).FormatAsDate();
SecondsPerDay = 86164.1d; }
SecondsPerYear = 31558149d;  
} public class UnpackedTime
  {
int years; public const double SecondsPerMinute = 60d;
int days; public const double SecondsPerHour = 3600d;
int hours;  
int minutes; public static double SecondsPerDay
  {
years = (int)(seconds / SecondsPerYear); get
  {
seconds %= SecondsPerYear; if (GameSettings.KERBIN_TIME)
  {
days = (int)(seconds / SecondsPerDay); return 21600d;
  }
seconds %= SecondsPerDay; else
  {
hours = (int)(seconds / SecondsPerHour); return 86164.1d;
  }
seconds %= SecondsPerHour; }
  }
minutes = (int)(seconds / SecondsPerMinute);  
  public static double SecondsPerYear
seconds %= SecondsPerMinute; {
  get
string format_1 = string.Intern("{0:D1}y {1:D1}d {2:D2}h {3:D2}m {4:00.0}s"); {
string format_2 = string.Intern("{0:D1}d {1:D2}h {2:D2}m {3:00.0}s"); if (GameSettings.KERBIN_TIME)
string format_3 = string.Intern("{0:D2}h {1:D2}m {2:00.0}s"); {
string format_4 = string.Intern("{0:D2}m {1:00.0}s"); return 9203545d;
string format_5 = string.Intern("{0:00.0}s"); }
  else
if (years > 0) {
{ return 31558149d;
return string.Format(format_1, years, days, hours, minutes, seconds); }
} }
else if (days > 0) }
{  
return string.Format(format_2, days, hours, minutes, seconds); public static UnpackedTime FromSeconds(double seconds)
} {
else if (hours > 0) UnpackedTime time = new UnpackedTime();
{  
return string.Format(format_3, hours, minutes, seconds); time.years = (int)(seconds / SecondsPerYear);
}  
else if (minutes > 0) seconds %= SecondsPerYear;
{  
return string.Format(format_4, minutes, seconds); time.days = (int)(seconds / SecondsPerDay);
}  
else seconds %= SecondsPerDay;
{  
return string.Format(format_5, seconds); time.hours = (int)(seconds / SecondsPerHour);
}  
  seconds %= SecondsPerHour;
   
  time.minutes = (int)(seconds / SecondsPerMinute);
   
  seconds %= SecondsPerMinute;
   
  time.seconds = seconds;
   
  return time;
  }
   
  public static explicit operator UnpackedTime(double seconds)
  {
  return FromSeconds(seconds);
  }
   
  public static implicit operator double(UnpackedTime time)
  {
  return time.ToSeconds();
  }
   
  public static UnpackedTime operator+ (UnpackedTime lhs, UnpackedTime rhs)
  {
  return FromSeconds(lhs.ToSeconds() + rhs.ToSeconds());
  }
   
  public static UnpackedTime operator- (UnpackedTime lhs, UnpackedTime rhs)
  {
  return FromSeconds(lhs.ToSeconds() - rhs.ToSeconds());
  }
   
  public int years;
  public int days;
  public int hours;
  public int minutes;
  public double seconds;
   
  public double ToSeconds()
  {
  return (double)years * SecondsPerYear +
  (double)days * SecondsPerDay +
  (double)hours * SecondsPerHour +
  (double)minutes * SecondsPerMinute +
  seconds;
  }
   
  public string FormatAsSpan()
  {
  string format_1 = "{0:D1}y {1:D1}d {2:D2}h {3:D2}m {4:00.0}s";
  string format_2 = "{0:D1}d {1:D2}h {2:D2}m {3:00.0}s";
  string format_3 = "{0:D2}h {1:D2}m {2:00.0}s";
  string format_4 = "{0:D2}m {1:00.0}s";
  string format_5 = "{0:00.0}s";
   
  if (this.years > 0)
  {
  return string.Format(format_1, this.years, this.days, this.hours, this.minutes, this.seconds);
  }
  else if (this.days > 0)
  {
  return string.Format(format_2, this.days, this.hours, this.minutes, this.seconds);
  }
  else if (this.hours > 0)
  {
  return string.Format(format_3, this.hours, this.minutes, this.seconds);
  }
  else if (this.minutes > 0)
  {
  return string.Format(format_4, this.minutes, this.seconds);
  }
  else
  {
  return string.Format(format_5, this.seconds);
  }
  }
   
  public string FormatAsDate()
  {
  string format = "Y{0:D1}, D{1:D1} {2:D2}:{3:D2}:{4:00.0}s";
   
  return string.Format(format, years, days, hours, minutes, seconds);
  }
   
  public UnpackedTime(int years, int days, int hours, int minutes, double seconds)
  {
  this.years = years;
  this.days = days;
  this.hours = hours;
  this.minutes = minutes;
  this.seconds = seconds;
  }
   
  public UnpackedTime() : this(0, 0, 0, 0, 0d) {}
} }
   
public static string UppercaseFirst(string s) public static string UppercaseFirst(string s)
{ {
if (string.IsNullOrEmpty(s)) if (string.IsNullOrEmpty(s))
{ {
return string.Empty; return string.Empty;
} }
char[] a = s.ToCharArray(); char[] a = s.ToCharArray();
a[0] = char.ToUpper(a[0]); a[0] = char.ToUpper(a[0]);
return new string(a); return new string(a);
} }
   
