SpectatorDataInterpolation code cleanup (+1 squashed commit)

Squashed commits:
[6aa2eef] To ensure a continuous camera path, the SpectatorDataInterpolation now directly influences the AdvancedPositionKeyframeList's interpolation's Position Keyframes
This commit is contained in:
CrushedPixel
2015-09-10 17:49:18 +02:00
parent 3bc436c1f6
commit 0ed3f95f6c
3 changed files with 86 additions and 106 deletions

View File

@@ -7,51 +7,26 @@ import eu.crushedpixel.replaymod.holders.TimestampValue;
import eu.crushedpixel.replaymod.replay.ReplayHandler; import eu.crushedpixel.replaymod.replay.ReplayHandler;
import lombok.NoArgsConstructor; import lombok.NoArgsConstructor;
import java.util.*; import java.util.ListIterator;
import java.util.Map.Entry;
@NoArgsConstructor @NoArgsConstructor
public class AdvancedPositionKeyframeList extends KeyframeList<AdvancedPosition> { public class AdvancedPositionKeyframeList extends KeyframeList<AdvancedPosition> {
private Map<List<Integer>, SpectatorDataInterpolation> spectatorDataInterpolators; private KeyframeList<AdvancedPosition> completedKeyframes;
@Override @Override
public AdvancedPosition getInterpolatedValueForPathPosition(float pathPosition, boolean linear) { public AdvancedPosition getInterpolatedValueForPathPosition(float pathPosition, boolean linear) {
if(first() == null) return null; if(first() == null) return null;
if(size() == 1) return first().getValue(); if(size() == 1) return first().getValue();
@SuppressWarnings("unchecked")
AdvancedPosition toApply = first().getValue().newInstance();
if(previousCallLinear != (Boolean)linear) { if(previousCallLinear != (Boolean)linear) {
recalculate(linear); recalculate(linear);
} }
int keyframeIndex = (int)Math.min(size()-1, pathPosition*(size()-1)); //convert the path position to match the completedKeyframes list
float remainder = (pathPosition - ((float)keyframeIndex/(size()-1))); int timestamp = getTimestampFromPathPosition(pathPosition);
float partial = remainder / (1f/(size()-1)); float newPathPosition = completedKeyframes.getPositionOnPath(timestamp);
return completedKeyframes.getInterpolatedValueForPathPosition(newPathPosition, linear);
AdvancedPosition current = get(keyframeIndex).getValue();
SpectatorDataInterpolation dataInterpolation = null;
if(current instanceof SpectatorData) {
for(Entry<List<Integer>, SpectatorDataInterpolation> entry : spectatorDataInterpolators.entrySet()) {
if(entry.getKey().contains(keyframeIndex)) dataInterpolation = entry.getValue();
}
}
if(dataInterpolation == null) {
interpolation.applyPoint(pathPosition, toApply);
} else {
SpectatorData spectatorData = (SpectatorData)current;
int index = dataInterpolation.indexOf(spectatorData);
int size = dataInterpolation.size()-1;
float one = 1f/size;
float pathPos = (index/(float)size)+(partial*one);
dataInterpolation.applyPoint(pathPos, toApply);
}
return toApply;
} }
@Override @Override
@@ -61,15 +36,7 @@ public class AdvancedPositionKeyframeList extends KeyframeList<AdvancedPosition>
if(size() < 2) return; if(size() < 2) return;
interpolation = linear ? first().getValue().getLinearInterpolator() : first().getValue().getCubicInterpolator(); completedKeyframes = new KeyframeList<AdvancedPosition>();
for(Keyframe<AdvancedPosition> keyframe : this) {
interpolation.addPoint(keyframe.getValue());
}
interpolation.prepare();
spectatorDataInterpolators = new HashMap<List<Integer>, SpectatorDataInterpolation>();
//find subsequent Spectator Keyframes with the same Entity ID //find subsequent Spectator Keyframes with the same Entity ID
ListIterator<Keyframe<AdvancedPosition>> iterator = this.listIterator(); ListIterator<Keyframe<AdvancedPosition>> iterator = this.listIterator();
@@ -78,9 +45,12 @@ public class AdvancedPositionKeyframeList extends KeyframeList<AdvancedPosition>
SpectatorDataInterpolation spectatorInterpolation = null; SpectatorDataInterpolation spectatorInterpolation = null;
boolean found = keyframe.getValue() instanceof SpectatorData; boolean found = keyframe.getValue() instanceof SpectatorData;
int first = iterator.nextIndex()-1;
int firstTimestamp = -1; int firstTimestamp = -1;
if(!found) {
completedKeyframes.add(keyframe);
}
while(found) { while(found) {
if(spectatorInterpolation == null) { if(spectatorInterpolation == null) {
spectatorInterpolation = new SpectatorDataInterpolation(linear); spectatorInterpolation = new SpectatorDataInterpolation(linear);
@@ -89,10 +59,11 @@ public class AdvancedPositionKeyframeList extends KeyframeList<AdvancedPosition>
TimestampValue timestampValue = ReplayHandler.getTimeKeyframes().getInterpolatedValueForTimestamp(keyframeTimestamp, true); TimestampValue timestampValue = ReplayHandler.getTimeKeyframes().getInterpolatedValueForTimestamp(keyframeTimestamp, true);
int replayTimestamp = timestampValue == null ? 0 : timestampValue.asInt(); int replayTimestamp = timestampValue == null ? 0 : timestampValue.asInt();
if(firstTimestamp == -1) firstTimestamp = replayTimestamp; if(firstTimestamp == -1) firstTimestamp = replayTimestamp;
spectatorInterpolation.addPoint((SpectatorData)keyframe.getValue(), replayTimestamp); spectatorInterpolation.addPoint(keyframe, replayTimestamp);
if(iterator.hasNext()) { if(iterator.hasNext()) {
keyframe = iterator.next(); keyframe = iterator.next();
found = keyframe.getValue() instanceof SpectatorData; found = keyframe.getValue() instanceof SpectatorData;
if(!found) completedKeyframes.add(keyframe);
} else { } else {
found = false; found = false;
} }
@@ -100,11 +71,7 @@ public class AdvancedPositionKeyframeList extends KeyframeList<AdvancedPosition>
if(spectatorInterpolation != null && spectatorInterpolation.size() > 1) { if(spectatorInterpolation != null && spectatorInterpolation.size() > 1) {
spectatorInterpolation.prepare(); spectatorInterpolation.prepare();
List<Integer> keys = new ArrayList<Integer>(); completedKeyframes.addAll(spectatorInterpolation.elements());
for(int i=first; i<first+spectatorInterpolation.size()-1; i++) {
keys.add(i);
}
spectatorDataInterpolators.put(keys, spectatorInterpolation);
} }
} }
} }

