This commit is contained in:
2026-06-16 16:16:59 +07:00
73 changed files with 52354 additions and 396 deletions

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.idea/.idea.BABA_YAGA/.idea/.gitignore generated vendored Normal file
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# Default ignored files
/shelf/
/workspace.xml
# Rider ignored files
/.idea.BABA_YAGA.iml
/modules.xml
/contentModel.xml
/projectSettingsUpdater.xml
# Editor-based HTTP Client requests
/httpRequests/
# Ignored default folder with query files
/queries/
# Datasource local storage ignored files
/dataSources/
/dataSources.local.xml

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<?xml version="1.0"?>
<doc>
<assembly>
<name>DOTweenEditor</name>
</assembly>
<members>
<member name="T:DG.DOTweenEditor.EditorCompatibilityUtils">
<summary>
Contains compatibility methods taken from DemiEditor (for when DOTween is without it)
</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorCompatibilityUtils.FindObjectOfType``1(System.Boolean)">
<summary>
Warning: some versions of this method don't have the includeInactive parameter so it won't be taken into account
</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorCompatibilityUtils.FindObjectOfType(System.Type,System.Boolean)">
<summary>
Warning: some versions of this method don't have the includeInactive parameter so it won't be taken into account
</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorCompatibilityUtils.FindObjectsOfType``1(System.Boolean)">
<summary>
Warning: some versions of this method don't have the includeInactive parameter so it won't be taken into account
</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorCompatibilityUtils.FindObjectsOfType(System.Type,System.Boolean)">
<summary>
Warning: some versions of this method don't have the includeInactive parameter so it won't be taken into account
</summary>
</member>
<member name="M:DG.DOTweenEditor.DOTweenEditorPreview.Start(System.Action)">
<summary>
Starts the update loop of tween in the editor. Has no effect during playMode.
</summary>
<param name="onPreviewUpdated">Eventual callback to call after every update</param>
</member>
<member name="M:DG.DOTweenEditor.DOTweenEditorPreview.Stop(System.Boolean,System.Boolean)">
<summary>
Stops the update loop and clears the onPreviewUpdated callback.
</summary>
<param name="resetTweenTargets">If TRUE also resets the tweened objects to their original state.
Note that this works by calling Rewind on all tweens, so it will work correctly
only if you have a single tween type per object and it wasn't killed</param>
<param name="clearTweens">If TRUE also kills any cached tween</param>
</member>
<member name="M:DG.DOTweenEditor.DOTweenEditorPreview.PrepareTweenForPreview(DG.Tweening.Tween,System.Boolean,System.Boolean,System.Boolean)">
<summary>
Readies the tween for editor preview by setting its UpdateType to Manual plus eventual extra settings.
</summary>
<param name="t">The tween to ready</param>
<param name="clearCallbacks">If TRUE (recommended) removes all callbacks (OnComplete/Rewind/etc)</param>
<param name="preventAutoKill">If TRUE prevents the tween from being auto-killed at completion</param>
<param name="andPlay">If TRUE starts playing the tween immediately</param>
</member>
<member name="F:DG.DOTweenEditor.EditorVersion.Version">
<summary>Full major version + first minor version (ex: 2018.1f)</summary>
</member>
<member name="F:DG.DOTweenEditor.EditorVersion.MajorVersion">
<summary>Major version</summary>
</member>
<member name="F:DG.DOTweenEditor.EditorVersion.MinorVersion">
<summary>First minor version (ex: in 2018.1 it would be 1)</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorUtils.SetEditorTexture(UnityEngine.Texture2D,UnityEngine.FilterMode,System.Int32)">
<summary>
Checks that the given editor texture use the correct import settings,
and applies them if they're incorrect.
</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorUtils.DOTweenSetupRequired">
<summary>
Returns TRUE if setup is required
</summary>
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<summary>
Returns TRUE if the file/directory at the given path exists.
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<returns></returns>
</member>
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Converts the given project-relative path to a full path,
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</summary>
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<summary>
Converts the given full path to a path usable with AssetDatabase methods
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</summary>
</member>
<member name="M:DG.DOTweenEditor.EditorUtils.ConnectToSourceAsset``1(System.String,System.Boolean)">
<summary>
Connects to a <see cref="T:UnityEngine.ScriptableObject"/> asset.
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Otherwise, either returns NULL or automatically creates it before loading and returning it
(depending on the given parameters).
</summary>
<typeparam name="T">Asset type</typeparam>
<param name="adbFilePath">File path (relative to Unity's project folder)</param>
<param name="createIfMissing">If TRUE and the requested asset doesn't exist, forces its creation</param>
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Full path for the given loaded assembly, assembly file included
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Adds the given global define if it's not already present
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Removes the given global define if it's present
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Returns TRUE if the given global define is present in all the <see cref="T:UnityEditor.BuildTargetGroup"/>
or only in the given <see cref="T:UnityEditor.BuildTargetGroup"/>, depending on passed parameters.<para/>
</summary>
<param name="id"></param>
<param name="buildTargetGroup"><see cref="T:UnityEditor.BuildTargetGroup"/>to use. Leave NULL to check in all of them.</param>
</member>
<member name="T:DG.DOTweenEditor.DOTweenDefines">
<summary>
Not used as menu item anymore, but as a utility function
</summary>
</member>
<member name="M:DG.DOTweenEditor.DOTweenDefines.RefreshDOTweenSettings(DG.Tweening.Core.DOTweenSettings)">
<summary>Sets the modules bool values to the current defines state</summary>
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<summary>Refreshes the enabled state of all defines</summary>
</member>
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<summary>Applies the guiEnabled value state to each define, adding or removing them based on that</summary>
</member>
<member name="M:DG.DOTweenEditor.DOTweenDefines.RemoveAll">
<summary>Removes all DOTween defines including the ones for external assets</summary>
</member>
<member name="M:DG.DOTweenEditor.DOTweenDefines.RemoveAllLegacy">
<summary>Removes all legacy defines</summary>
</member>
<member name="M:DG.DOTweenEditor.DOTweenDefines.Def.Remove">
<summary>Removes the define if present</summary>
</member>
<member name="M:DG.DOTweenEditor.DOTweenDefines.Def.Add">
<summary>Adds the define if it's not already present</summary>
</member>
<member name="F:DG.DOTweenEditor.UnityEditorVersion.Version">
<summary>Full major version + first minor version (ex: 2018.1f)</summary>
</member>
<member name="F:DG.DOTweenEditor.UnityEditorVersion.MajorVersion">
<summary>Major version</summary>
</member>
<member name="F:DG.DOTweenEditor.UnityEditorVersion.MinorVersion">
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<?xml version="1.0"?>
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<members>
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This class and its whole library are deleted the first time DOTween's setup is run after an upgrade (or after a new install).
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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
#if !DOTWEEN_NOAUDIO // MODULE_MARKER
using System;
using DG.Tweening.Core;
using DG.Tweening.Plugins.Options;
using UnityEngine;
using UnityEngine.Audio; // Required for AudioMixer
#pragma warning disable 1591
namespace DG.Tweening
{
public static class DOTweenModuleAudio
{
#region Shortcuts
#region Audio
/// <summary>Tweens an AudioSource's volume to the given value.
/// Also stores the AudioSource as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach (0 to 1)</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DOFade(this AudioSource target, float endValue, float duration)
{
if (endValue < 0) endValue = 0;
else if (endValue > 1) endValue = 1;
TweenerCore<float, float, FloatOptions> t = DOTween.To(() => target.volume, x => target.volume = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens an AudioSource's pitch to the given value.
/// Also stores the AudioSource as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DOPitch(this AudioSource target, float endValue, float duration)
{
TweenerCore<float, float, FloatOptions> t = DOTween.To(() => target.pitch, x => target.pitch = x, endValue, duration);
t.SetTarget(target);
return t;
}
#endregion
#region AudioMixer
/// <summary>Tweens an AudioMixer's exposed float to the given value.
/// Also stores the AudioMixer as the tween's target so it can be used for filtered operations.