//transfer angles //transfer angles
public static double Nivvy_CalcTransferPhaseAngle(double r_current, double r_target, double grav_param) public static double Nivvy_CalcTransferPhaseAngle(double r_current, double r_target, double grav_param)
{ {
r_target /= 1000; r_target /= 1000;
r_current /= 1000; r_current /= 1000;
grav_param /= 1000000000; grav_param /= 1000000000;
   
double midpoint = (r_target + r_current) / 2; double midpoint = (r_target + r_current) / 2;
   
double T_target = (2 * Math.PI) * Math.Sqrt((r_target * r_target * r_target) / grav_param); double T_target = (2 * Math.PI) * Math.Sqrt((r_target * r_target * r_target) / grav_param);
double T_transfer = (2 * Math.PI) * Math.Sqrt((midpoint * midpoint * midpoint) / grav_param); double T_transfer = (2 * Math.PI) * Math.Sqrt((midpoint * midpoint * midpoint) / grav_param);
return 360 * (0.5 - (T_transfer / (2 * T_target))); return 360 * (0.5 - (T_transfer / (2 * T_target)));
} }
   
public static double Younata_DeltaVToGetToOtherBody(double mu, double r1, double r2) public static double Younata_DeltaVToGetToOtherBody(double mu, double r1, double r2)
{ {
/* /*
def deltaVToGetToOtherBody(mu, r1, r2): def deltaVToGetToOtherBody(mu, r1, r2):
# mu = gravity param of common orbiting body of r1 and r2 # mu = gravity param of common orbiting body of r1 and r2
# (e.g. for mun to minmus, mu is kerbin's gravity param # (e.g. for mun to minmus, mu is kerbin's gravity param
# r1 = initial body's orbit radius # r1 = initial body's orbit radius
# r2 = target body's orbit radius # r2 = target body's orbit radius
# return value is km/s # return value is km/s
sur1 = math.sqrt(mu / r1) sur1 = math.sqrt(mu / r1)
sr1r2 = math.sqrt(float(2*r2)/float(r1+r2)) sr1r2 = math.sqrt(float(2*r2)/float(r1+r2))
mult = sr1r2 - 1 mult = sr1r2 - 1
return sur1 * mult return sur1 * mult
*/ */
double sur1, sr1r2, mult; double sur1, sr1r2, mult;
sur1 = Math.Sqrt(mu / r1); sur1 = Math.Sqrt(mu / r1);
sr1r2 = Math.Sqrt((2 * r2) / (r1 + r2)); sr1r2 = Math.Sqrt((2 * r2) / (r1 + r2));
mult = sr1r2 - 1; mult = sr1r2 - 1;
return sur1 * mult; return sur1 * mult;
} }
   
public static double Younata_DeltaVToExitSOI(double mu, double r1, double r2, double v) public static double Younata_DeltaVToExitSOI(double mu, double r1, double r2, double v)
{ {
/* /*
def deltaVToExitSOI(mu, r1, r2, v): def deltaVToExitSOI(mu, r1, r2, v):
# mu = gravity param of current body # mu = gravity param of current body
# r1 = current orbit radius # r1 = current orbit radius
# r2 = SOI radius # r2 = SOI radius
# v = SOI exit velocity # v = SOI exit velocity
foo = r2 * (v**2) - 2 * mu foo = r2 * (v**2) - 2 * mu
bar = r1 * foo + (2 * r2 * mu) bar = r1 * foo + (2 * r2 * mu)
r = r1*r2 r = r1*r2
return math.sqrt(bar / r) return math.sqrt(bar / r)
*/ */
double foo = r2 * (v * v) - 2 * mu; double foo = r2 * (v * v) - 2 * mu;
double bar = r1 * foo + (2 * r2 * mu); double bar = r1 * foo + (2 * r2 * mu);
double r = r1 * r2; double r = r1 * r2;
return Math.Sqrt(bar / r); return Math.Sqrt(bar / r);
} }
   
