/******************************************************************************
* Spine Runtimes License Agreement
* Last updated January 1, 2020. Replaces all prior versions.
*
* Copyright (c) 2013-2020, Esoteric Software LLC
*
* Integration of the Spine Runtimes into software or otherwise creating
* derivative works of the Spine Runtimes is permitted under the terms and
* conditions of Section 2 of the Spine Editor License Agreement:
* http://esotericsoftware.com/spine-editor-license
*
* Otherwise, it is permitted to integrate the Spine Runtimes into software
* or otherwise create derivative works of the Spine Runtimes (collectively,
* "Products"), provided that each user of the Products must obtain their own
* Spine Editor license and redistribution of the Products in any form must
* include this license and copyright notice.
*
* THE SPINE RUNTIMES ARE PROVIDED BY ESOTERIC SOFTWARE LLC "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
* DISCLAIMED. IN NO EVENT SHALL ESOTERIC SOFTWARE LLC BE LIABLE FOR ANY
* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES,
* BUSINESS INTERRUPTION, OR LOSS OF USE, DATA, OR PROFITS) 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 OF
* THE SPINE RUNTIMES, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*****************************************************************************/
#if (UNITY_5 || UNITY_5_3_OR_NEWER || UNITY_WSA || UNITY_WP8 || UNITY_WP8_1)
#define IS_UNITY
#endif
using System;
using System.Collections.Generic;
using System.IO;
#if WINDOWS_STOREAPP
using System.Threading.Tasks;
using Windows.Storage;
#endif
namespace Spine {
///
/// Loads skeleton data in the Spine JSON format.
///
/// JSON is human readable but the binary format is much smaller on disk and faster to load. See .
///
/// See Spine JSON format and
/// JSON and binary data in the Spine
/// Runtimes Guide.
///
public class SkeletonJson : SkeletonLoader {
public SkeletonJson (AttachmentLoader attachmentLoader)
: base(attachmentLoader) {
}
public SkeletonJson (params Atlas[] atlasArray)
: base(atlasArray) {
}
#if !IS_UNITY && WINDOWS_STOREAPP
private async Task ReadFile(string path) {
var folder = Windows.ApplicationModel.Package.Current.InstalledLocation;
var file = await folder.GetFileAsync(path).AsTask().ConfigureAwait(false);
using (var reader = new StreamReader(await file.OpenStreamForReadAsync().ConfigureAwait(false))) {
SkeletonData skeletonData = ReadSkeletonData(reader);
skeletonData.Name = Path.GetFileNameWithoutExtension(path);
return skeletonData;
}
}
public override SkeletonData ReadSkeletonData (string path) {
return this.ReadFile(path).Result;
}
#else
public override SkeletonData ReadSkeletonData (string path) {
#if WINDOWS_PHONE
using (var reader = new StreamReader(Microsoft.Xna.Framework.TitleContainer.OpenStream(path))) {
#else
using (var reader = new StreamReader(new FileStream(path, FileMode.Open, FileAccess.Read, FileShare.Read))) {
#endif
SkeletonData skeletonData = ReadSkeletonData(reader);
skeletonData.name = Path.GetFileNameWithoutExtension(path);
return skeletonData;
}
}
#endif
public SkeletonData ReadSkeletonData (TextReader reader) {
if (reader == null) throw new ArgumentNullException("reader", "reader cannot be null.");
float scale = this.scale;
var skeletonData = new SkeletonData();
var root = Json.Deserialize(reader) as Dictionary;
if (root == null) throw new Exception("Invalid JSON.");
// Skeleton.
if (root.ContainsKey("skeleton")) {
var skeletonMap = (Dictionary)root["skeleton"];
skeletonData.hash = (string)skeletonMap["hash"];
skeletonData.version = (string)skeletonMap["spine"];
skeletonData.x = GetFloat(skeletonMap, "x", 0);
skeletonData.y = GetFloat(skeletonMap, "y", 0);
skeletonData.width = GetFloat(skeletonMap, "width", 0);
skeletonData.height = GetFloat(skeletonMap, "height", 0);
skeletonData.fps = GetFloat(skeletonMap, "fps", 30);
skeletonData.imagesPath = GetString(skeletonMap, "images", null);
skeletonData.audioPath = GetString(skeletonMap, "audio", null);
}
// Bones.
if (root.ContainsKey("bones")) {
foreach (Dictionary boneMap in (List)root["bones"]) {
BoneData parent = null;
if (boneMap.ContainsKey("parent")) {
parent = skeletonData.FindBone((string)boneMap["parent"]);
if (parent == null)
throw new Exception("Parent bone not found: " + boneMap["parent"]);
}
var data = new BoneData(skeletonData.Bones.Count, (string)boneMap["name"], parent);
data.length = GetFloat(boneMap, "length", 0) * scale;
data.x = GetFloat(boneMap, "x", 0) * scale;
data.y = GetFloat(boneMap, "y", 0) * scale;
data.rotation = GetFloat(boneMap, "rotation", 0);
data.scaleX = GetFloat(boneMap, "scaleX", 1);
data.scaleY = GetFloat(boneMap, "scaleY", 1);
data.shearX = GetFloat(boneMap, "shearX", 0);
data.shearY = GetFloat(boneMap, "shearY", 0);
string tm = GetString(boneMap, "transform", TransformMode.Normal.ToString());
data.transformMode = (TransformMode)Enum.Parse(typeof(TransformMode), tm, true);
data.skinRequired = GetBoolean(boneMap, "skin", false);
skeletonData.bones.Add(data);
}
}
// Slots.