View File

@@ -5,6 +5,7 @@ import eu.crushedpixel.replaymod.holders.KeyframeComparator;
import lombok.NoArgsConstructor; import lombok.NoArgsConstructor;
import java.util.ArrayList; import java.util.ArrayList;
import java.util.Collection;
import java.util.Collections; import java.util.Collections;
import java.util.List; import java.util.List;
@@ -43,6 +44,20 @@ public class KeyframeList<K extends KeyframeValue> extends ArrayList<Keyframe<K>
sort(); sort();
} }
@Override
public boolean addAll(Collection<? extends Keyframe<K>> c) {
boolean result = super.addAll(c);
sort();
return result;
}
@Override
public boolean addAll(int index, Collection<? extends Keyframe<K>> c) {
boolean result = super.addAll(index, c);
sort();
return result;
}
@Override @Override
public Keyframe<K> remove(int index) { public Keyframe<K> remove(int index) {
Keyframe<K> removed = super.remove(index); Keyframe<K> removed = super.remove(index);
@@ -219,4 +234,16 @@ public class KeyframeList<K extends KeyframeValue> extends ArrayList<Keyframe<K>
return Math.max(0, Math.min(1, value)); return Math.max(0, Math.min(1, value));
} }
protected int getTimestampFromPathPosition(float pathPosition) {
int keyframeIndex = (int)Math.min(size()-1, pathPosition*(size()-1));
float remainder = (pathPosition - ((float)keyframeIndex/(size()-1)));
float partial = remainder / (1f/(size()-1));
int previousTimestamp = get(keyframeIndex).getRealTimestamp();
int nextTimestamp = size()-1 > keyframeIndex ? get(keyframeIndex+1).getRealTimestamp() : previousTimestamp;
int diff = nextTimestamp - previousTimestamp;
return (int)(previousTimestamp + (partial*diff));
}
} }