public static double Younata_TransferBurnPoint(double r, double v, double angle, double mu) public static double Younata_TransferBurnPoint(double r, double v, double angle, double mu)
{ {
/* /*
def transferBurnPoint(r, v, angle, mu): def transferBurnPoint(r, v, angle, mu):
# r = parking orbit radius # r = parking orbit radius
# v = ejection velocity # v = ejection velocity
# angle = phase angle (from function phaseAngle()) # angle = phase angle (from function phaseAngle())
# mu = gravity param of current body. # mu = gravity param of current body.
epsilon = ((v**2)/2) - (mu / r) epsilon = ((v**2)/2) - (mu / r)
h = r * v * math.sin(angle) h = r * v * math.sin(angle)
e = math.sqrt(1 + ((2 * epsilon * h**2)/(mu**2))) e = math.sqrt(1 + ((2 * epsilon * h**2)/(mu**2)))
theta = math.acos(1.0 / e) theta = math.acos(1.0 / e)
degrees = theta * (180.0 / math.pi) degrees = theta * (180.0 / math.pi)
return 180 - degrees return 180 - degrees
*/ */
double epsilon, h, ee, theta, degrees; double epsilon, h, ee, theta, degrees;
epsilon = ((v * v) / 2) - (mu / r); epsilon = ((v * v) / 2) - (mu / r);
h = r * v * Math.Sin(angle); h = r * v * Math.Sin(angle);
ee = Math.Sqrt(1 + ((2 * epsilon * (h * h)) / (mu * mu))); ee = Math.Sqrt(1 + ((2 * epsilon * (h * h)) / (mu * mu)));
theta = Math.Acos(1.0 / ee); theta = Math.Acos(1.0 / ee);
degrees = theta * (180.0 / Math.PI); degrees = theta * (180.0 / Math.PI);
return 180 - degrees; return 180 - degrees;
// returns the ejection angle // returns the ejection angle
} }
   
public static double Adammada_CurrrentPhaseAngle( public static double Adammada_CurrrentPhaseAngle(
double body_LAN, double body_LAN,
double body_orbitPct, double body_orbitPct,
double origin_LAN, double origin_LAN,
double origin_orbitPct double origin_orbitPct
) )
{ {
double angle = (body_LAN / 360 + body_orbitPct) - (origin_LAN / 360 + origin_orbitPct); double angle = (body_LAN / 360 + body_orbitPct) - (origin_LAN / 360 + origin_orbitPct);
if (angle > 1) if (angle > 1)
angle = angle - 1; angle = angle - 1;
if (angle < 0) if (angle < 0)
angle = angle + 1; angle = angle + 1;
if (angle > 0.5) if (angle > 0.5)
angle = angle - 1; angle = angle - 1;
angle = angle * 360; angle = angle * 360;
return angle; return angle;
} }
   
public static double Adammada_CurrentEjectionAngle( public static double Adammada_CurrentEjectionAngle(
double vessel_long, double vessel_long,
double origin_rotAngle, double origin_rotAngle,
double origin_LAN, double origin_LAN,
double origin_orbitPct double origin_orbitPct
) )
{ {
//double eangle = ((FlightGlobals.ActiveVOID.vessel.longitude + orbiting.rotationAngle) - (orbiting.orbit.LAN / 360 + orbiting.orbit.orbitPercent) * 360); //double eangle = ((FlightGlobals.ActiveVOID.vessel.longitude + orbiting.rotationAngle) - (orbiting.orbit.LAN / 360 + orbiting.orbit.orbitPercent) * 360);
double eangle = ((vessel_long + origin_rotAngle) - (origin_LAN / 360 + origin_orbitPct) * 360); double eangle = ((vessel_long + origin_rotAngle) - (origin_LAN / 360 + origin_orbitPct) * 360);
   
while (eangle < 0) while (eangle < 0)
eangle = eangle + 360; eangle = eangle + 360;
while (eangle > 360) while (eangle > 360)
eangle = eangle - 360; eangle = eangle - 360;
if (eangle < 270) if (eangle < 270)
eangle = 90 - eangle; eangle = 90 - eangle;
else else
eangle = 450 - eangle; eangle = 450 - eangle;
return eangle; return eangle;
} }
   
public static double mrenigma03_calcphase(Vessel vessel, CelestialBody target) //calculates phase angle between the current body and target body public static double mrenigma03_calcphase(Vessel vessel, CelestialBody target) //calculates phase angle between the current body and target body
{ {
Vector3d vecthis = new Vector3d(); Vector3d vecthis = new Vector3d();
Vector3d vectarget = new Vector3d(); Vector3d vectarget = new Vector3d();
vectarget = target.orbit.getRelativePositionAtUT(Planetarium.GetUniversalTime()); vectarget = target.orbit.getRelativePositionAtUT(Planetarium.GetUniversalTime());
   
if ((vessel.mainBody.name == "Sun") || (vessel.mainBody.referenceBody.referenceBody.name == "Sun")) if ((vessel.mainBody.name == "Sun") || (vessel.mainBody.referenceBody.referenceBody.name == "Sun"))
{ {
vecthis = vessel.orbit.getRelativePositionAtUT(Planetarium.GetUniversalTime()); vecthis = vessel.orbit.getRelativePositionAtUT(Planetarium.GetUniversalTime());
} }
else else
{ {
vecthis = vessel.mainBody.orbit.getRelativePositionAtUT(Planetarium.GetUniversalTime()); vecthis = vessel.mainBody.orbit.getRelativePositionAtUT(Planetarium.GetUniversalTime());
} }
   
vecthis = Vector3d.Project(new Vector3d(vecthis.x, 0, vecthis.z), vecthis); vecthis = Vector3d.Project(new Vector3d(vecthis.x, 0, vecthis.z), vecthis);
vectarget = Vector3d.Project(new Vector3d(vectarget.x, 0, vectarget.z), vectarget); vectarget = Vector3d.Project(new Vector3d(vectarget.x, 0, vectarget.z), vectarget);
   