if (root.ContainsKey("slots")) {
foreach (Dictionary slotMap in (List)root["slots"]) {
var slotName = (string)slotMap["name"];
var boneName = (string)slotMap["bone"];
BoneData boneData = skeletonData.FindBone(boneName);
if (boneData == null) throw new Exception("Slot bone not found: " + boneName);
var data = new SlotData(skeletonData.Slots.Count, slotName, boneData);
if (slotMap.ContainsKey("color")) {
string color = (string)slotMap["color"];
data.r = ToColor(color, 0);
data.g = ToColor(color, 1);
data.b = ToColor(color, 2);
data.a = ToColor(color, 3);
}
if (slotMap.ContainsKey("dark")) {
var color2 = (string)slotMap["dark"];
data.r2 = ToColor(color2, 0, 6); // expectedLength = 6. ie. "RRGGBB"
data.g2 = ToColor(color2, 1, 6);
data.b2 = ToColor(color2, 2, 6);
data.hasSecondColor = true;
}
data.attachmentName = GetString(slotMap, "attachment", null);
if (slotMap.ContainsKey("blend"))
data.blendMode = (BlendMode)Enum.Parse(typeof(BlendMode), (string)slotMap["blend"], true);
else
data.blendMode = BlendMode.Normal;
skeletonData.slots.Add(data);
}
}
// IK constraints.
if (root.ContainsKey("ik")) {
foreach (Dictionary constraintMap in (List)root["ik"]) {
IkConstraintData data = new IkConstraintData((string)constraintMap["name"]);
data.order = GetInt(constraintMap, "order", 0);
data.skinRequired = GetBoolean(constraintMap, "skin", false);
if (constraintMap.ContainsKey("bones")) {
foreach (string boneName in (List)constraintMap["bones"]) {
BoneData bone = skeletonData.FindBone(boneName);
if (bone == null) throw new Exception("IK bone not found: " + boneName);
data.bones.Add(bone);
}
}
string targetName = (string)constraintMap["target"];
data.target = skeletonData.FindBone(targetName);
if (data.target == null) throw new Exception("IK target bone not found: " + targetName);
data.mix = GetFloat(constraintMap, "mix", 1);
data.softness = GetFloat(constraintMap, "softness", 0) * scale;
data.bendDirection = GetBoolean(constraintMap, "bendPositive", true) ? 1 : -1;
data.compress = GetBoolean(constraintMap, "compress", false);
data.stretch = GetBoolean(constraintMap, "stretch", false);
data.uniform = GetBoolean(constraintMap, "uniform", false);
skeletonData.ikConstraints.Add(data);
}
}
// Transform constraints.
if (root.ContainsKey("transform")) {
foreach (Dictionary constraintMap in (List)root["transform"]) {
TransformConstraintData data = new TransformConstraintData((string)constraintMap["name"]);
data.order = GetInt(constraintMap, "order", 0);
data.skinRequired = GetBoolean(constraintMap, "skin", false);
if (constraintMap.ContainsKey("bones")) {
foreach (string boneName in (List)constraintMap["bones"]) {
BoneData bone = skeletonData.FindBone(boneName);
if (bone == null) throw new Exception("Transform constraint bone not found: " + boneName);
data.bones.Add(bone);
}
}
string targetName = (string)constraintMap["target"];
data.target = skeletonData.FindBone(targetName);
if (data.target == null) throw new Exception("Transform constraint target bone not found: " + targetName);
data.local = GetBoolean(constraintMap, "local", false);
data.relative = GetBoolean(constraintMap, "relative", false);
data.offsetRotation = GetFloat(constraintMap, "rotation", 0);
data.offsetX = GetFloat(constraintMap, "x", 0) * scale;
data.offsetY = GetFloat(constraintMap, "y", 0) * scale;
data.offsetScaleX = GetFloat(constraintMap, "scaleX", 0);
data.offsetScaleY = GetFloat(constraintMap, "scaleY", 0);
data.offsetShearY = GetFloat(constraintMap, "shearY", 0);
data.mixRotate = GetFloat(constraintMap, "mixRotate", 1);
data.mixX = GetFloat(constraintMap, "mixX", 1);
data.mixY = GetFloat(constraintMap, "mixY", data.mixX);
data.mixScaleX = GetFloat(constraintMap, "mixScaleX", 1);
data.mixScaleY = GetFloat(constraintMap, "mixScaleY", data.mixScaleX);
data.mixShearY = GetFloat(constraintMap, "mixShearY", 1);
skeletonData.transformConstraints.Add(data);
}
}
// Path constraints.
if (root.ContainsKey("path")) {
foreach (Dictionary constraintMap in (List)root["path"]) {
PathConstraintData data = new PathConstraintData((string)constraintMap["name"]);
data.order = GetInt(constraintMap, "order", 0);
data.skinRequired = GetBoolean(constraintMap, "skin", false);
if (constraintMap.ContainsKey("bones")) {
foreach (string boneName in (List)constraintMap["bones"]) {
BoneData bone = skeletonData.FindBone(boneName);
if (bone == null) throw new Exception("Path bone not found: " + boneName);
data.bones.Add(bone);
}
}
string targetName = (string)constraintMap["target"];
data.target = skeletonData.FindSlot(targetName);
if (data.target == null) throw new Exception("Path target slot not found: " + targetName);
data.positionMode = (PositionMode)Enum.Parse(typeof(PositionMode), GetString(constraintMap, "positionMode", "percent"), true);
data.spacingMode = (SpacingMode)Enum.Parse(typeof(SpacingMode), GetString(constraintMap, "spacingMode", "length"), true);
data.rotateMode = (RotateMode)Enum.Parse(typeof(RotateMode), GetString(constraintMap, "rotateMode", "tangent"), true);
data.offsetRotation = GetFloat(constraintMap, "rotation", 0);
data.position = GetFloat(constraintMap, "position", 0);
if (data.positionMode == PositionMode.Fixed) data.position *= scale;
data.spacing = GetFloat(constraintMap, "spacing", 0);
if (data.spacingMode == SpacingMode.Length || data.spacingMode == SpacingMode.Fixed) data.spacing *= scale;
data.mixRotate = GetFloat(constraintMap, "mixRotate", 1);
data.mixX = GetFloat(constraintMap, "mixX", 1);
data.mixY = GetFloat(constraintMap, "mixY", data.mixX);
skeletonData.pathConstraints.Add(data);
}
}
// Skins.