View File

@@ -18,7 +18,7 @@ public class SpectatorDataInterpolation {
private Integer entityID = null; private Integer entityID = null;
private List<Pair<Integer, SpectatorData>> points = new ArrayList<Pair<Integer, SpectatorData>>(); private List<Pair<Integer, Keyframe<AdvancedPosition>>> points = new ArrayList<Pair<Integer, Keyframe<AdvancedPosition>>>();
private KeyframeList<AdvancedPosition> underlyingKeyframes; private KeyframeList<AdvancedPosition> underlyingKeyframes;
private final boolean linear; private final boolean linear;
@@ -32,18 +32,8 @@ public class SpectatorDataInterpolation {
return points.size(); return points.size();
} }
public boolean contains(SpectatorData spectatorData) { public List<Keyframe<AdvancedPosition>> elements() {
return indexOf(spectatorData) != -1; return new ArrayList<Keyframe<AdvancedPosition>>(underlyingKeyframes);
}
public int indexOf(SpectatorData spectatorData) {
int i = 0;
for(Pair<Integer, SpectatorData> pair : points) {
if(pair.getValue().equals(spectatorData)) return i;
i++;
}
return -1;
} }
public void prepare() { public void prepare() {
@@ -54,43 +44,72 @@ public class SpectatorDataInterpolation {
new GenericSplineInterpolation<SpectatorDataThirdPersonInfo>(); new GenericSplineInterpolation<SpectatorDataThirdPersonInfo>();
double previousSmoothness = 0.5; double previousSmoothness = 0.5;
for(Pair<Integer, SpectatorData> pair : points) { for(Pair<Integer, Keyframe<AdvancedPosition>> pair : points) {
if(pair.getValue().getSpectatingMethod() == SpectatorData.SpectatingMethod.FIRST_PERSON) { if(((SpectatorData)pair.getValue().getValue()).getSpectatingMethod() == SpectatorData.SpectatingMethod.FIRST_PERSON) {
thirdPersonInfoInterpolation.addPoint(new SpectatorDataThirdPersonInfo(0, 0, 0, previousSmoothness)); thirdPersonInfoInterpolation.addPoint(new SpectatorDataThirdPersonInfo(0, 0, 0, previousSmoothness));
} else { } else {
SpectatorDataThirdPersonInfo thirdPersonInfo = pair.getValue().getThirdPersonInfo(); SpectatorDataThirdPersonInfo thirdPersonInfo = ((SpectatorData)pair.getValue().getValue()).getThirdPersonInfo();
thirdPersonInfoInterpolation.addPoint(thirdPersonInfo); thirdPersonInfoInterpolation.addPoint(thirdPersonInfo);
previousSmoothness = thirdPersonInfo.shoulderCamSmoothness; previousSmoothness = thirdPersonInfo.shoulderCamSmoothness;
} }
} }
thirdPersonInfoInterpolation.prepare(); thirdPersonInfoInterpolation.prepare();
//updating the spectator keyframe's position in the world to smoothly continue the path
//with non-spectator position keyframes
for(Pair<Integer, Keyframe<AdvancedPosition>> pair : points) {
AdvancedPosition entityPosition = ReplayHandler.getEntityPositionTracker().getEntityPositionAtTimestamp(entityID, pair.getKey());
if(entityPosition == null) continue;
//transform the entity position (sry for no dry code :x )
SpectatorDataThirdPersonInfo thirdPersonInfo = ((SpectatorData)pair.getValue().getValue()).getThirdPersonInfo();
//first, rotate the camera pitch and yaw according to the settings
entityPosition.setYaw(entityPosition.getYaw() + thirdPersonInfo.shoulderCamYawOffset);
entityPosition.setPitch(entityPosition.getPitch() + thirdPersonInfo.shoulderCamPitchOffset);
//next, move the camera point to fulfill the specified distance to the entity
entityPosition = entityPosition.getDestination(-1 * thirdPersonInfo.shoulderCamDistance);
pair.getValue().getValue().apply(entityPosition);
}
//feed the underlying keyframe list with AdvancedPosition Keyframes that are derived from the Spectator Keyframes //feed the underlying keyframe list with AdvancedPosition Keyframes that are derived from the Spectator Keyframes
underlyingKeyframes = new KeyframeList<AdvancedPosition>(); underlyingKeyframes = new KeyframeList<AdvancedPosition>();
int i = 0; int i = 0;
int firstTimestamp = -1; int firstTimestamp = -1;
int size = points.size()-1; int size = points.size()-1;
for(Pair<Integer, SpectatorData> pair : points) { for(Pair<Integer, Keyframe<AdvancedPosition>> pair : points) {
underlyingKeyframes.add(new Keyframe<AdvancedPosition>(pair.getValue().getRealTimestamp(), pair.getValue().getValue()));
int timestamp = pair.getKey(); int timestamp = pair.getKey();
if(firstTimestamp == -1) firstTimestamp = timestamp; if(firstTimestamp == -1) firstTimestamp = timestamp;
int realTimestamp = pair.getValue().getRealTimestamp();