/// Note that you need to manually expose a float in an AudioMixerGroup in order to be able to tween it from an AudioMixer.</summary>
/// <param name="floatName">Name given to the exposed float to set</param>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DOSetFloat(this AudioMixer target, string floatName, float endValue, float duration)
{
TweenerCore<float, float, FloatOptions> t = DOTween.To(()=> {
float currVal;
target.GetFloat(floatName, out currVal);
return currVal;
}, x=> target.SetFloat(floatName, x), endValue, duration);
t.SetTarget(target);
return t;
}
#region Operation Shortcuts
/// <summary>
/// Completes all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens completed
/// (meaning the tweens that don't have infinite loops and were not already complete)
/// </summary>
/// <param name="withCallbacks">For Sequences only: if TRUE also internal Sequence callbacks will be fired,
/// otherwise they will be ignored</param>
public static int DOComplete(this AudioMixer target, bool withCallbacks = false)
{
return DOTween.Complete(target, withCallbacks);
}
/// <summary>
/// Kills all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens killed.
/// </summary>
/// <param name="complete">If TRUE completes the tween before killing it</param>
public static int DOKill(this AudioMixer target, bool complete = false)
{
return DOTween.Kill(target, complete);
}
/// <summary>
/// Flips the direction (backwards if it was going forward or viceversa) of all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens flipped.
/// </summary>
public static int DOFlip(this AudioMixer target)
{
return DOTween.Flip(target);
}
/// <summary>
/// Sends to the given position all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens involved.
/// </summary>
/// <param name="to">Time position to reach
/// (if higher than the whole tween duration the tween will simply reach its end)</param>
/// <param name="andPlay">If TRUE will play the tween after reaching the given position, otherwise it will pause it</param>
public static int DOGoto(this AudioMixer target, float to, bool andPlay = false)
{
return DOTween.Goto(target, to, andPlay);
}
/// <summary>
/// Pauses all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens paused.
/// </summary>
public static int DOPause(this AudioMixer target)
{
return DOTween.Pause(target);
}
/// <summary>
/// Plays all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens played.
/// </summary>
public static int DOPlay(this AudioMixer target)
{
return DOTween.Play(target);
}
/// <summary>
/// Plays backwards all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens played.
/// </summary>
public static int DOPlayBackwards(this AudioMixer target)
{
return DOTween.PlayBackwards(target);
}
/// <summary>
/// Plays forward all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens played.
/// </summary>
public static int DOPlayForward(this AudioMixer target)
{
return DOTween.PlayForward(target);
}
/// <summary>
/// Restarts all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens restarted.
/// </summary>
public static int DORestart(this AudioMixer target)
{
return DOTween.Restart(target);
}
/// <summary>
/// Rewinds all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens rewinded.
/// </summary>
public static int DORewind(this AudioMixer target)
{
return DOTween.Rewind(target);
}
/// <summary>
/// Smoothly rewinds all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens rewinded.
/// </summary>
public static int DOSmoothRewind(this AudioMixer target)
{
return DOTween.SmoothRewind(target);
}
/// <summary>
/// Toggles the paused state (plays if it was paused, pauses if it was playing) of all tweens that have this target as a reference
/// (meaning tweens that were started from this target, or that had this target added as an Id)
/// and returns the total number of tweens involved.
/// </summary>
public static int DOTogglePause(this AudioMixer target)
{
return DOTween.TogglePause(target);
}
#endregion
#endregion
#endregion
}
}
#endif

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using UnityEngine;
#if DOTWEEN_EPO || EPO_DOTWEEN // MODULE_MARKER
using EPOOutline;
using DG.Tweening.Plugins.Options;
using DG.Tweening;
using DG.Tweening.Core;
namespace DG.Tweening
{
public static class DOTweenModuleEPOOutline
{
public static int DOKill(this SerializedPass target, bool complete)
{
return DOTween.Kill(target, complete);
}
public static TweenerCore<float, float, FloatOptions> DOFloat(this SerializedPass target, string propertyName, float endValue, float duration)
{
var tweener = DOTween.To(() => target.GetFloat(propertyName), x => target.SetFloat(propertyName, x), endValue, duration);
tweener.SetOptions(true).SetTarget(target);
return tweener;
}
public static TweenerCore<Color, Color, ColorOptions> DOFade(this SerializedPass target, string propertyName, float endValue, float duration)
{
var tweener = DOTween.ToAlpha(() => target.GetColor(propertyName), x => target.SetColor(propertyName, x), endValue, duration);
tweener.SetOptions(true).SetTarget(target);
return tweener;
}
public static TweenerCore<Color, Color, ColorOptions> DOColor(this SerializedPass target, string propertyName, Color endValue, float duration)
{
var tweener = DOTween.To(() => target.GetColor(propertyName), x => target.SetColor(propertyName, x), endValue, duration);
tweener.SetOptions(false).SetTarget(target);
return tweener;
}
public static TweenerCore<Vector4, Vector4, VectorOptions> DOVector(this SerializedPass target, string propertyName, Vector4 endValue, float duration)
{
var tweener = DOTween.To(() => target.GetVector(propertyName), x => target.SetVector(propertyName, x), endValue, duration);
tweener.SetOptions(false).SetTarget(target);
return tweener;
}
public static TweenerCore<float, float, FloatOptions> DOFloat(this SerializedPass target, int propertyId, float endValue, float duration)
{
var tweener = DOTween.To(() => target.GetFloat(propertyId), x => target.SetFloat(propertyId, x), endValue, duration);
tweener.SetOptions(true).SetTarget(target);
return tweener;
}
public static TweenerCore<Color, Color, ColorOptions> DOFade(this SerializedPass target, int propertyId, float endValue, float duration)
{
var tweener = DOTween.ToAlpha(() => target.GetColor(propertyId), x => target.SetColor(propertyId, x), endValue, duration);
tweener.SetOptions(true).SetTarget(target);
return tweener;
}
public static TweenerCore<Color, Color, ColorOptions> DOColor(this SerializedPass target, int propertyId, Color endValue, float duration)
{
var tweener = DOTween.To(() => target.GetColor(propertyId), x => target.SetColor(propertyId, x), endValue, duration);
tweener.SetOptions(false).SetTarget(target);
return tweener;
}
public static TweenerCore<Vector4, Vector4, VectorOptions> DOVector(this SerializedPass target, int propertyId, Vector4 endValue, float duration)
{
var tweener = DOTween.To(() => target.GetVector(propertyId), x => target.SetVector(propertyId, x), endValue, duration);
tweener.SetOptions(false).SetTarget(target);
return tweener;
}
public static int DOKill(this Outlinable.OutlineProperties target, bool complete = false)
{
return DOTween.Kill(target, complete);
}
public static int DOKill(this Outliner target, bool complete = false)
{
return DOTween.Kill(target, complete);
}
/// <summary>
/// Controls the alpha (transparency) of the outline
/// </summary>
public static TweenerCore<Color, Color, ColorOptions> DOFade(this Outlinable.OutlineProperties target, float endValue, float duration)
{
var tweener = DOTween.ToAlpha(() => target.Color, x => target.Color = x, endValue, duration);
tweener.SetOptions(true).SetTarget(target);
return tweener;
}
/// <summary>
/// Controls the color of the outline
/// </summary>
public static TweenerCore<Color, Color, ColorOptions> DOColor(this Outlinable.OutlineProperties target, Color endValue, float duration)
{
var tweener = DOTween.To(() => target.Color, x => target.Color = x, endValue, duration);
tweener.SetOptions(false).SetTarget(target);
return tweener;
}
/// <summary>
/// Controls the amount of blur applied to the outline
/// </summary>
public static TweenerCore<float, float, FloatOptions> DOBlurShift(this Outlinable.OutlineProperties target, float endValue, float duration, bool snapping = false)
{
var tweener = DOTween.To(() => target.BlurShift, x => target.BlurShift = x, endValue, duration);
tweener.SetOptions(snapping).SetTarget(target);
return tweener;
}
/// <summary>
/// Controls the amount of blur applied to the outline
/// </summary>
public static TweenerCore<float, float, FloatOptions> DOBlurShift(this Outliner target, float endValue, float duration, bool snapping = false)
{
var tweener = DOTween.To(() => target.BlurShift, x => target.BlurShift = x, endValue, duration);
tweener.SetOptions(snapping).SetTarget(target);
return tweener;
}
/// <summary>
/// Controls the amount of dilation applied to the outline
/// </summary>
public static TweenerCore<float, float, FloatOptions> DODilateShift(this Outlinable.OutlineProperties target, float endValue, float duration, bool snapping = false)
{
var tweener = DOTween.To(() => target.DilateShift, x => target.DilateShift = x, endValue, duration);
tweener.SetOptions(snapping).SetTarget(target);
return tweener;
}
/// <summary>
/// Controls the amount of dilation applied to the outline
/// </summary>
public static TweenerCore<float, float, FloatOptions> DODilateShift(this Outliner target, float endValue, float duration, bool snapping = false)
{
var tweener = DOTween.To(() => target.DilateShift, x => target.DilateShift = x, endValue, duration);
tweener.SetOptions(snapping).SetTarget(target);
return tweener;
}
}
}
#endif

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
#if !DOTWEEN_NOPHYSICS // MODULE_MARKER
using System;
using DG.Tweening.Core;
using DG.Tweening.Core.Enums;
using DG.Tweening.Plugins;
using DG.Tweening.Plugins.Core.PathCore;
using DG.Tweening.Plugins.Options;
using UnityEngine;
#pragma warning disable 1591
namespace DG.Tweening
{
public static class DOTweenModulePhysics
{
#region Shortcuts
#region Rigidbody
/// <summary>Tweens a Rigidbody's position to the given value.