if (root.ContainsKey("skins")) {
foreach (Dictionary skinMap in (List)root["skins"]) {
Skin skin = new Skin((string)skinMap["name"]);
if (skinMap.ContainsKey("bones")) {
foreach (string entryName in (List)skinMap["bones"]) {
BoneData bone = skeletonData.FindBone(entryName);
if (bone == null) throw new Exception("Skin bone not found: " + entryName);
skin.bones.Add(bone);
}
}
skin.bones.TrimExcess();
if (skinMap.ContainsKey("ik")) {
foreach (string entryName in (List)skinMap["ik"]) {
IkConstraintData constraint = skeletonData.FindIkConstraint(entryName);
if (constraint == null) throw new Exception("Skin IK constraint not found: " + entryName);
skin.constraints.Add(constraint);
}
}
if (skinMap.ContainsKey("transform")) {
foreach (string entryName in (List)skinMap["transform"]) {
TransformConstraintData constraint = skeletonData.FindTransformConstraint(entryName);
if (constraint == null) throw new Exception("Skin transform constraint not found: " + entryName);
skin.constraints.Add(constraint);
}
}
if (skinMap.ContainsKey("path")) {
foreach (string entryName in (List)skinMap["path"]) {
PathConstraintData constraint = skeletonData.FindPathConstraint(entryName);
if (constraint == null) throw new Exception("Skin path constraint not found: " + entryName);
skin.constraints.Add(constraint);
}
}
skin.constraints.TrimExcess();
if (skinMap.ContainsKey("attachments")) {
foreach (KeyValuePair slotEntry in (Dictionary)skinMap["attachments"]) {
int slotIndex = FindSlotIndex(skeletonData, slotEntry.Key);
foreach (KeyValuePair entry in ((Dictionary)slotEntry.Value)) {
try {
Attachment attachment = ReadAttachment((Dictionary)entry.Value, skin, slotIndex, entry.Key, skeletonData);
if (attachment != null) skin.SetAttachment(slotIndex, entry.Key, attachment);
} catch (Exception e) {
throw new Exception("Error reading attachment: " + entry.Key + ", skin: " + skin, e);
}
}
}
}
skeletonData.skins.Add(skin);
if (skin.name == "default") skeletonData.defaultSkin = skin;
}
}
// Linked meshes.
for (int i = 0, n = linkedMeshes.Count; i < n; i++) {
LinkedMesh linkedMesh = linkedMeshes[i];
Skin skin = linkedMesh.skin == null ? skeletonData.defaultSkin : skeletonData.FindSkin(linkedMesh.skin);
if (skin == null) throw new Exception("Slot not found: " + linkedMesh.skin);
Attachment parent = skin.GetAttachment(linkedMesh.slotIndex, linkedMesh.parent);
if (parent == null) throw new Exception("Parent mesh not found: " + linkedMesh.parent);
linkedMesh.mesh.DeformAttachment = linkedMesh.inheritDeform ? (VertexAttachment)parent : linkedMesh.mesh;
linkedMesh.mesh.ParentMesh = (MeshAttachment)parent;
linkedMesh.mesh.UpdateUVs();
}
linkedMeshes.Clear();
// Events.
if (root.ContainsKey("events")) {
foreach (KeyValuePair entry in (Dictionary)root["events"]) {
var entryMap = (Dictionary)entry.Value;
var data = new EventData(entry.Key);
data.Int = GetInt(entryMap, "int", 0);
data.Float = GetFloat(entryMap, "float", 0);
data.String = GetString(entryMap, "string", string.Empty);
data.AudioPath = GetString(entryMap, "audio", null);
if (data.AudioPath != null) {
data.Volume = GetFloat(entryMap, "volume", 1);
data.Balance = GetFloat(entryMap, "balance", 0);
}
skeletonData.events.Add(data);
}
}
// Animations.