int nextRealTimestamp = realTimestamp;
int currentTimestamp = timestamp; int currentTimestamp = timestamp;
int nextTimestamp = timestamp; int nextTimestamp = timestamp;
if(i+1 < points.size()) { if(i+1 < points.size()) {
nextTimestamp = points.get(i+1).getKey(); Pair<Integer, Keyframe<AdvancedPosition>> nextPair = points.get(i+1);
nextTimestamp = nextPair.getKey();
nextRealTimestamp = nextPair.getValue().getRealTimestamp();
} }
int difference = nextTimestamp - timestamp; int difference = nextTimestamp - timestamp;
int realTimestampDifference = nextRealTimestamp - realTimestamp;
int smoothness = 0; int smoothness = 0;
while(currentTimestamp + smoothness <= nextTimestamp) { while(currentTimestamp + smoothness < nextTimestamp) {
currentTimestamp += smoothness; currentTimestamp += smoothness;
SpectatorDataThirdPersonInfo thirdPersonInfo = new SpectatorDataThirdPersonInfo(); SpectatorDataThirdPersonInfo thirdPersonInfo = new SpectatorDataThirdPersonInfo();
float percentage = (float)i/size; float percentage = (float)i/size;
percentage += ((currentTimestamp-timestamp)/(float)difference) * 1f/size; percentage += ((currentTimestamp-timestamp)/(float)difference) * 1f/size;
if(Float.isNaN(percentage)) percentage = 1;
float progress = ((currentTimestamp-timestamp)/(float)difference);
int interpolatedRealTimestamp = (int)(realTimestamp + (progress*realTimestampDifference));
thirdPersonInfoInterpolation.applyPoint(percentage, thirdPersonInfo); thirdPersonInfoInterpolation.applyPoint(percentage, thirdPersonInfo);
@@ -106,52 +125,19 @@ public class SpectatorDataInterpolation {
//next, move the camera point to fulfill the specified distance to the entity //next, move the camera point to fulfill the specified distance to the entity
entityPosition = entityPosition.getDestination(-1 * thirdPersonInfo.shoulderCamDistance); entityPosition = entityPosition.getDestination(-1 * thirdPersonInfo.shoulderCamDistance);
underlyingKeyframes.add(new Keyframe<AdvancedPosition>(currentTimestamp-firstTimestamp, entityPosition));
underlyingKeyframes.add(new Keyframe<AdvancedPosition>(interpolatedRealTimestamp, entityPosition));
} }
i++; i++;
} }
} }
public void applyPoint(float position, AdvancedPosition toEdit) { public void addPoint(Keyframe<AdvancedPosition> keyframe, int realTimestamp) {
int keyframeIndex = (int)Math.min(size()-1, position*(size()-1)); if(!(keyframe.getValue() instanceof SpectatorData)) throw new IllegalArgumentException();
float remainder = (position - ((float)keyframeIndex/(size()-1))); SpectatorData spectatorData = (SpectatorData)keyframe.getValue();
float partial = remainder / (1f/(size()-1));
Pair<Integer, SpectatorData> pair = points.get(keyframeIndex);
Pair<Integer, SpectatorData> next = keyframeIndex < points.size()-1 ? points.get(keyframeIndex+1) : null;
SpectatorData spectatorData = pair.getValue();
//decide whether the Entity is spectated in First Person Mode or not
boolean firstPerson = true;
//firstPerson is false if either the SpectatorKeyframe
//or the following SpectatorKeyframe are no FIRST_PERSON Keyframes
//it's only true if the position value is between two FIRST_PERSON Keyframes
if(spectatorData.getSpectatingMethod() != SpectatorData.SpectatingMethod.FIRST_PERSON) {
firstPerson = false;
} else if(next != null) {
if(next.getValue().getSpectatingMethod() != SpectatorData.SpectatingMethod.FIRST_PERSON) firstPerson = false;
}
if(firstPerson) {
int firstTimestamp = pair.getKey();
int nextTimestamp = next == null ? pair.getKey() : next.getKey();
int diff = nextTimestamp - firstTimestamp;
int interpolatedTimestamp = firstTimestamp+(int)(partial*diff);
AdvancedPosition pos = ReplayHandler.getEntityPositionTracker().getEntityPositionAtTimestamp(entityID, interpolatedTimestamp);
if(pos != null) toEdit.apply(pos);
} else {
toEdit.apply(underlyingKeyframes.getInterpolatedValueForPathPosition(position, linear));
}
}
public void addPoint(SpectatorData spectatorData, int realTimestamp) {
if(entityID == null) entityID = spectatorData.getSpectatedEntityID(); if(entityID == null) entityID = spectatorData.getSpectatedEntityID();
else if(entityID != spectatorData.getSpectatedEntityID()) throw new IllegalArgumentException(); else if(entityID != spectatorData.getSpectatedEntityID()) throw new IllegalArgumentException();
points.add(Pair.of(realTimestamp, spectatorData)); points.add(Pair.of(realTimestamp, keyframe));
} }
} }