/// Also stores the rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMove(this Rigidbody target, Vector3 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody's X position to the given value.
/// Also stores the rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMoveX(this Rigidbody target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, new Vector3(endValue, 0, 0), duration);
t.SetOptions(AxisConstraint.X, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody's Y position to the given value.
/// Also stores the rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMoveY(this Rigidbody target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, new Vector3(0, endValue, 0), duration);
t.SetOptions(AxisConstraint.Y, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody's Z position to the given value.
/// Also stores the rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMoveZ(this Rigidbody target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, new Vector3(0, 0, endValue), duration);
t.SetOptions(AxisConstraint.Z, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody's rotation to the given value.
/// Also stores the rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="mode">Rotation mode</param>
public static TweenerCore<Quaternion, Vector3, QuaternionOptions> DORotate(this Rigidbody target, Vector3 endValue, float duration, RotateMode mode = RotateMode.Fast)
{
TweenerCore<Quaternion, Vector3, QuaternionOptions> t = DOTween.To(() => target.rotation, target.MoveRotation, endValue, duration);
t.SetTarget(target);
t.plugOptions.rotateMode = mode;
return t;
}
/// <summary>Tweens a Rigidbody's rotation so that it will look towards the given position.
/// Also stores the rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="towards">The position to look at</param><param name="duration">The duration of the tween</param>
/// <param name="axisConstraint">Eventual axis constraint for the rotation</param>
/// <param name="up">The vector that defines in which direction up is (default: Vector3.up)</param>
public static TweenerCore<Quaternion, Vector3, QuaternionOptions> DOLookAt(this Rigidbody target, Vector3 towards, float duration, AxisConstraint axisConstraint = AxisConstraint.None, Vector3? up = null)
{
TweenerCore<Quaternion, Vector3, QuaternionOptions> t = DOTween.To(() => target.rotation, target.MoveRotation, towards, duration)
.SetTarget(target).SetSpecialStartupMode(SpecialStartupMode.SetLookAt);
t.plugOptions.axisConstraint = axisConstraint;
t.plugOptions.up = (up == null) ? Vector3.up : (Vector3)up;
return t;
}
#region Special
/// <summary>Tweens a Rigidbody's position to the given value, while also applying a jump effect along the Y axis.
/// Returns a Sequence instead of a Tweener.
/// Also stores the Rigidbody as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param>
/// <param name="jumpPower">Power of the jump (the max height of the jump is represented by this plus the final Y offset)</param>
/// <param name="numJumps">Total number of jumps</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Sequence DOJump(this Rigidbody target, Vector3 endValue, float jumpPower, int numJumps, float duration, bool snapping = false)
{
if (numJumps < 1) numJumps = 1;
float startPosY = 0;
float offsetY = -1;
bool offsetYSet = false;
Sequence s = DOTween.Sequence();
Tween yTween = DOTween.To(() => target.position, target.MovePosition, new Vector3(0, jumpPower, 0), duration / (numJumps * 2))
.SetOptions(AxisConstraint.Y, snapping).SetEase(Ease.OutQuad).SetRelative()
.SetLoops(numJumps * 2, LoopType.Yoyo)
.OnStart(() => startPosY = target.position.y);
s.Append(DOTween.To(() => target.position, target.MovePosition, new Vector3(endValue.x, 0, 0), duration)
.SetOptions(AxisConstraint.X, snapping).SetEase(Ease.Linear)
).Join(DOTween.To(() => target.position, target.MovePosition, new Vector3(0, 0, endValue.z), duration)
.SetOptions(AxisConstraint.Z, snapping).SetEase(Ease.Linear)
).Join(yTween)
.SetTarget(target).SetEase(DOTween.defaultEaseType);
yTween.OnUpdate(() => {
if (!offsetYSet) {
offsetYSet = true;
offsetY = s.isRelative ? endValue.y : endValue.y - startPosY;
}
Vector3 pos = target.position;
pos.y += DOVirtual.EasedValue(0, offsetY, yTween.ElapsedPercentage(), Ease.OutQuad);
target.MovePosition(pos);
});
return s;
}
/// <summary>Tweens a Rigidbody's position through the given path waypoints, using the chosen path algorithm.
/// Also stores the Rigidbody as the tween's target so it can be used for filtered operations.
/// <para>NOTE: to tween a rigidbody correctly it should be set to kinematic at least while being tweened.</para>
/// <para>BEWARE: doesn't work on Windows Phone store (waiting for Unity to fix their own bug).
/// If you plan to publish there you should use a regular transform.DOPath.</para></summary>
/// <param name="path">The waypoints to go through</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="pathType">The type of path: Linear (straight path), CatmullRom (curved CatmullRom path) or CubicBezier (curved with control points)</param>
/// <param name="pathMode">The path mode: 3D, side-scroller 2D, top-down 2D</param>
/// <param name="resolution">The resolution of the path (useless in case of Linear paths): higher resolutions make for more detailed curved paths but are more expensive.
/// Defaults to 10, but a value of 5 is usually enough if you don't have dramatic long curves between waypoints</param>
/// <param name="gizmoColor">The color of the path (shown when gizmos are active in the Play panel and the tween is running)</param>
public static TweenerCore<Vector3, Path, PathOptions> DOPath(
this Rigidbody target, Vector3[] path, float duration, PathType pathType = PathType.Linear,
PathMode pathMode = PathMode.Full3D, int resolution = 10, Color? gizmoColor = null
)
{
if (resolution < 1) resolution = 1;
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => target.position, target.MovePosition, new Path(pathType, path, resolution, gizmoColor), duration)
.SetTarget(target).SetUpdate(UpdateType.Fixed);
t.plugOptions.isRigidbody = true;
t.plugOptions.mode = pathMode;
return t;
}
/// <summary>Tweens a Rigidbody's localPosition through the given path waypoints, using the chosen path algorithm.
/// Also stores the Rigidbody as the tween's target so it can be used for filtered operations
/// <para>NOTE: to tween a rigidbody correctly it should be set to kinematic at least while being tweened.</para>
/// <para>BEWARE: doesn't work on Windows Phone store (waiting for Unity to fix their own bug).
/// If you plan to publish there you should use a regular transform.DOLocalPath.</para></summary>
/// <param name="path">The waypoint to go through</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="pathType">The type of path: Linear (straight path), CatmullRom (curved CatmullRom path) or CubicBezier (curved with control points)</param>
/// <param name="pathMode">The path mode: 3D, side-scroller 2D, top-down 2D</param>
/// <param name="resolution">The resolution of the path: higher resolutions make for more detailed curved paths but are more expensive.