if (root.ContainsKey("animations")) {
foreach (KeyValuePair entry in (Dictionary)root["animations"]) {
try {
ReadAnimation((Dictionary)entry.Value, entry.Key, skeletonData);
} catch (Exception e) {
throw new Exception("Error reading animation: " + entry.Key + "\n" + e.Message, e);
}
}
}
skeletonData.bones.TrimExcess();
skeletonData.slots.TrimExcess();
skeletonData.skins.TrimExcess();
skeletonData.events.TrimExcess();
skeletonData.animations.TrimExcess();
skeletonData.ikConstraints.TrimExcess();
return skeletonData;
}
private Attachment ReadAttachment (Dictionary map, Skin skin, int slotIndex, string name, SkeletonData skeletonData) {
float scale = this.scale;
name = GetString(map, "name", name);
var typeName = GetString(map, "type", "region");
var type = (AttachmentType)Enum.Parse(typeof(AttachmentType), typeName, true);
string path = GetString(map, "path", name);
switch (type) {
case AttachmentType.Region:
RegionAttachment region = attachmentLoader.NewRegionAttachment(skin, name, path);
if (region == null) return null;
region.Path = path;
region.x = GetFloat(map, "x", 0) * scale;
region.y = GetFloat(map, "y", 0) * scale;
region.scaleX = GetFloat(map, "scaleX", 1);
region.scaleY = GetFloat(map, "scaleY", 1);
region.rotation = GetFloat(map, "rotation", 0);
region.width = GetFloat(map, "width", 32) * scale;
region.height = GetFloat(map, "height", 32) * scale;
if (map.ContainsKey("color")) {
var color = (string)map["color"];
region.r = ToColor(color, 0);
region.g = ToColor(color, 1);
region.b = ToColor(color, 2);
region.a = ToColor(color, 3);
}
region.UpdateOffset();
return region;
case AttachmentType.Boundingbox:
BoundingBoxAttachment box = attachmentLoader.NewBoundingBoxAttachment(skin, name);
if (box == null) return null;
ReadVertices(map, box, GetInt(map, "vertexCount", 0) << 1);
return box;
case AttachmentType.Mesh:
case AttachmentType.Linkedmesh: {
MeshAttachment mesh = attachmentLoader.NewMeshAttachment(skin, name, path);
if (mesh == null) return null;
mesh.Path = path;
if (map.ContainsKey("color")) {
var color = (string)map["color"];
mesh.r = ToColor(color, 0);
mesh.g = ToColor(color, 1);
mesh.b = ToColor(color, 2);
mesh.a = ToColor(color, 3);
}
mesh.Width = GetFloat(map, "width", 0) * scale;
mesh.Height = GetFloat(map, "height", 0) * scale;
string parent = GetString(map, "parent", null);
if (parent != null) {
linkedMeshes.Add(new LinkedMesh(mesh, GetString(map, "skin", null), slotIndex, parent, GetBoolean(map, "deform", true)));
return mesh;
}
float[] uvs = GetFloatArray(map, "uvs", 1);
ReadVertices(map, mesh, uvs.Length);
mesh.triangles = GetIntArray(map, "triangles");
mesh.regionUVs = uvs;
mesh.UpdateUVs();
if (map.ContainsKey("hull")) mesh.HullLength = GetInt(map, "hull", 0) << 1;
if (map.ContainsKey("edges")) mesh.Edges = GetIntArray(map, "edges");
return mesh;
}
case AttachmentType.Path: {
PathAttachment pathAttachment = attachmentLoader.NewPathAttachment(skin, name);
if (pathAttachment == null) return null;
pathAttachment.closed = GetBoolean(map, "closed", false);
pathAttachment.constantSpeed = GetBoolean(map, "constantSpeed", true);
int vertexCount = GetInt(map, "vertexCount", 0);
ReadVertices(map, pathAttachment, vertexCount << 1);
// potential BOZO see Java impl
pathAttachment.lengths = GetFloatArray(map, "lengths", scale);
return pathAttachment;
}
case AttachmentType.Point: {
PointAttachment point = attachmentLoader.NewPointAttachment(skin, name);
if (point == null) return null;
point.x = GetFloat(map, "x", 0) * scale;
point.y = GetFloat(map, "y", 0) * scale;
point.rotation = GetFloat(map, "rotation", 0);
//string color = GetString(map, "color", null);
//if (color != null) point.color = color;
return point;
}
case AttachmentType.Clipping: {
ClippingAttachment clip = attachmentLoader.NewClippingAttachment(skin, name);
if (clip == null) return null;
string end = GetString(map, "end", null);
if (end != null) {
SlotData slot = skeletonData.FindSlot(end);
if (slot == null) throw new Exception("Clipping end slot not found: " + end);
clip.EndSlot = slot;
}
ReadVertices(map, clip, GetInt(map, "vertexCount", 0) << 1);
//string color = GetString(map, "color", null);
// if (color != null) clip.color = color;
return clip;
}
}
return null;
}
private void ReadVertices (Dictionary map, VertexAttachment attachment, int verticesLength) {
attachment.WorldVerticesLength = verticesLength;
float[] vertices = GetFloatArray(map, "vertices", 1);
float scale = Scale;
if (verticesLength == vertices.Length) {
if (scale != 1) {
for (int i = 0; i < vertices.Length; i++) {
vertices[i] *= scale;
}
}
attachment.vertices = vertices;
return;
}
ExposedList weights = new ExposedList(verticesLength * 3 * 3);
ExposedList bones = new ExposedList(verticesLength * 3);
for (int i = 0, n = vertices.Length; i < n;) {
int boneCount = (int)vertices[i++];
bones.Add(boneCount);
for (int nn = i + (boneCount << 2); i < nn; i += 4) {
bones.Add((int)vertices[i]);
weights.Add(vertices[i + 1] * this.Scale);
weights.Add(vertices[i + 2] * this.Scale);
weights.Add(vertices[i + 3]);
}
}
attachment.bones = bones.ToArray();
attachment.vertices = weights.ToArray();
}
private int FindSlotIndex (SkeletonData skeletonData, string slotName) {
SlotData[] slots = skeletonData.slots.Items;
for (int i = 0, n = skeletonData.slots.Count; i < n; i++)
if (slots[i].name == slotName) return i;
throw new Exception("Slot not found: " + slotName);
}
private void ReadAnimation (Dictionary map, string name, SkeletonData skeletonData) {
var scale = this.scale;
var timelines = new ExposedList();
// Slot timelines.