Vector3d prograde = new Vector3d(); Vector3d prograde = new Vector3d();
prograde = Quaternion.AngleAxis(90, Vector3d.forward) * vecthis; prograde = Quaternion.AngleAxis(90, Vector3d.forward) * vecthis;
   
double phase = Vector3d.Angle(vecthis, vectarget); double phase = Vector3d.Angle(vecthis, vectarget);
   
if (Vector3d.Angle(prograde, vectarget) > 90) if (Vector3d.Angle(prograde, vectarget) > 90)
phase = 360 - phase; phase = 360 - phase;
   
return (phase + 360) % 360; return (phase + 360) % 360;
} }
   
public static double adjustCurrPhaseAngle(double transfer_angle, double curr_phase) public static double adjustCurrPhaseAngle(double transfer_angle, double curr_phase)
{ {
if (transfer_angle < 0) if (transfer_angle < 0)
{ {
if (curr_phase > 0) if (curr_phase > 0)
return (-1 * (360 - curr_phase)); return (-1 * (360 - curr_phase));
else if (curr_phase < 0) else if (curr_phase < 0)
return curr_phase; return curr_phase;
} }
else if (transfer_angle > 0) else if (transfer_angle > 0)
{ {
if (curr_phase > 0) if (curr_phase > 0)
return curr_phase; return curr_phase;
else if (curr_phase < 0) else if (curr_phase < 0)
return (360 + curr_phase); return (360 + curr_phase);
} }
return curr_phase; return curr_phase;
} }
   
public static double adjust_current_ejection_angle(double curr_ejection) public static double adjust_current_ejection_angle(double curr_ejection)
{ {
//curr_ejection WILL need to be adjusted once for all transfers as it returns values ranging -180 to 180 //curr_ejection WILL need to be adjusted once for all transfers as it returns values ranging -180 to 180
// need 0-360 instead // need 0-360 instead
// //
// ie i have -17 in the screenshot // ie i have -17 in the screenshot
// need it to show 343 // need it to show 343
// //
// do this // do this
// //
// if < 0, add curr to 360 // 360 + (-17) = 343 // if < 0, add curr to 360 // 360 + (-17) = 343
// else its good as it is // else its good as it is
   
if (curr_ejection < 0) if (curr_ejection < 0)
return 360 + curr_ejection; return 360 + curr_ejection;
else else
return curr_ejection; return curr_ejection;
   
} }
   
public static double adjust_transfer_ejection_angle(double trans_ejection, double trans_phase) public static double adjust_transfer_ejection_angle(double trans_ejection, double trans_phase)
{ {
// if transfer_phase_angle < 0 its a lower transfer // if transfer_phase_angle < 0 its a lower transfer
//180 + curr_ejection //180 + curr_ejection
// else if transfer_phase_angle > 0 its good as it is // else if transfer_phase_angle > 0 its good as it is
   
if (trans_phase < 0) if (trans_phase < 0)
return 180 + trans_ejection; return 180 + trans_ejection;
else else
return trans_ejection; return trans_ejection;
   
} }
   
public static void display_transfer_angles_SUN2PLANET(CelestialBody body, Vessel vessel) public static void display_transfer_angles_SUN2PLANET(CelestialBody body, Vessel vessel)
{ {
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Phase angle (curr/trans):"); GUILayout.Label("Phase angle (curr/trans):");
GUILayout.Label( GUILayout.Label(
VOID_Tools.mrenigma03_calcphase(vessel, body).ToString("F3") + "° / " + VOID_Tools.Nivvy_CalcTransferPhaseAngle( VOID_Tools.mrenigma03_calcphase(vessel, body).ToString("F3") + "° / " + VOID_Tools.Nivvy_CalcTransferPhaseAngle(
vessel.orbit.semiMajorAxis, vessel.orbit.semiMajorAxis,
body.orbit.semiMajorAxis, body.orbit.semiMajorAxis,
vessel.mainBody.gravParameter vessel.mainBody.gravParameter
).ToString("F3") + "°", ).ToString("F3") + "°",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Transfer velocity:"); GUILayout.Label("Transfer velocity:");
GUILayout.Label( GUILayout.Label(
(VOID_Tools.Younata_DeltaVToGetToOtherBody( (VOID_Tools.Younata_DeltaVToGetToOtherBody(
(vessel.mainBody.gravParameter / 1000000000), (vessel.mainBody.gravParameter / 1000000000),
(vessel.orbit.semiMajorAxis / 1000), (vessel.orbit.semiMajorAxis / 1000),
(body.orbit.semiMajorAxis / 1000) (body.orbit.semiMajorAxis / 1000)
) * 1000).ToString("F2") + "m/s", ) * 1000).ToString("F2") + "m/s",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
public static void display_transfer_angles_PLANET2PLANET(CelestialBody body, Vessel vessel) public static void display_transfer_angles_PLANET2PLANET(CelestialBody body, Vessel vessel)
{ {
double dv1 = VOID_Tools.Younata_DeltaVToGetToOtherBody( double dv1 = VOID_Tools.Younata_DeltaVToGetToOtherBody(
(vessel.mainBody.referenceBody.gravParameter / 1000000000), (vessel.mainBody.referenceBody.gravParameter / 1000000000),
(vessel.mainBody.orbit.semiMajorAxis / 1000), (vessel.mainBody.orbit.semiMajorAxis / 1000),
(body.orbit.semiMajorAxis / 1000) (body.orbit.semiMajorAxis / 1000)
); );
double dv2 = VOID_Tools.Younata_DeltaVToExitSOI( double dv2 = VOID_Tools.Younata_DeltaVToExitSOI(
(vessel.mainBody.gravParameter / 1000000000), (vessel.mainBody.gravParameter / 1000000000),
(vessel.orbit.semiMajorAxis / 1000), (vessel.orbit.semiMajorAxis / 1000),
(vessel.mainBody.sphereOfInfluence / 1000), (vessel.mainBody.sphereOfInfluence / 1000),
Math.Abs(dv1) Math.Abs(dv1)
); );
   