/// Defaults to 10, but a value of 5 is usually enough if you don't have dramatic long curves between waypoints</param>
/// <param name="gizmoColor">The color of the path (shown when gizmos are active in the Play panel and the tween is running)</param>
public static TweenerCore<Vector3, Path, PathOptions> DOLocalPath(
this Rigidbody target, Vector3[] path, float duration, PathType pathType = PathType.Linear,
PathMode pathMode = PathMode.Full3D, int resolution = 10, Color? gizmoColor = null
)
{
if (resolution < 1) resolution = 1;
Transform trans = target.transform;
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => trans.localPosition, x => target.MovePosition(trans.parent == null ? x : trans.parent.TransformPoint(x)), new Path(pathType, path, resolution, gizmoColor), duration)
.SetTarget(target).SetUpdate(UpdateType.Fixed);
t.plugOptions.isRigidbody = true;
t.plugOptions.mode = pathMode;
t.plugOptions.useLocalPosition = true;
return t;
}
// Used by path editor when creating the actual tween, so it can pass a pre-compiled path
internal static TweenerCore<Vector3, Path, PathOptions> DOPath(
this Rigidbody target, Path path, float duration, PathMode pathMode = PathMode.Full3D
)
{
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => target.position, target.MovePosition, path, duration)
.SetTarget(target);
t.plugOptions.isRigidbody = true;
t.plugOptions.mode = pathMode;
return t;
}
internal static TweenerCore<Vector3, Path, PathOptions> DOLocalPath(
this Rigidbody target, Path path, float duration, PathMode pathMode = PathMode.Full3D
)
{
Transform trans = target.transform;
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => trans.localPosition, x => target.MovePosition(trans.parent == null ? x : trans.parent.TransformPoint(x)), path, duration)
.SetTarget(target);
t.plugOptions.isRigidbody = true;
t.plugOptions.mode = pathMode;
t.plugOptions.useLocalPosition = true;
return t;
}
#endregion
#endregion
#endregion
}
}
#endif

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
#if !DOTWEEN_NOPHYSICS2D // MODULE_MARKER
using System;
using DG.Tweening.Core;
using DG.Tweening.Plugins;
using DG.Tweening.Plugins.Core.PathCore;
using DG.Tweening.Plugins.Options;
using UnityEngine;
#pragma warning disable 1591
namespace DG.Tweening
{
public static class DOTweenModulePhysics2D
{
#region Shortcuts
#region Rigidbody2D Shortcuts
/// <summary>Tweens a Rigidbody2D's position to the given value.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOMove(this Rigidbody2D target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody2D's X position to the given value.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOMoveX(this Rigidbody2D target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, new Vector2(endValue, 0), duration);
t.SetOptions(AxisConstraint.X, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody2D's Y position to the given value.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOMoveY(this Rigidbody2D target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.position, target.MovePosition, new Vector2(0, endValue), duration);
t.SetOptions(AxisConstraint.Y, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a Rigidbody2D's rotation to the given value.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DORotate(this Rigidbody2D target, float endValue, float duration)
{
TweenerCore<float, float, FloatOptions> t = DOTween.To(() => target.rotation, target.MoveRotation, endValue, duration);
t.SetTarget(target);
return t;
}
#region Special
/// <summary>Tweens a Rigidbody2D's position to the given value, while also applying a jump effect along the Y axis.
/// Returns a Sequence instead of a Tweener.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations.
/// <para>IMPORTANT: a rigidbody2D can't be animated in a jump arc using MovePosition, so the tween will directly set the position</para></summary>
/// <param name="endValue">The end value to reach</param>
/// <param name="jumpPower">Power of the jump (the max height of the jump is represented by this plus the final Y offset)</param>
/// <param name="numJumps">Total number of jumps</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Sequence DOJump(this Rigidbody2D target, Vector2 endValue, float jumpPower, int numJumps, float duration, bool snapping = false)
{
if (numJumps < 1) numJumps = 1;
float startPosY = 0;
float offsetY = -1;
bool offsetYSet = false;
Sequence s = DOTween.Sequence();
Tween yTween = DOTween.To(() => target.position, x => target.position = x, new Vector2(0, jumpPower), duration / (numJumps * 2))
.SetOptions(AxisConstraint.Y, snapping).SetEase(Ease.OutQuad).SetRelative()
.SetLoops(numJumps * 2, LoopType.Yoyo)
.OnStart(() => startPosY = target.position.y);
s.Append(DOTween.To(() => target.position, x => target.position = x, new Vector2(endValue.x, 0), duration)
.SetOptions(AxisConstraint.X, snapping).SetEase(Ease.Linear)
).Join(yTween)
.SetTarget(target).SetEase(DOTween.defaultEaseType);
yTween.OnUpdate(() => {
if (!offsetYSet) {
offsetYSet = true;
offsetY = s.isRelative ? endValue.y : endValue.y - startPosY;
}
Vector3 pos = target.position;
pos.y += DOVirtual.EasedValue(0, offsetY, yTween.ElapsedPercentage(), Ease.OutQuad);
target.MovePosition(pos);
});
return s;
}
/// <summary>Tweens a Rigidbody2D's position through the given path waypoints, using the chosen path algorithm.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations.
/// <para>NOTE: to tween a Rigidbody2D correctly it should be set to kinematic at least while being tweened.</para>
/// <para>BEWARE: doesn't work on Windows Phone store (waiting for Unity to fix their own bug).
/// If you plan to publish there you should use a regular transform.DOPath.</para></summary>
/// <param name="path">The waypoints to go through</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="pathType">The type of path: Linear (straight path), CatmullRom (curved CatmullRom path) or CubicBezier (curved with control points)</param>
/// <param name="pathMode">The path mode: 3D, side-scroller 2D, top-down 2D</param>
/// <param name="resolution">The resolution of the path (useless in case of Linear paths): higher resolutions make for more detailed curved paths but are more expensive.
/// Defaults to 10, but a value of 5 is usually enough if you don't have dramatic long curves between waypoints</param>
/// <param name="gizmoColor">The color of the path (shown when gizmos are active in the Play panel and the tween is running)</param>
public static TweenerCore<Vector3, Path, PathOptions> DOPath(
this Rigidbody2D target, Vector2[] path, float duration, PathType pathType = PathType.Linear,
PathMode pathMode = PathMode.Full3D, int resolution = 10, Color? gizmoColor = null
)
{
if (resolution < 1) resolution = 1;
int len = path.Length;
Vector3[] path3D = new Vector3[len];
for (int i = 0; i < len; ++i) path3D[i] = path[i];
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => target.position, x => target.MovePosition(x), new Path(pathType, path3D, resolution, gizmoColor), duration)
.SetTarget(target).SetUpdate(UpdateType.Fixed);
t.plugOptions.isRigidbody2D = true;
t.plugOptions.mode = pathMode;
return t;
}
/// <summary>Tweens a Rigidbody2D's localPosition through the given path waypoints, using the chosen path algorithm.
/// Also stores the Rigidbody2D as the tween's target so it can be used for filtered operations
/// <para>NOTE: to tween a Rigidbody2D correctly it should be set to kinematic at least while being tweened.</para>
/// <para>BEWARE: doesn't work on Windows Phone store (waiting for Unity to fix their own bug).
/// If you plan to publish there you should use a regular transform.DOLocalPath.</para></summary>
/// <param name="path">The waypoint to go through</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="pathType">The type of path: Linear (straight path), CatmullRom (curved CatmullRom path) or CubicBezier (curved with control points)</param>
/// <param name="pathMode">The path mode: 3D, side-scroller 2D, top-down 2D</param>
/// <param name="resolution">The resolution of the path: higher resolutions make for more detailed curved paths but are more expensive.
/// Defaults to 10, but a value of 5 is usually enough if you don't have dramatic long curves between waypoints</param>
/// <param name="gizmoColor">The color of the path (shown when gizmos are active in the Play panel and the tween is running)</param>
public static TweenerCore<Vector3, Path, PathOptions> DOLocalPath(
this Rigidbody2D target, Vector2[] path, float duration, PathType pathType = PathType.Linear,
PathMode pathMode = PathMode.Full3D, int resolution = 10, Color? gizmoColor = null
)
{
if (resolution < 1) resolution = 1;
int len = path.Length;
Vector3[] path3D = new Vector3[len];
for (int i = 0; i < len; ++i) path3D[i] = path[i];
Transform trans = target.transform;
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => trans.localPosition, x => target.MovePosition(trans.parent == null ? x : trans.parent.TransformPoint(x)), new Path(pathType, path3D, resolution, gizmoColor), duration)
.SetTarget(target).SetUpdate(UpdateType.Fixed);
t.plugOptions.isRigidbody2D = true;
t.plugOptions.mode = pathMode;
t.plugOptions.useLocalPosition = true;
return t;
}
// Used by path editor when creating the actual tween, so it can pass a pre-compiled path
internal static TweenerCore<Vector3, Path, PathOptions> DOPath(
this Rigidbody2D target, Path path, float duration, PathMode pathMode = PathMode.Full3D
)
{
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => target.position, x => target.MovePosition(x), path, duration)
.SetTarget(target);
t.plugOptions.isRigidbody2D = true;
t.plugOptions.mode = pathMode;
return t;
}
internal static TweenerCore<Vector3, Path, PathOptions> DOLocalPath(
this Rigidbody2D target, Path path, float duration, PathMode pathMode = PathMode.Full3D
)
{
Transform trans = target.transform;
TweenerCore<Vector3, Path, PathOptions> t = DOTween.To(PathPlugin.Get(), () => trans.localPosition, x => target.MovePosition(trans.parent == null ? x : trans.parent.TransformPoint(x)), path, duration)
.SetTarget(target);
t.plugOptions.isRigidbody2D = true;
t.plugOptions.mode = pathMode;
t.plugOptions.useLocalPosition = true;
return t;
}
#endregion
#endregion
#endregion
}
}
#endif

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
#if !DOTWEEN_NOSPRITES // MODULE_MARKER
using System;
using UnityEngine;
using DG.Tweening.Core;
using DG.Tweening.Plugins.Options;
#pragma warning disable 1591
namespace DG.Tweening
{
public static class DOTweenModuleSprite
{
#region Shortcuts
#region SpriteRenderer
/// <summary>Tweens a SpriteRenderer's color to the given value.