if (map.ContainsKey("slots")) {
foreach (KeyValuePair entry in (Dictionary)map["slots"]) {
string slotName = entry.Key;
int slotIndex = FindSlotIndex(skeletonData, slotName);
var timelineMap = (Dictionary)entry.Value;
foreach (KeyValuePair timelineEntry in timelineMap) {
var values = (List)timelineEntry.Value;
int frames = values.Count;
if (frames == 0) continue;
var timelineName = (string)timelineEntry.Key;
if (timelineName == "attachment") {
var timeline = new AttachmentTimeline(frames, slotIndex);
int frame = 0;
foreach (Dictionary keyMap in values) {
timeline.SetFrame(frame++, GetFloat(keyMap, "time", 0), (string)keyMap["name"]);
}
timelines.Add(timeline);
} else if (timelineName == "rgba") {
var timeline = new RGBATimeline(frames, frames << 2, slotIndex);
var keyMapEnumerator = values.GetEnumerator();
keyMapEnumerator.MoveNext();
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
string color = (string)keyMap["color"];
float r = ToColor(color, 0);
float g = ToColor(color, 1);
float b = ToColor(color, 2);
float a = ToColor(color, 3);
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, r, g, b, a);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
color = (string)nextMap["color"];
float nr = ToColor(color, 0);
float ng = ToColor(color, 1);
float nb = ToColor(color, 2);
float na = ToColor(color, 3);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, r, nr, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, g, ng, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 2, time, time2, b, nb, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 3, time, time2, a, na, 1);
}
time = time2;
r = nr;
g = ng;
b = nb;
a = na;
keyMap = nextMap;
}
timelines.Add(timeline);
} else if (timelineName == "rgb") {
var timeline = new RGBTimeline(frames, frames * 3, slotIndex);
var keyMapEnumerator = values.GetEnumerator();
keyMapEnumerator.MoveNext();
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
string color = (string)keyMap["color"];
float r = ToColor(color, 0, 6);
float g = ToColor(color, 1, 6);
float b = ToColor(color, 2, 6);
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, r, g, b);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
color = (string)nextMap["color"];
float nr = ToColor(color, 0, 6);
float ng = ToColor(color, 1, 6);
float nb = ToColor(color, 2, 6);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, r, nr, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, g, ng, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 2, time, time2, b, nb, 1);
}
time = time2;
r = nr;
g = ng;
b = nb;
keyMap = nextMap;
}
timelines.Add(timeline);
} else if (timelineName == "alpha") {
var keyMapEnumerator = values.GetEnumerator();
keyMapEnumerator.MoveNext();
timelines.Add(ReadTimeline(ref keyMapEnumerator, new AlphaTimeline(frames, frames, slotIndex), 0, 1));
} else if (timelineName == "rgba2") {
var timeline = new RGBA2Timeline(frames, frames * 7, slotIndex);
var keyMapEnumerator = values.GetEnumerator();
keyMapEnumerator.MoveNext();
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
string color = (string)keyMap["light"];
float r = ToColor(color, 0);
float g = ToColor(color, 1);
float b = ToColor(color, 2);
float a = ToColor(color, 3);
color = (string)keyMap["dark"];
float r2 = ToColor(color, 0, 6);
float g2 = ToColor(color, 1, 6);
float b2 = ToColor(color, 2, 6);
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, r, g, b, a, r2, g2, b2);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
color = (string)nextMap["light"];
float nr = ToColor(color, 0);
float ng = ToColor(color, 1);
float nb = ToColor(color, 2);
float na = ToColor(color, 3);
color = (string)nextMap["dark"];
float nr2 = ToColor(color, 0, 6);
float ng2 = ToColor(color, 1, 6);
float nb2 = ToColor(color, 2, 6);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, r, nr, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, g, ng, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 2, time, time2, b, nb, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 3, time, time2, a, na, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 4, time, time2, r2, nr2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 5, time, time2, g2, ng2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 6, time, time2, b2, nb2, 1);
}
time = time2;
r = nr;
g = ng;
b = nb;
a = na;
r2 = nr2;
g2 = ng2;
b2 = nb2;
keyMap = nextMap;
}
timelines.Add(timeline);
} else if (timelineName == "rgb2") {
var timeline = new RGB2Timeline(frames, frames * 6, slotIndex);
var keyMapEnumerator = values.GetEnumerator();
keyMapEnumerator.MoveNext();
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
string color = (string)keyMap["light"];
float r = ToColor(color, 0, 6);
float g = ToColor(color, 1, 6);
float b = ToColor(color, 2, 6);
color = (string)keyMap["dark"];
float r2 = ToColor(color, 0, 6);
float g2 = ToColor(color, 1, 6);
float b2 = ToColor(color, 2, 6);
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, r, g, b, r2, g2, b2);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
color = (string)nextMap["light"];
float nr = ToColor(color, 0, 6);
float ng = ToColor(color, 1, 6);
float nb = ToColor(color, 2, 6);
color = (string)nextMap["dark"];
float nr2 = ToColor(color, 0, 6);
float ng2 = ToColor(color, 1, 6);
float nb2 = ToColor(color, 2, 6);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, r, nr, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, g, ng, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 2, time, time2, b, nb, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 3, time, time2, r2, nr2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 4, time, time2, g2, ng2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 5, time, time2, b2, nb2, 1);
}
time = time2;
r = nr;
g = ng;
b = nb;
r2 = nr2;
g2 = ng2;
b2 = nb2;
keyMap = nextMap;
}
timelines.Add(timeline);
} else
throw new Exception("Invalid timeline type for a slot: " + timelineName + " (" + slotName + ")");
}
}
}
// Bone timelines.