double trans_ejection_angle = VOID_Tools.Younata_TransferBurnPoint( double trans_ejection_angle = VOID_Tools.Younata_TransferBurnPoint(
(vessel.orbit.semiMajorAxis / 1000), (vessel.orbit.semiMajorAxis / 1000),
dv2, dv2,
(Math.PI / 2.0), (Math.PI / 2.0),
(vessel.mainBody.gravParameter / 1000000000) (vessel.mainBody.gravParameter / 1000000000)
); );
double curr_ejection_angle = VOID_Tools.Adammada_CurrentEjectionAngle( double curr_ejection_angle = VOID_Tools.Adammada_CurrentEjectionAngle(
FlightGlobals.ActiveVessel.longitude, FlightGlobals.ActiveVessel.longitude,
FlightGlobals.ActiveVessel.orbit.referenceBody.rotationAngle, FlightGlobals.ActiveVessel.orbit.referenceBody.rotationAngle,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN, FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent
); );
   
double trans_phase_angle = VOID_Tools.Nivvy_CalcTransferPhaseAngle( double trans_phase_angle = VOID_Tools.Nivvy_CalcTransferPhaseAngle(
vessel.mainBody.orbit.semiMajorAxis, vessel.mainBody.orbit.semiMajorAxis,
body.orbit.semiMajorAxis, body.orbit.semiMajorAxis,
vessel.mainBody.referenceBody.gravParameter vessel.mainBody.referenceBody.gravParameter
) % 360; ) % 360;
double curr_phase_angle = VOID_Tools.Adammada_CurrrentPhaseAngle( double curr_phase_angle = VOID_Tools.Adammada_CurrrentPhaseAngle(
body.orbit.LAN, body.orbit.LAN,
body.orbit.orbitPercent, body.orbit.orbitPercent,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN, FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent
); );
   
double adj_phase_angle = VOID_Tools.adjustCurrPhaseAngle(trans_phase_angle, curr_phase_angle); double adj_phase_angle = VOID_Tools.adjustCurrPhaseAngle(trans_phase_angle, curr_phase_angle);
double adj_trans_ejection_angle = VOID_Tools.adjust_transfer_ejection_angle(trans_ejection_angle, trans_phase_angle); double adj_trans_ejection_angle = VOID_Tools.adjust_transfer_ejection_angle(trans_ejection_angle, trans_phase_angle);
double adj_curr_ejection_angle = VOID_Tools.adjust_current_ejection_angle(curr_ejection_angle); double adj_curr_ejection_angle = VOID_Tools.adjust_current_ejection_angle(curr_ejection_angle);
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Phase angle (curr/trans):"); GUILayout.Label("Phase angle (curr/trans):");
GUILayout.Label( GUILayout.Label(
adj_phase_angle.ToString("F3") + "° / " + trans_phase_angle.ToString("F3") + "°", adj_phase_angle.ToString("F3") + "° / " + trans_phase_angle.ToString("F3") + "°",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Ejection angle (curr/trans):"); GUILayout.Label("Ejection angle (curr/trans):");
GUILayout.Label( GUILayout.Label(
adj_curr_ejection_angle.ToString("F3") + "° / " + adj_trans_ejection_angle.ToString("F3") + "°", adj_curr_ejection_angle.ToString("F3") + "° / " + adj_trans_ejection_angle.ToString("F3") + "°",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Transfer velocity:"); GUILayout.Label("Transfer velocity:");
GUILayout.Label((dv2 * 1000).ToString("F2") + "m/s", GUILayout.ExpandWidth(false)); GUILayout.Label((dv2 * 1000).ToString("F2") + "m/s", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
public static void display_transfer_angles_PLANET2MOON(CelestialBody body, Vessel vessel) public static void display_transfer_angles_PLANET2MOON(CelestialBody body, Vessel vessel)
{ {
double dv1 = VOID_Tools.Younata_DeltaVToGetToOtherBody( double dv1 = VOID_Tools.Younata_DeltaVToGetToOtherBody(
(vessel.mainBody.gravParameter / 1000000000), (vessel.mainBody.gravParameter / 1000000000),
(vessel.orbit.semiMajorAxis / 1000), (vessel.orbit.semiMajorAxis / 1000),
(body.orbit.semiMajorAxis / 1000) (body.orbit.semiMajorAxis / 1000)
); );
   