/// Also stores the spriteRenderer as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOColor(this SpriteRenderer target, Color endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.To(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a Material's alpha color to the given value.
/// Also stores the spriteRenderer as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOFade(this SpriteRenderer target, float endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.ToAlpha(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a SpriteRenderer's color using the given gradient
/// (NOTE 1: only uses the colors of the gradient, not the alphas - NOTE 2: creates a Sequence, not a Tweener).
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="gradient">The gradient to use</param><param name="duration">The duration of the tween</param>
public static Sequence DOGradientColor(this SpriteRenderer target, Gradient gradient, float duration)
{
Sequence s = DOTween.Sequence();
GradientColorKey[] colors = gradient.colorKeys;
int len = colors.Length;
for (int i = 0; i < len; ++i) {
GradientColorKey c = colors[i];
if (i == 0 && c.time <= 0) {
target.color = c.color;
continue;
}
float colorDuration = i == len - 1
? duration - s.Duration(false) // Verifies that total duration is correct
: duration * (i == 0 ? c.time : c.time - colors[i - 1].time);
s.Append(target.DOColor(c.color, colorDuration).SetEase(Ease.Linear));
}
s.SetTarget(target);
return s;
}
#endregion
#region Blendables
#region SpriteRenderer
/// <summary>Tweens a SpriteRenderer's color to the given value,
/// in a way that allows other DOBlendableColor tweens to work together on the same target,
/// instead than fight each other as multiple DOColor would do.
/// Also stores the SpriteRenderer as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The value to tween to</param><param name="duration">The duration of the tween</param>
public static Tweener DOBlendableColor(this SpriteRenderer target, Color endValue, float duration)
{
endValue = endValue - target.color;
Color to = new Color(0, 0, 0, 0);
return DOTween.To(() => to, x => {
Color diff = x - to;
to = x;
target.color += diff;
}, endValue, duration)
.Blendable().SetTarget(target);
}
#endregion
#endregion
#endregion
}
}
#endif

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
#if !DOTWEEN_NOUI // MODULE_MARKER
using System;
using System.Globalization;
using UnityEngine;
using UnityEngine.UI;
using DG.Tweening.Core;
using DG.Tweening.Core.Enums;
using DG.Tweening.Plugins;
using DG.Tweening.Plugins.Options;
using Outline = UnityEngine.UI.Outline;
using Text = UnityEngine.UI.Text;
#pragma warning disable 1591
namespace DG.Tweening
{
public static class DOTweenModuleUI
{
#region Shortcuts
#region CanvasGroup
/// <summary>Tweens a CanvasGroup's alpha color to the given value.
/// Also stores the canvasGroup as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DOFade(this CanvasGroup target, float endValue, float duration)
{
TweenerCore<float, float, FloatOptions> t = DOTween.To(() => target.alpha, x => target.alpha = x, endValue, duration);
t.SetTarget(target);
return t;
}
#endregion
#region Graphic
/// <summary>Tweens an Graphic's color to the given value.
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOColor(this Graphic target, Color endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.To(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens an Graphic's alpha color to the given value.
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOFade(this Graphic target, float endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.ToAlpha(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
#endregion
#region Image
/// <summary>Tweens an Image's color to the given value.
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOColor(this Image target, Color endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.To(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens an Image's alpha color to the given value.
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOFade(this Image target, float endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.ToAlpha(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens an Image's fillAmount to the given value.
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach (0 to 1)</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DOFillAmount(this Image target, float endValue, float duration)
{
if (endValue > 1) endValue = 1;
else if (endValue < 0) endValue = 0;
TweenerCore<float, float, FloatOptions> t = DOTween.To(() => target.fillAmount, x => target.fillAmount = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens an Image's colors using the given gradient
/// (NOTE 1: only uses the colors of the gradient, not the alphas - NOTE 2: creates a Sequence, not a Tweener).
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="gradient">The gradient to use</param><param name="duration">The duration of the tween</param>
public static Sequence DOGradientColor(this Image target, Gradient gradient, float duration)
{
Sequence s = DOTween.Sequence();
GradientColorKey[] colors = gradient.colorKeys;
int len = colors.Length;
for (int i = 0; i < len; ++i) {
GradientColorKey c = colors[i];
if (i == 0 && c.time <= 0) {
target.color = c.color;
continue;
}
float colorDuration = i == len - 1
? duration - s.Duration(false) // Verifies that total duration is correct
: duration * (i == 0 ? c.time : c.time - colors[i - 1].time);
s.Append(target.DOColor(c.color, colorDuration).SetEase(Ease.Linear));
}
s.SetTarget(target);
return s;
}
#endregion
#region LayoutElement
/// <summary>Tweens an LayoutElement's flexibleWidth/Height to the given value.
/// Also stores the LayoutElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOFlexibleSize(this LayoutElement target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => new Vector2(target.flexibleWidth, target.flexibleHeight), x => {
target.flexibleWidth = x.x;
target.flexibleHeight = x.y;
}, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens an LayoutElement's minWidth/Height to the given value.
/// Also stores the LayoutElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOMinSize(this LayoutElement target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => new Vector2(target.minWidth, target.minHeight), x => {
target.minWidth = x.x;
target.minHeight = x.y;
}, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens an LayoutElement's preferredWidth/Height to the given value.
/// Also stores the LayoutElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOPreferredSize(this LayoutElement target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => new Vector2(target.preferredWidth, target.preferredHeight), x => {
target.preferredWidth = x.x;
target.preferredHeight = x.y;
}, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
#endregion
#region Outline
/// <summary>Tweens a Outline's effectColor to the given value.
/// Also stores the Outline as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOColor(this Outline target, Color endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.To(() => target.effectColor, x => target.effectColor = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a Outline's effectColor alpha to the given value.
/// Also stores the Outline as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOFade(this Outline target, float endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.ToAlpha(() => target.effectColor, x => target.effectColor = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a Outline's effectDistance to the given value.
/// Also stores the Outline as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOScale(this Outline target, Vector2 endValue, float duration)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.effectDistance, x => target.effectDistance = x, endValue, duration);
t.SetTarget(target);
return t;
}
#endregion
#region RectTransform
/// <summary>Tweens a RectTransform's anchoredPosition to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOAnchorPos(this RectTransform target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.anchoredPosition, x => target.anchoredPosition = x, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchoredPosition X to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOAnchorPosX(this RectTransform target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.anchoredPosition, x => target.anchoredPosition = x, new Vector2(endValue, 0), duration);
t.SetOptions(AxisConstraint.X, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchoredPosition Y to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOAnchorPosY(this RectTransform target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.anchoredPosition, x => target.anchoredPosition = x, new Vector2(0, endValue), duration);
t.SetOptions(AxisConstraint.Y, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchoredPosition3D to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOAnchorPos3D(this RectTransform target, Vector3 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.anchoredPosition3D, x => target.anchoredPosition3D = x, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchoredPosition3D X to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOAnchorPos3DX(this RectTransform target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.anchoredPosition3D, x => target.anchoredPosition3D = x, new Vector3(endValue, 0, 0), duration);
t.SetOptions(AxisConstraint.X, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchoredPosition3D Y to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOAnchorPos3DY(this RectTransform target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.anchoredPosition3D, x => target.anchoredPosition3D = x, new Vector3(0, endValue, 0), duration);
t.SetOptions(AxisConstraint.Y, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchoredPosition3D Z to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOAnchorPos3DZ(this RectTransform target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t = DOTween.To(() => target.anchoredPosition3D, x => target.anchoredPosition3D = x, new Vector3(0, 0, endValue), duration);
t.SetOptions(AxisConstraint.Z, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchorMax to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOAnchorMax(this RectTransform target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.anchorMax, x => target.anchorMax = x, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's anchorMin to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOAnchorMin(this RectTransform target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.anchorMin, x => target.anchorMin = x, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's pivot to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOPivot(this RectTransform target, Vector2 endValue, float duration)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.pivot, x => target.pivot = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's pivot X to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOPivotX(this RectTransform target, float endValue, float duration)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.pivot, x => target.pivot = x, new Vector2(endValue, 0), duration);
t.SetOptions(AxisConstraint.X).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's pivot Y to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOPivotY(this RectTransform target, float endValue, float duration)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.pivot, x => target.pivot = x, new Vector2(0, endValue), duration);
t.SetOptions(AxisConstraint.Y).SetTarget(target);
return t;
}
/// <summary>Tweens a RectTransform's sizeDelta to the given value.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOSizeDelta(this RectTransform target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.sizeDelta, x => target.sizeDelta = x, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Punches a RectTransform's anchoredPosition towards the given direction and then back to the starting one
/// as if it was connected to the starting position via an elastic.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="punch">The direction and strength of the punch (added to the RectTransform's current position)</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="vibrato">Indicates how much will the punch vibrate</param>
/// <param name="elasticity">Represents how much (0 to 1) the vector will go beyond the starting position when bouncing backwards.