if (map.ContainsKey("bones")) {
foreach (KeyValuePair entry in (Dictionary)map["bones"]) {
string boneName = entry.Key;
int boneIndex = -1;
var bones = skeletonData.bones.Items;
for (int i = 0, n = skeletonData.bones.Count; i < n; i++) {
if (bones[i].name == boneName) {
boneIndex = i;
break;
}
}
if (boneIndex == -1) throw new Exception("Bone not found: " + boneName);
var timelineMap = (Dictionary)entry.Value;
foreach (KeyValuePair timelineEntry in timelineMap) {
var values = (List)timelineEntry.Value;
var keyMapEnumerator = values.GetEnumerator();
if (!keyMapEnumerator.MoveNext()) continue;
int frames = values.Count;
var timelineName = (string)timelineEntry.Key;
if (timelineName == "rotate")
timelines.Add(ReadTimeline(ref keyMapEnumerator, new RotateTimeline(frames, frames, boneIndex), 0, 1));
else if (timelineName == "translate") {
TranslateTimeline timeline = new TranslateTimeline(frames, frames << 1, boneIndex);
timelines.Add(ReadTimeline(ref keyMapEnumerator, timeline, "x", "y", 0, scale));
} else if (timelineName == "translatex") {
timelines
.Add(ReadTimeline(ref keyMapEnumerator, new TranslateXTimeline(frames, frames, boneIndex), 0, scale));
} else if (timelineName == "translatey") {
timelines
.Add(ReadTimeline(ref keyMapEnumerator, new TranslateYTimeline(frames, frames, boneIndex), 0, scale));
} else if (timelineName == "scale") {
ScaleTimeline timeline = new ScaleTimeline(frames, frames << 1, boneIndex);
timelines.Add(ReadTimeline(ref keyMapEnumerator, timeline, "x", "y", 1, 1));
} else if (timelineName == "scalex")
timelines.Add(ReadTimeline(ref keyMapEnumerator, new ScaleXTimeline(frames, frames, boneIndex), 1, 1));
else if (timelineName == "scaley")
timelines.Add(ReadTimeline(ref keyMapEnumerator, new ScaleYTimeline(frames, frames, boneIndex), 1, 1));
else if (timelineName == "shear") {
ShearTimeline timeline = new ShearTimeline(frames, frames << 1, boneIndex);
timelines.Add(ReadTimeline(ref keyMapEnumerator, timeline, "x", "y", 0, 1));
} else if (timelineName == "shearx")
timelines.Add(ReadTimeline(ref keyMapEnumerator, new ShearXTimeline(frames, frames, boneIndex), 0, 1));
else if (timelineName == "sheary")
timelines.Add(ReadTimeline(ref keyMapEnumerator, new ShearYTimeline(frames, frames, boneIndex), 0, 1));
else
throw new Exception("Invalid timeline type for a bone: " + timelineName + " (" + boneName + ")");
}
}
}
// IK constraint timelines.
if (map.ContainsKey("ik")) {
foreach (KeyValuePair timelineMap in (Dictionary)map["ik"]) {
var values = (List)timelineMap.Value;
var keyMapEnumerator = values.GetEnumerator();
if (!keyMapEnumerator.MoveNext()) continue;
var keyMap = (Dictionary)keyMapEnumerator.Current;
IkConstraintData constraint = skeletonData.FindIkConstraint(timelineMap.Key);
IkConstraintTimeline timeline = new IkConstraintTimeline(values.Count, values.Count << 1,
skeletonData.IkConstraints.IndexOf(constraint));
float time = GetFloat(keyMap, "time", 0);
float mix = GetFloat(keyMap, "mix", 1), softness = GetFloat(keyMap, "softness", 0) * scale;
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, mix, softness, GetBoolean(keyMap, "bendPositive", true) ? 1 : -1,
GetBoolean(keyMap, "compress", false), GetBoolean(keyMap, "stretch", false));
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
float mix2 = GetFloat(nextMap, "mix", 1), softness2 = GetFloat(nextMap, "softness", 0) * scale;
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, mix, mix2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, softness, softness2, scale);
}
time = time2;
mix = mix2;
softness = softness2;
keyMap = nextMap;
}
timelines.Add(timeline);
}
}
// Transform constraint timelines.
if (map.ContainsKey("transform")) {
foreach (KeyValuePair timelineMap in (Dictionary)map["transform"]) {
var values = (List)timelineMap.Value;
var keyMapEnumerator = values.GetEnumerator();
if (!keyMapEnumerator.MoveNext()) continue;
var keyMap = (Dictionary)keyMapEnumerator.Current;
TransformConstraintData constraint = skeletonData.FindTransformConstraint(timelineMap.Key);
TransformConstraintTimeline timeline = new TransformConstraintTimeline(values.Count, values.Count * 6,
skeletonData.TransformConstraints.IndexOf(constraint));
float time = GetFloat(keyMap, "time", 0);
float mixRotate = GetFloat(keyMap, "mixRotate", 1), mixShearY = GetFloat(keyMap, "mixShearY", 1);
float mixX = GetFloat(keyMap, "mixX", 1), mixY = GetFloat(keyMap, "mixY", mixX);
float mixScaleX = GetFloat(keyMap, "mixScaleX", 1), mixScaleY = GetFloat(keyMap, "mixScaleY", mixScaleX);
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, mixRotate, mixX, mixY, mixScaleX, mixScaleY, mixShearY);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
float mixRotate2 = GetFloat(nextMap, "mixRotate", 1), mixShearY2 = GetFloat(nextMap, "mixShearY", 1);
float mixX2 = GetFloat(nextMap, "mixX", 1), mixY2 = GetFloat(nextMap, "mixY", mixX2);
float mixScaleX2 = GetFloat(nextMap, "mixScaleX", 1), mixScaleY2 = GetFloat(nextMap, "mixScaleY", mixScaleX2);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, mixRotate, mixRotate2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, mixX, mixX2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 2, time, time2, mixY, mixY2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 3, time, time2, mixScaleX, mixScaleX2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 4, time, time2, mixScaleY, mixScaleY2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 5, time, time2, mixShearY, mixShearY2, 1);
}
time = time2;
mixRotate = mixRotate2;
mixX = mixX2;
mixY = mixY2;
mixScaleX = mixScaleX2;
mixScaleY = mixScaleY2;
mixScaleX = mixScaleX2;
keyMap = nextMap;
}
timelines.Add(timeline);
}
}
// Path constraint timelines.