double trans_phase_angle = VOID_Tools.Nivvy_CalcTransferPhaseAngle( double trans_phase_angle = VOID_Tools.Nivvy_CalcTransferPhaseAngle(
vessel.orbit.semiMajorAxis, vessel.orbit.semiMajorAxis,
body.orbit.semiMajorAxis, body.orbit.semiMajorAxis,
vessel.mainBody.gravParameter vessel.mainBody.gravParameter
); );
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Phase angle (curr/trans):"); GUILayout.Label("Phase angle (curr/trans):");
GUILayout.Label( GUILayout.Label(
VOID_Tools.mrenigma03_calcphase(vessel, body).ToString("F3") + "° / " + trans_phase_angle.ToString("F3") + "°", VOID_Tools.mrenigma03_calcphase(vessel, body).ToString("F3") + "° / " + trans_phase_angle.ToString("F3") + "°",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Transfer velocity:"); GUILayout.Label("Transfer velocity:");
GUILayout.Label((dv1 * 1000).ToString("F2") + "m/s", GUILayout.ExpandWidth(false)); GUILayout.Label((dv1 * 1000).ToString("F2") + "m/s", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
public static void display_transfer_angles_MOON2MOON(CelestialBody body, Vessel vessel) public static void display_transfer_angles_MOON2MOON(CelestialBody body, Vessel vessel)
{ {
double dv1 = VOID_Tools.Younata_DeltaVToGetToOtherBody( double dv1 = VOID_Tools.Younata_DeltaVToGetToOtherBody(
(vessel.mainBody.referenceBody.gravParameter / 1000000000), (vessel.mainBody.referenceBody.gravParameter / 1000000000),
(vessel.mainBody.orbit.semiMajorAxis / 1000), (vessel.mainBody.orbit.semiMajorAxis / 1000),
(body.orbit.semiMajorAxis / 1000) (body.orbit.semiMajorAxis / 1000)
); );
double dv2 = VOID_Tools.Younata_DeltaVToExitSOI( double dv2 = VOID_Tools.Younata_DeltaVToExitSOI(
(vessel.mainBody.gravParameter / 1000000000), (vessel.mainBody.gravParameter / 1000000000),
(vessel.orbit.semiMajorAxis / 1000), (vessel.orbit.semiMajorAxis / 1000),
(vessel.mainBody.sphereOfInfluence / 1000), (vessel.mainBody.sphereOfInfluence / 1000),
Math.Abs(dv1) Math.Abs(dv1)
); );
double trans_ejection_angle = VOID_Tools.Younata_TransferBurnPoint( double trans_ejection_angle = VOID_Tools.Younata_TransferBurnPoint(
(vessel.orbit.semiMajorAxis / 1000), (vessel.orbit.semiMajorAxis / 1000),
dv2, dv2,
(Math.PI / 2.0), (Math.PI / 2.0),
(vessel.mainBody.gravParameter / 1000000000) (vessel.mainBody.gravParameter / 1000000000)
); );
   
double curr_phase_angle = VOID_Tools.Adammada_CurrrentPhaseAngle( double curr_phase_angle = VOID_Tools.Adammada_CurrrentPhaseAngle(
body.orbit.LAN, body.orbit.LAN,
body.orbit.orbitPercent, body.orbit.orbitPercent,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN, FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent
); );
double curr_ejection_angle = VOID_Tools.Adammada_CurrentEjectionAngle( double curr_ejection_angle = VOID_Tools.Adammada_CurrentEjectionAngle(
FlightGlobals.ActiveVessel.longitude, FlightGlobals.ActiveVessel.longitude,
FlightGlobals.ActiveVessel.orbit.referenceBody.rotationAngle, FlightGlobals.ActiveVessel.orbit.referenceBody.rotationAngle,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN, FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.LAN,
FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent FlightGlobals.ActiveVessel.orbit.referenceBody.orbit.orbitPercent
); );
   
double trans_phase_angle = VOID_Tools.Nivvy_CalcTransferPhaseAngle( double trans_phase_angle = VOID_Tools.Nivvy_CalcTransferPhaseAngle(
vessel.mainBody.orbit.semiMajorAxis, vessel.mainBody.orbit.semiMajorAxis,
body.orbit.semiMajorAxis, body.orbit.semiMajorAxis,
vessel.mainBody.referenceBody.gravParameter vessel.mainBody.referenceBody.gravParameter
) % 360; ) % 360;
   
double adj_phase_angle = VOID_Tools.adjustCurrPhaseAngle(trans_phase_angle, curr_phase_angle); double adj_phase_angle = VOID_Tools.adjustCurrPhaseAngle(trans_phase_angle, curr_phase_angle);
//double adj_ejection_angle = adjustCurrEjectionAngle(trans_phase_angle, curr_ejection_angle); //double adj_ejection_angle = adjustCurrEjectionAngle(trans_phase_angle, curr_ejection_angle);
   