/// 1 creates a full oscillation between the punch direction and the opposite direction,
/// while 0 oscillates only between the punch and the start position</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Tweener DOPunchAnchorPos(this RectTransform target, Vector2 punch, float duration, int vibrato = 10, float elasticity = 1, bool snapping = false)
{
return DOTween.Punch(() => target.anchoredPosition, x => target.anchoredPosition = x, punch, duration, vibrato, elasticity)
.SetTarget(target).SetOptions(snapping);
}
/// <summary>Shakes a RectTransform's anchoredPosition with the given values.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="duration">The duration of the tween</param>
/// <param name="strength">The shake strength</param>
/// <param name="vibrato">Indicates how much will the shake vibrate</param>
/// <param name="randomness">Indicates how much the shake will be random (0 to 180 - values higher than 90 kind of suck, so beware).
/// Setting it to 0 will shake along a single direction.</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
/// <param name="fadeOut">If TRUE the shake will automatically fadeOut smoothly within the tween's duration, otherwise it will not</param>
/// <param name="randomnessMode">Randomness mode</param>
public static Tweener DOShakeAnchorPos(this RectTransform target, float duration, float strength = 100, int vibrato = 10, float randomness = 90, bool snapping = false, bool fadeOut = true, ShakeRandomnessMode randomnessMode = ShakeRandomnessMode.Full)
{
return DOTween.Shake(() => target.anchoredPosition, x => target.anchoredPosition = x, duration, strength, vibrato, randomness, true, fadeOut, randomnessMode)
.SetTarget(target).SetSpecialStartupMode(SpecialStartupMode.SetShake).SetOptions(snapping);
}
/// <summary>Shakes a RectTransform's anchoredPosition with the given values.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="duration">The duration of the tween</param>
/// <param name="strength">The shake strength on each axis</param>
/// <param name="vibrato">Indicates how much will the shake vibrate</param>
/// <param name="randomness">Indicates how much the shake will be random (0 to 180 - values higher than 90 kind of suck, so beware).
/// Setting it to 0 will shake along a single direction.</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
/// <param name="fadeOut">If TRUE the shake will automatically fadeOut smoothly within the tween's duration, otherwise it will not</param>
/// <param name="randomnessMode">Randomness mode</param>
public static Tweener DOShakeAnchorPos(this RectTransform target, float duration, Vector2 strength, int vibrato = 10, float randomness = 90, bool snapping = false, bool fadeOut = true, ShakeRandomnessMode randomnessMode = ShakeRandomnessMode.Full)
{
return DOTween.Shake(() => target.anchoredPosition, x => target.anchoredPosition = x, duration, strength, vibrato, randomness, fadeOut, randomnessMode)
.SetTarget(target).SetSpecialStartupMode(SpecialStartupMode.SetShake).SetOptions(snapping);
}
#region Special
/// <summary>Tweens a RectTransform's anchoredPosition to the given value, while also applying a jump effect along the Y axis.
/// Returns a Sequence instead of a Tweener.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param>
/// <param name="jumpPower">Power of the jump (the max height of the jump is represented by this plus the final Y offset)</param>
/// <param name="numJumps">Total number of jumps</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Sequence DOJumpAnchorPos(this RectTransform target, Vector2 endValue, float jumpPower, int numJumps, float duration, bool snapping = false)
{
if (numJumps < 1) numJumps = 1;
float startPosY = 0;
float offsetY = -1;
bool offsetYSet = false;
// Separate Y Tween so we can elaborate elapsedPercentage on that insted of on the Sequence
// (in case users add a delay or other elements to the Sequence)
Sequence s = DOTween.Sequence();
Tween yTween = DOTween.To(() => target.anchoredPosition, x => target.anchoredPosition = x, new Vector2(0, jumpPower), duration / (numJumps * 2))
.SetOptions(AxisConstraint.Y, snapping).SetEase(Ease.OutQuad).SetRelative()
.SetLoops(numJumps * 2, LoopType.Yoyo)
.OnStart(()=> startPosY = target.anchoredPosition.y);
s.Append(DOTween.To(() => target.anchoredPosition, x => target.anchoredPosition = x, new Vector2(endValue.x, 0), duration)
.SetOptions(AxisConstraint.X, snapping).SetEase(Ease.Linear)
).Join(yTween)
.SetTarget(target).SetEase(DOTween.defaultEaseType);
s.OnUpdate(() => {
if (!offsetYSet) {
offsetYSet = true;
offsetY = s.isRelative ? endValue.y : endValue.y - startPosY;
}
Vector2 pos = target.anchoredPosition;
pos.y += DOVirtual.EasedValue(0, offsetY, s.ElapsedDirectionalPercentage(), Ease.OutQuad);
target.anchoredPosition = pos;
});
return s;
}
#endregion
#endregion
#region ScrollRect
/// <summary>Tweens a ScrollRect's horizontal/verticalNormalizedPosition to the given value.
/// Also stores the ScrollRect as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Tweener DONormalizedPos(this ScrollRect target, Vector2 endValue, float duration, bool snapping = false)
{
return DOTween.To(() => new Vector2(target.horizontalNormalizedPosition, target.verticalNormalizedPosition),
x => {
target.horizontalNormalizedPosition = x.x;
target.verticalNormalizedPosition = x.y;
}, endValue, duration)
.SetOptions(snapping).SetTarget(target);
}
/// <summary>Tweens a ScrollRect's horizontalNormalizedPosition to the given value.
/// Also stores the ScrollRect as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Tweener DOHorizontalNormalizedPos(this ScrollRect target, float endValue, float duration, bool snapping = false)
{
return DOTween.To(() => target.horizontalNormalizedPosition, x => target.horizontalNormalizedPosition = x, endValue, duration)
.SetOptions(snapping).SetTarget(target);
}
/// <summary>Tweens a ScrollRect's verticalNormalizedPosition to the given value.
/// Also stores the ScrollRect as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Tweener DOVerticalNormalizedPos(this ScrollRect target, float endValue, float duration, bool snapping = false)
{
return DOTween.To(() => target.verticalNormalizedPosition, x => target.verticalNormalizedPosition = x, endValue, duration)
.SetOptions(snapping).SetTarget(target);
}
#endregion
#region Slider
/// <summary>Tweens a Slider's value to the given value.
/// Also stores the Slider as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<float, float, FloatOptions> DOValue(this Slider target, float endValue, float duration, bool snapping = false)
{
TweenerCore<float, float, FloatOptions> t = DOTween.To(() => target.value, x => target.value = x, endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
#endregion
#region Text
/// <summary>Tweens a Text's color to the given value.
/// Also stores the Text as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOColor(this Text target, Color endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.To(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>
/// Tweens a Text's text from one integer to another, with options for thousands separators
/// </summary>
/// <param name="fromValue">The value to start from</param>
/// <param name="endValue">The end value to reach</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="addThousandsSeparator">If TRUE (default) also adds thousands separators</param>
/// <param name="culture">The <see cref="CultureInfo"/> to use (InvariantCulture if NULL)</param>
public static TweenerCore<int, int, NoOptions> DOCounter(
this Text target, int fromValue, int endValue, float duration, bool addThousandsSeparator = true, CultureInfo culture = null
){
int v = fromValue;
CultureInfo cInfo = !addThousandsSeparator ? null : culture ?? CultureInfo.InvariantCulture;
TweenerCore<int, int, NoOptions> t = DOTween.To(() => v, x => {
v = x;
target.text = addThousandsSeparator
? v.ToString("N0", cInfo)
: v.ToString();
}, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a Text's alpha color to the given value.