if (map.ContainsKey("path")) {
foreach (KeyValuePair constraintMap in (Dictionary)map["path"]) {
PathConstraintData constraint = skeletonData.FindPathConstraint(constraintMap.Key);
if (constraint == null) throw new Exception("Path constraint not found: " + constraintMap.Key);
int constraintIndex = skeletonData.pathConstraints.IndexOf(constraint);
var timelineMap = (Dictionary)constraintMap.Value;
foreach (KeyValuePair timelineEntry in timelineMap) {
var values = (List)timelineEntry.Value;
var keyMapEnumerator = values.GetEnumerator();
if (!keyMapEnumerator.MoveNext()) continue;
int frames = values.Count;
var timelineName = (string)timelineEntry.Key;
if (timelineName == "position") {
CurveTimeline1 timeline = new PathConstraintPositionTimeline(frames, frames, constraintIndex);
timelines.Add(ReadTimeline(ref keyMapEnumerator, timeline, 0, constraint.positionMode == PositionMode.Fixed ? scale : 1));
} else if (timelineName == "spacing") {
CurveTimeline1 timeline = new PathConstraintSpacingTimeline(frames, frames, constraintIndex);
timelines.Add(ReadTimeline(ref keyMapEnumerator, timeline, 0,
constraint.spacingMode == SpacingMode.Length || constraint.spacingMode == SpacingMode.Fixed ? scale : 1));
} else if (timelineName == "mix") {
PathConstraintMixTimeline timeline = new PathConstraintMixTimeline(frames, frames * 3, constraintIndex);
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
float mixRotate = GetFloat(keyMap, "mixRotate", 1);
float mixX = GetFloat(keyMap, "mixX", 1), mixY = GetFloat(keyMap, "mixY", mixX);
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, mixRotate, mixX, mixY);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
float mixRotate2 = GetFloat(nextMap, "mixRotate", 1);
float mixX2 = GetFloat(nextMap, "mixX", 1), mixY2 = GetFloat(nextMap, "mixY", mixX2);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, mixRotate, mixRotate2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, mixX, mixX2, 1);
bezier = ReadCurve(curve, timeline, bezier, frame, 2, time, time2, mixY, mixY2, 1);
}
time = time2;
mixRotate = mixRotate2;
mixX = mixX2;
mixY = mixY2;
keyMap = nextMap;
}
timelines.Add(timeline);
}
}
}
}
// Deform timelines.
if (map.ContainsKey("deform")) {
foreach (KeyValuePair deformMap in (Dictionary)map["deform"]) {
Skin skin = skeletonData.FindSkin(deformMap.Key);
foreach (KeyValuePair slotMap in (Dictionary)deformMap.Value) {
int slotIndex = FindSlotIndex(skeletonData, slotMap.Key);
foreach (KeyValuePair timelineMap in (Dictionary)slotMap.Value) {
var values = (List)timelineMap.Value;
var keyMapEnumerator = values.GetEnumerator();
if (!keyMapEnumerator.MoveNext()) continue;
var keyMap = (Dictionary)keyMapEnumerator.Current;
VertexAttachment attachment = (VertexAttachment)skin.GetAttachment(slotIndex, timelineMap.Key);
if (attachment == null) throw new Exception("Deform attachment not found: " + timelineMap.Key);
bool weighted = attachment.bones != null;
float[] vertices = attachment.vertices;
int deformLength = weighted ? (vertices.Length / 3) << 1 : vertices.Length;
DeformTimeline timeline = new DeformTimeline(values.Count, values.Count, slotIndex, attachment);
float time = GetFloat(keyMap, "time", 0);
for (int frame = 0, bezier = 0; ; frame++) {
float[] deform;
if (!keyMap.ContainsKey("vertices")) {
deform = weighted ? new float[deformLength] : vertices;
} else {
deform = new float[deformLength];
int start = GetInt(keyMap, "offset", 0);
float[] verticesValue = GetFloatArray(keyMap, "vertices", 1);
Array.Copy(verticesValue, 0, deform, start, verticesValue.Length);
if (scale != 1) {
for (int i = start, n = i + verticesValue.Length; i < n; i++)
deform[i] *= scale;
}
if (!weighted) {
for (int i = 0; i < deformLength; i++)
deform[i] += vertices[i];
}
}
timeline.SetFrame(frame, time, deform);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
break;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, 0, 1, 1);
}
time = time2;
keyMap = nextMap;
}
timelines.Add(timeline);
}
}
}
}
// Draw order timeline.
if (map.ContainsKey("drawOrder")) {
var values = (List)map["drawOrder"];
var timeline = new DrawOrderTimeline(values.Count);
int slotCount = skeletonData.slots.Count;
int frame = 0;
foreach (Dictionary drawOrderMap in values) {
int[] drawOrder = null;
if (drawOrderMap.ContainsKey("offsets")) {
drawOrder = new int[slotCount];
for (int i = slotCount - 1; i >= 0; i--)
drawOrder[i] = -1;
var offsets = (List)drawOrderMap["offsets"];
int[] unchanged = new int[slotCount - offsets.Count];
int originalIndex = 0, unchangedIndex = 0;
foreach (Dictionary offsetMap in offsets) {
int slotIndex = FindSlotIndex(skeletonData, (string)offsetMap["slot"]);
// Collect unchanged items.
while (originalIndex != slotIndex)
unchanged[unchangedIndex++] = originalIndex++;
// Set changed items.
int index = originalIndex + (int)(float)offsetMap["offset"];
drawOrder[index] = originalIndex++;
}
// Collect remaining unchanged items.
while (originalIndex < slotCount)
unchanged[unchangedIndex++] = originalIndex++;
// Fill in unchanged items.