//new stuff //new stuff
// //
double adj_trans_ejection_angle = VOID_Tools.adjust_transfer_ejection_angle(trans_ejection_angle, trans_phase_angle); double adj_trans_ejection_angle = VOID_Tools.adjust_transfer_ejection_angle(trans_ejection_angle, trans_phase_angle);
double adj_curr_ejection_angle = VOID_Tools.adjust_current_ejection_angle(curr_ejection_angle); double adj_curr_ejection_angle = VOID_Tools.adjust_current_ejection_angle(curr_ejection_angle);
// //
// //
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Phase angle (curr/trans):"); GUILayout.Label("Phase angle (curr/trans):");
GUILayout.Label( GUILayout.Label(
adj_phase_angle.ToString("F3") + "° / " + trans_phase_angle.ToString("F3") + "°", adj_phase_angle.ToString("F3") + "° / " + trans_phase_angle.ToString("F3") + "°",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Ejection angle (curr/trans):"); GUILayout.Label("Ejection angle (curr/trans):");
GUILayout.Label( GUILayout.Label(
adj_curr_ejection_angle.ToString("F3") + "° / " + adj_trans_ejection_angle.ToString("F3") + "°", adj_curr_ejection_angle.ToString("F3") + "° / " + adj_trans_ejection_angle.ToString("F3") + "°",
GUILayout.ExpandWidth(false) GUILayout.ExpandWidth(false)
); );
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
   
GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true)); GUILayout.BeginHorizontal(GUILayout.ExpandWidth(true));
GUILayout.Label("Transfer velocity:"); GUILayout.Label("Transfer velocity:");
GUILayout.Label((dv2 * 1000).ToString("F2") + "m/s", GUILayout.ExpandWidth(false)); GUILayout.Label((dv2 * 1000).ToString("F2") + "m/s", GUILayout.ExpandWidth(false));
GUILayout.EndHorizontal(); GUILayout.EndHorizontal();
} }
   
public static string get_heading_text(double heading) public static string get_heading_text(double heading)
{ {
if (heading > 348.75 || heading <= 11.25) if (heading > 348.75 || heading <= 11.25)
return "N"; return "N";
else if (heading > 11.25 && heading <= 33.75) else if (heading > 11.25 && heading <= 33.75)
return "NNE"; return "NNE";
else if (heading > 33.75 && heading <= 56.25) else if (heading > 33.75 && heading <= 56.25)
return "NE"; return "NE";
else if (heading > 56.25 && heading <= 78.75) else if (heading > 56.25 && heading <= 78.75)
return "ENE"; return "ENE";
else if (heading > 78.75 && heading <= 101.25) else if (heading > 78.75 && heading <= 101.25)
return "E"; return "E";
else if (heading > 101.25 && heading <= 123.75) else if (heading > 101.25 && heading <= 123.75)
return "ESE"; return "ESE";
else if (heading > 123.75 && heading <= 146.25) else if (heading > 123.75 && heading <= 146.25)
return "SE"; return "SE";
else if (heading > 146.25 && heading <= 168.75) else if (heading > 146.25 && heading <= 168.75)
return "SSE"; return "SSE";
else if (heading > 168.75 && heading <= 191.25) else if (heading > 168.75 && heading <= 191.25)
return "S"; return "S";
else if (heading > 191.25 && heading <= 213.75) else if (heading > 191.25 && heading <= 213.75)
return "SSW"; return "SSW";
else if (heading > 213.75 && heading <= 236.25) else if (heading > 213.75 && heading <= 236.25)
return "SW"; return "SW";
else if (heading > 236.25 && heading <= 258.75) else if (heading > 236.25 && heading <= 258.75)
return "WSW"; return "WSW";
else if (heading > 258.75 && heading <= 281.25) else if (heading > 258.75 && heading <= 281.25)
return "W"; return "W";
else if (heading > 281.25 && heading <= 303.75) else if (heading > 281.25 && heading <= 303.75)
return "WNW"; return "WNW";
else if (heading > 303.75 && heading <= 326.25) else if (heading > 303.75 && heading <= 326.25)
return "NW"; return "NW";
else if (heading > 326.25 && heading <= 348.75) else if (heading > 326.25 && heading <= 348.75)
return "NNW"; return "NNW";
else else
return ""; return "";
} }
} }
   