/// Also stores the Text as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Color, Color, ColorOptions> DOFade(this Text target, float endValue, float duration)
{
TweenerCore<Color, Color, ColorOptions> t = DOTween.ToAlpha(() => target.color, x => target.color = x, endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a Text's text to the given value.
/// Also stores the Text as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end string to tween to</param><param name="duration">The duration of the tween</param>
/// <param name="richTextEnabled">If TRUE (default), rich text will be interpreted correctly while animated,
/// otherwise all tags will be considered as normal text</param>
/// <param name="scrambleMode">The type of scramble mode to use, if any</param>
/// <param name="scrambleChars">A string containing the characters to use for scrambling.
/// Use as many characters as possible (minimum 10) because DOTween uses a fast scramble mode which gives better results with more characters.
/// Leave it to NULL (default) to use default ones</param>
public static TweenerCore<string, string, StringOptions> DOText(this Text target, string endValue, float duration, bool richTextEnabled = true, ScrambleMode scrambleMode = ScrambleMode.None, string scrambleChars = null)
{
if (endValue == null) {
if (Debugger.logPriority > 0) Debugger.LogWarning("You can't pass a NULL string to DOText: an empty string will be used instead to avoid errors");
endValue = "";
}
TweenerCore<string, string, StringOptions> t = DOTween.To(() => target.text, x => target.text = x, endValue, duration);
t.SetOptions(richTextEnabled, scrambleMode, scrambleChars)
.SetTarget(target);
return t;
}
#endregion
#region Blendables
#region Graphic
/// <summary>Tweens a Graphic's color to the given value,
/// in a way that allows other DOBlendableColor tweens to work together on the same target,
/// instead than fight each other as multiple DOColor would do.
/// Also stores the Graphic as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The value to tween to</param><param name="duration">The duration of the tween</param>
public static Tweener DOBlendableColor(this Graphic target, Color endValue, float duration)
{
endValue = endValue - target.color;
Color to = new Color(0, 0, 0, 0);
return DOTween.To(() => to, x => {
Color diff = x - to;
to = x;
target.color += diff;
}, endValue, duration)
.Blendable().SetTarget(target);
}
#endregion
#region Image
/// <summary>Tweens a Image's color to the given value,
/// in a way that allows other DOBlendableColor tweens to work together on the same target,
/// instead than fight each other as multiple DOColor would do.
/// Also stores the Image as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The value to tween to</param><param name="duration">The duration of the tween</param>
public static Tweener DOBlendableColor(this Image target, Color endValue, float duration)
{
endValue = endValue - target.color;
Color to = new Color(0, 0, 0, 0);
return DOTween.To(() => to, x => {
Color diff = x - to;
to = x;
target.color += diff;
}, endValue, duration)
.Blendable().SetTarget(target);
}
#endregion
#region Text
/// <summary>Tweens a Text's color BY the given value,
/// in a way that allows other DOBlendableColor tweens to work together on the same target,
/// instead than fight each other as multiple DOColor would do.
/// Also stores the Text as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The value to tween to</param><param name="duration">The duration of the tween</param>
public static Tweener DOBlendableColor(this Text target, Color endValue, float duration)
{
endValue = endValue - target.color;
Color to = new Color(0, 0, 0, 0);
return DOTween.To(() => to, x => {
Color diff = x - to;
to = x;
target.color += diff;
}, endValue, duration)
.Blendable().SetTarget(target);
}
#endregion
#endregion
#region Shapes
/// <summary>Tweens a RectTransform's anchoredPosition so that it draws a circle around the given center.
/// Also stores the RectTransform as the tween's target so it can be used for filtered operations.<para/>
/// IMPORTANT: SetFrom(value) requires a <see cref="Vector2"/> instead of a float, where the X property represents the "from degrees value"</summary>
/// <param name="center">Circle-center/pivot around which to rotate (in UI anchoredPosition coordinates)</param>
/// <param name="endValueDegrees">The end value degrees to reach (to rotate counter-clockwise pass a negative value)</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="relativeCenter">If TRUE the <see cref="center"/> coordinates will be considered as relative to the target's current anchoredPosition</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, CircleOptions> DOShapeCircle(
this RectTransform target, Vector2 center, float endValueDegrees, float duration, bool relativeCenter = false, bool snapping = false
)
{
TweenerCore<Vector2, Vector2, CircleOptions> t = DOTween.To(
CirclePlugin.Get(), () => target.anchoredPosition, x => target.anchoredPosition = x, center, duration
);
t.SetOptions(endValueDegrees, relativeCenter, snapping).SetTarget(target);
return t;
}
#endregion
#endregion
// █████████████████████████████████████████████████████████████████████████████████████████████████████████████████████
// ███ INTERNAL CLASSES ████████████████████████████████████████████████████████████████████████████████████████████████
// █████████████████████████████████████████████████████████████████████████████████████████████████████████████████████
public static class Utils
{
/// <summary>
/// Converts the anchoredPosition of the first RectTransform to the second RectTransform,
/// taking into consideration offset, anchors and pivot, and returns the new anchoredPosition
/// </summary>
public static Vector2 SwitchToRectTransform(RectTransform from, RectTransform to)
{
Vector2 localPoint;
Vector2 fromPivotDerivedOffset = new Vector2(from.rect.width * 0.5f + from.rect.xMin, from.rect.height * 0.5f + from.rect.yMin);
Vector2 screenP = RectTransformUtility.WorldToScreenPoint(null, from.position);
screenP += fromPivotDerivedOffset;
RectTransformUtility.ScreenPointToLocalPointInRectangle(to, screenP, null, out localPoint);
Vector2 pivotDerivedOffset = new Vector2(to.rect.width * 0.5f + to.rect.xMin, to.rect.height * 0.5f + to.rect.yMin);
return to.anchoredPosition + localPoint - pivotDerivedOffset;
}
}
}
}
#endif

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defaultReferences: []
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packageName: DOTween (HOTween v2)
packageVersion: 1.2.825
assetPath: Assets/Plugins/Demigiant/DOTween/Modules/DOTweenModuleUI.cs
uploadId: 862444

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2026/01/08
#if DOTWEEN_UITOOLKIT && UNITY_2021_3_OR_NEWER // MODULE_MARKER
using UnityEngine;
using UnityEngine.UIElements;
using DG.Tweening.Core;
using DG.Tweening.Core.Enums;
using DG.Tweening.Plugins.Options;
#pragma warning disable 1591
namespace DG.Tweening
{
public static class DOTweenModuleUIToolkit
{
#region Shortcuts
#region VisualElement
/// <summary>Tweens a VisualElement's position (via style.translate) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMove(this VisualElement target, Vector3 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t
= DOTween.To(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's position (via style.translate) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOMove(this VisualElement target, Vector2 endValue, float duration, bool snapping = false)
{
TweenerCore<Vector2, Vector2, VectorOptions> t
= DOTween.To(() => (Vector2)target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, 0), endValue, duration);
t.SetOptions(snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's X position (via style.translate) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMoveX(this VisualElement target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t
= DOTween.To(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), new Vector3(endValue, 0, 0), duration);
t.SetOptions(AxisConstraint.X, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's Y position (via style.translate) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMoveY(this VisualElement target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t
= DOTween.To(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), new Vector3(0, endValue, 0), duration);
t.SetOptions(AxisConstraint.Y, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's Z position (via style.translate) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static TweenerCore<Vector3, Vector3, VectorOptions> DOMoveZ(this VisualElement target, float endValue, float duration, bool snapping = false)
{
TweenerCore<Vector3, Vector3, VectorOptions> t
= DOTween.To(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), new Vector3(0, 0, endValue), duration);
t.SetOptions(AxisConstraint.Z, snapping).SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's scale (via style.scale) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOScale(this VisualElement target, Vector2 endValue, float duration)
{
TweenerCore<Vector2, Vector2, VectorOptions> t
= DOTween.To(() => (Vector2)target.resolvedStyle.scale.value, x => target.style.scale = new Scale(x), endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's scale (via style.scale) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOScale(this VisualElement target, float endValue, float duration)
{
TweenerCore<Vector2, Vector2, VectorOptions> t
= DOTween.To(() => (Vector2)target.resolvedStyle.scale.value, x => target.style.scale = new Scale(x), new Vector2(endValue, endValue), duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a VisualElement's rotation (via style.rotate) to the given value.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param><param name="duration">The duration of the tween</param>
public static TweenerCore<float, float, FloatOptions> DORotate(this VisualElement target, float endValue, float duration)
{
TweenerCore<float, float, FloatOptions> t
= DOTween.To(() => target.resolvedStyle.rotate.angle.value, x => target.style.rotate = new Rotate(x), endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Punches a VisualElement's position towards the given direction and then back to the starting one
/// as if it was connected to the starting position via an elastic.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="punch">The direction and strength of the punch (added to the VisualElement's current position)</param>
/// <param name="duration">The duration of the tween</param>
/// <param name="vibrato">Indicates how much will the punch vibrate</param>
/// <param name="elasticity">Represents how much (0 to 1) the vector will go beyond the starting position when bouncing backwards.