for (int i = slotCount - 1; i >= 0; i--)
if (drawOrder[i] == -1) drawOrder[i] = unchanged[--unchangedIndex];
}
timeline.SetFrame(frame, GetFloat(drawOrderMap, "time", 0), drawOrder);
++frame;
}
timelines.Add(timeline);
}
// Event timeline.
if (map.ContainsKey("events")) {
var eventsMap = (List)map["events"];
var timeline = new EventTimeline(eventsMap.Count);
int frame = 0;
foreach (Dictionary eventMap in eventsMap) {
EventData eventData = skeletonData.FindEvent((string)eventMap["name"]);
if (eventData == null) throw new Exception("Event not found: " + eventMap["name"]);
var e = new Event(GetFloat(eventMap, "time", 0), eventData) {
intValue = GetInt(eventMap, "int", eventData.Int),
floatValue = GetFloat(eventMap, "float", eventData.Float),
stringValue = GetString(eventMap, "string", eventData.String)
};
if (e.data.AudioPath != null) {
e.volume = GetFloat(eventMap, "volume", eventData.Volume);
e.balance = GetFloat(eventMap, "balance", eventData.Balance);
}
timeline.SetFrame(frame, e);
++frame;
}
timelines.Add(timeline);
}
timelines.TrimExcess();
float duration = 0;
var items = timelines.Items;
for (int i = 0, n = timelines.Count; i < n; i++)
duration = Math.Max(duration, items[i].Duration);
skeletonData.animations.Add(new Animation(name, timelines, duration));
}
static Timeline ReadTimeline (ref List.Enumerator keyMapEnumerator, CurveTimeline1 timeline, float defaultValue, float scale) {
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
float value = GetFloat(keyMap, "value", defaultValue) * scale;
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, value);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
return timeline;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
float value2 = GetFloat(nextMap, "value", defaultValue) * scale;
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, value, value2, scale);
}
time = time2;
value = value2;
keyMap = nextMap;
}
}
static Timeline ReadTimeline (ref List.Enumerator keyMapEnumerator, CurveTimeline2 timeline, String name1, String name2, float defaultValue,
float scale) {
var keyMap = (Dictionary)keyMapEnumerator.Current;
float time = GetFloat(keyMap, "time", 0);
float value1 = GetFloat(keyMap, name1, defaultValue) * scale, value2 = GetFloat(keyMap, name2, defaultValue) * scale;
for (int frame = 0, bezier = 0; ; frame++) {
timeline.SetFrame(frame, time, value1, value2);
if (!keyMapEnumerator.MoveNext()) {
timeline.Shrink(bezier);
return timeline;
}
var nextMap = (Dictionary)keyMapEnumerator.Current;
float time2 = GetFloat(nextMap, "time", 0);
float nvalue1 = GetFloat(nextMap, name1, defaultValue) * scale, nvalue2 = GetFloat(nextMap, name2, defaultValue) * scale;
if (keyMap.ContainsKey("curve")) {
object curve = keyMap["curve"];
bezier = ReadCurve(curve, timeline, bezier, frame, 0, time, time2, value1, nvalue1, scale);
bezier = ReadCurve(curve, timeline, bezier, frame, 1, time, time2, value2, nvalue2, scale);
}
time = time2;
value1 = nvalue1;
value2 = nvalue2;
keyMap = nextMap;
}
}
static int ReadCurve (object curve, CurveTimeline timeline, int bezier, int frame, int value, float time1, float time2,
float value1, float value2, float scale) {
string curveString = curve as string;
if (curveString != null) {
if (curveString == "stepped") timeline.SetStepped(frame);
return bezier;
}
var curveValues = (List)curve;
int i = value << 2;
float cx1 = (float)curveValues[i];
float cy1 = (float)curveValues[i + 1] * scale;
float cx2 = (float)curveValues[i + 2];
float cy2 = (float)curveValues[i + 3] * scale;
SetBezier(timeline, frame, value, bezier, time1, value1, cx1, cy1, cx2, cy2, time2, value2);
return bezier + 1;
}
static void SetBezier (CurveTimeline timeline, int frame, int value, int bezier, float time1, float value1, float cx1, float cy1,
float cx2, float cy2, float time2, float value2) {
timeline.SetBezier(bezier, frame, value, time1, value1, cx1, cy1, cx2, cy2, time2, value2);
}
static float[] GetFloatArray (Dictionary map, string name, float scale) {
var list = (List)map[name];
var values = new float[list.Count];
if (scale == 1) {
for (int i = 0, n = list.Count; i < n; i++)
values[i] = (float)list[i];
} else {
for (int i = 0, n = list.Count; i < n; i++)
values[i] = (float)list[i] * scale;
}
return values;
}
static int[] GetIntArray (Dictionary map, string name) {
var list = (List)map[name];
var values = new int[list.Count];
for (int i = 0, n = list.Count; i < n; i++)
values[i] = (int)(float)list[i];
return values;
}
static float GetFloat (Dictionary map, string name, float defaultValue) {
if (!map.ContainsKey(name)) return defaultValue;
return (float)map[name];
}
static int GetInt (Dictionary map, string name, int defaultValue) {
if (!map.ContainsKey(name)) return defaultValue;
return (int)(float)map[name];
}
static bool GetBoolean (Dictionary map, string name, bool defaultValue) {
if (!map.ContainsKey(name)) return defaultValue;
return (bool)map[name];
}
static string GetString (Dictionary map, string name, string defaultValue) {
if (!map.ContainsKey(name)) return defaultValue;
return (string)map[name];
}
static float ToColor (string hexString, int colorIndex, int expectedLength = 8) {
if (hexString.Length != expectedLength)
throw new ArgumentException("Color hexidecimal length must be " + expectedLength + ", recieved: " + hexString, "hexString");
return Convert.ToInt32(hexString.Substring(colorIndex * 2, 2), 16) / (float)255;
}
}
}