public class CBListComparer : IComparer<CelestialBody> public class CBListComparer : IComparer<CelestialBody>
{ {
public int Compare(CelestialBody bodyA, CelestialBody bodyB) public int Compare(CelestialBody bodyA, CelestialBody bodyB)
{ {
Tools.PostDebugMessage(this, "got bodyA: {0} & bodyB: {1}", bodyA, bodyB); Tools.PostDebugMessage(this, "got bodyA: {0} & bodyB: {1}", bodyA, bodyB);
   
if (bodyA == null && bodyB == null) if (bodyA == null && bodyB == null)
{ {
Tools.PostDebugMessage(this, "both bodies are null, returning 0"); Tools.PostDebugMessage(this, "both bodies are null, returning 0");
return 0; return 0;
} }
if (bodyA == null) if (bodyA == null)
{ {
Tools.PostDebugMessage(this, "bodyA is null, returning -1"); Tools.PostDebugMessage(this, "bodyA is null, returning -1");
return -1; return -1;
} }
if (bodyB == null) if (bodyB == null)
{ {
Tools.PostDebugMessage(this, "bodyB is null, returning 1"); Tools.PostDebugMessage(this, "bodyB is null, returning 1");
return 1; return 1;
} }
   
Tools.PostDebugMessage(this, "bodies are not null, carrying on"); Tools.PostDebugMessage(this, "bodies are not null, carrying on");
   
if (object.ReferenceEquals(bodyA, bodyB)) if (object.ReferenceEquals(bodyA, bodyB))
{ {
Tools.PostDebugMessage(this, "bodies are equal, returning 0"); Tools.PostDebugMessage(this, "bodies are equal, returning 0");
return 0; return 0;
} }
   
Tools.PostDebugMessage(this, "bodies are not equal, carrying on"); Tools.PostDebugMessage(this, "bodies are not equal, carrying on");
   
if (bodyA.orbitDriver == null) if (bodyA.orbitDriver == null)
{ {
Tools.PostDebugMessage(this, "bodyA.orbit is null (bodyA is the sun, returning 1"); Tools.PostDebugMessage(this, "bodyA.orbit is null (bodyA is the sun, returning 1");
return 1; return 1;
} }
if (bodyB.orbitDriver == null) if (bodyB.orbitDriver == null)
{ {
Tools.PostDebugMessage(this, "bodyB.orbit is null (bodyB is the sun, returning -1"); Tools.PostDebugMessage(this, "bodyB.orbit is null (bodyB is the sun, returning -1");
return -1; return -1;
} }
   
Tools.PostDebugMessage(this, "orbits are not null, carrying on"); Tools.PostDebugMessage(this, "orbits are not null, carrying on");
   
if (bodyA.orbit.referenceBody == bodyB.orbit.referenceBody) if (bodyA.orbit.referenceBody == bodyB.orbit.referenceBody)
{ {
Tools.PostDebugMessage(this, "bodies share a parent, comparing SMAs"); Tools.PostDebugMessage(this, "bodies share a parent, comparing SMAs");
return -bodyA.orbit.semiMajorAxis.CompareTo(bodyB.orbit.semiMajorAxis); return -bodyA.orbit.semiMajorAxis.CompareTo(bodyB.orbit.semiMajorAxis);
} }
   
Tools.PostDebugMessage(this, "orbits do not share a parent, carrying on"); Tools.PostDebugMessage(this, "orbits do not share a parent, carrying on");
   
if (bodyA.hasAncestor(bodyB)) if (bodyA.hasAncestor(bodyB))
{ {
Tools.PostDebugMessage(this, "bodyA is a moon or sub-moon of bodyB, returning -1"); Tools.PostDebugMessage(this, "bodyA is a moon or sub-moon of bodyB, returning -1");
return -1; return -1;
} }
if (bodyB.hasAncestor(bodyA)) if (bodyB.hasAncestor(bodyA))
{ {
Tools.PostDebugMessage(this, "bodyA is a moon or sub-moon of bodyB, returning 1"); Tools.PostDebugMessage(this, "bodyA is a moon or sub-moon of bodyB, returning 1");
return 1; return 1;
} }
   
Tools.PostDebugMessage(this, "bodies do not have an obvious relationship, searching for one"); Tools.PostDebugMessage(this, "bodies do not have an obvious relationship, searching for one");
   
if (VOID_Tools.NearestRelatedParents(ref bodyA, ref bodyB)) if (VOID_Tools.NearestRelatedParents(ref bodyA, ref bodyB))
{ {
Tools.PostDebugMessage(this, "good relation {0} and {1}, comparing", bodyA.bodyName, bodyB.bodyName); Tools.PostDebugMessage(this, "good relation {0} and {1}, comparing", bodyA.bodyName, bodyB.bodyName);
return this.Compare(bodyA, bodyB); return this.Compare(bodyA, bodyB);
} }
   
Tools.PostDebugMessage(this, "bad relation {0} and {1}, giving up", bodyA.bodyName, bodyB.bodyName); Tools.PostDebugMessage(this, "bad relation {0} and {1}, giving up", bodyA.bodyName, bodyB.bodyName);
   
return 0; return 0;
} }
} }
} }