/// 1 creates a full oscillation between the punch direction and the opposite direction,
/// while 0 oscillates only between the punch and the start position</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
public static Tweener DOPunch(this VisualElement target, Vector3 punch, float duration, int vibrato = 10, float elasticity = 1, bool snapping = false)
{
return DOTween.Punch(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), punch, duration, vibrato, elasticity)
.SetTarget(target).SetOptions(snapping);
}
/// <summary>Shakes a VisualElement's position with the given values.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="duration">The duration of the tween</param>
/// <param name="strength">The shake strength</param>
/// <param name="vibrato">Indicates how much will the shake vibrate</param>
/// <param name="randomness">Indicates how much the shake will be random (0 to 180 - values higher than 90 kind of suck, so beware).
/// Setting it to 0 will shake along a single direction.</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
/// <param name="fadeOut">If TRUE the shake will automatically fadeOut smoothly within the tween's duration, otherwise it will not</param>
/// <param name="randomnessMode">Randomness mode</param>
public static Tweener DOShake(this VisualElement target, float duration, float strength = 100, int vibrato = 10, float randomness = 90, bool snapping = false, bool fadeOut = true, ShakeRandomnessMode randomnessMode = ShakeRandomnessMode.Full)
{
return DOTween.Shake(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), duration, strength, vibrato, randomness, true, fadeOut, randomnessMode)
.SetTarget(target).SetSpecialStartupMode(SpecialStartupMode.SetShake).SetOptions(snapping);
}
/// <summary>Shakes a VisualElement's position with the given values.
/// Also stores the VisualElement as the tween's target so it can be used for filtered operations</summary>
/// <param name="duration">The duration of the tween</param>
/// <param name="strength">The shake strength on each axis</param>
/// <param name="vibrato">Indicates how much will the shake vibrate</param>
/// <param name="randomness">Indicates how much the shake will be random (0 to 180 - values higher than 90 kind of suck, so beware).
/// Setting it to 0 will shake along a single direction.</param>
/// <param name="snapping">If TRUE the tween will smoothly snap all values to integers</param>
/// <param name="fadeOut">If TRUE the shake will automatically fadeOut smoothly within the tween's duration, otherwise it will not</param>
/// <param name="randomnessMode">Randomness mode</param>
public static Tweener DOShake(this VisualElement target, float duration, Vector2 strength, int vibrato = 10, float randomness = 90, bool snapping = false, bool fadeOut = true, ShakeRandomnessMode randomnessMode = ShakeRandomnessMode.Full)
{
return DOTween.Shake(() => target.resolvedStyle.translate, x => target.style.translate = new Translate(x.x, x.y, x.z), duration, strength, vibrato, randomness, fadeOut, randomnessMode)
.SetTarget(target).SetSpecialStartupMode(SpecialStartupMode.SetShake).SetOptions(snapping);
}
#endregion
#endregion
}
}
#endif

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uploadId: 862444

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
using System;
using UnityEngine;
using DG.Tweening.Core;
using DG.Tweening.Plugins.Options;
//#if UNITY_2018_1_OR_NEWER && (NET_4_6 || NET_STANDARD_2_0)
//using Task = System.Threading.Tasks.Task;
//#endif
#pragma warning disable 1591
namespace DG.Tweening
{
/// <summary>
/// Shortcuts/functions that are not strictly related to specific Modules
/// but are available only on some Unity versions
/// </summary>
public static class DOTweenModuleUnityVersion
{
#region Material
/// <summary>Tweens a Material's color using the given gradient
/// (NOTE 1: only uses the colors of the gradient, not the alphas - NOTE 2: creates a Sequence, not a Tweener).
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="gradient">The gradient to use</param><param name="duration">The duration of the tween</param>
public static Sequence DOGradientColor(this Material target, Gradient gradient, float duration)
{
Sequence s = DOTween.Sequence();
GradientColorKey[] colors = gradient.colorKeys;
int len = colors.Length;
for (int i = 0; i < len; ++i) {
GradientColorKey c = colors[i];
if (i == 0 && c.time <= 0) {
target.color = c.color;
continue;
}
float colorDuration = i == len - 1
? duration - s.Duration(false) // Verifies that total duration is correct
: duration * (i == 0 ? c.time : c.time - colors[i - 1].time);
s.Append(target.DOColor(c.color, colorDuration).SetEase(Ease.Linear));
}
s.SetTarget(target);
return s;
}
/// <summary>Tweens a Material's named color property using the given gradient
/// (NOTE 1: only uses the colors of the gradient, not the alphas - NOTE 2: creates a Sequence, not a Tweener).
/// Also stores the image as the tween's target so it can be used for filtered operations</summary>
/// <param name="gradient">The gradient to use</param>
/// <param name="property">The name of the material property to tween (like _Tint or _SpecColor)</param>
/// <param name="duration">The duration of the tween</param>
public static Sequence DOGradientColor(this Material target, Gradient gradient, string property, float duration)
{
Sequence s = DOTween.Sequence();
GradientColorKey[] colors = gradient.colorKeys;
int len = colors.Length;
for (int i = 0; i < len; ++i) {
GradientColorKey c = colors[i];
if (i == 0 && c.time <= 0) {
target.SetColor(property, c.color);
continue;
}
float colorDuration = i == len - 1
? duration - s.Duration(false) // Verifies that total duration is correct
: duration * (i == 0 ? c.time : c.time - colors[i - 1].time);
s.Append(target.DOColor(c.color, property, colorDuration).SetEase(Ease.Linear));
}
s.SetTarget(target);
return s;
}
#endregion
#region CustomYieldInstructions
/// <summary>
/// Returns a <see cref="CustomYieldInstruction"/> that waits until the tween is killed or complete.
/// It can be used inside a coroutine as a yield.
/// <para>Example usage:</para><code>yield return myTween.WaitForCompletion(true);</code>
/// </summary>
public static CustomYieldInstruction WaitForCompletion(this Tween t, bool returnCustomYieldInstruction)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return null;
}
return new DOTweenCYInstruction.WaitForCompletion(t);
}
/// <summary>
/// Returns a <see cref="CustomYieldInstruction"/> that waits until the tween is killed or rewinded.
/// It can be used inside a coroutine as a yield.
/// <para>Example usage:</para><code>yield return myTween.WaitForRewind();</code>
/// </summary>
public static CustomYieldInstruction WaitForRewind(this Tween t, bool returnCustomYieldInstruction)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return null;
}
return new DOTweenCYInstruction.WaitForRewind(t);
}
/// <summary>
/// Returns a <see cref="CustomYieldInstruction"/> that waits until the tween is killed.
/// It can be used inside a coroutine as a yield.
/// <para>Example usage:</para><code>yield return myTween.WaitForKill();</code>
/// </summary>
public static CustomYieldInstruction WaitForKill(this Tween t, bool returnCustomYieldInstruction)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return null;
}
return new DOTweenCYInstruction.WaitForKill(t);
}
/// <summary>
/// Returns a <see cref="CustomYieldInstruction"/> that waits until the tween is killed or has gone through the given amount of loops.
/// It can be used inside a coroutine as a yield.
/// <para>Example usage:</para><code>yield return myTween.WaitForElapsedLoops(2);</code>
/// </summary>
/// <param name="elapsedLoops">Elapsed loops to wait for</param>
public static CustomYieldInstruction WaitForElapsedLoops(this Tween t, int elapsedLoops, bool returnCustomYieldInstruction)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return null;
}
return new DOTweenCYInstruction.WaitForElapsedLoops(t, elapsedLoops);
}
/// <summary>
/// Returns a <see cref="CustomYieldInstruction"/> that waits until the tween is killed
/// or has reached the given time position (loops included, delays excluded).
/// It can be used inside a coroutine as a yield.
/// <para>Example usage:</para><code>yield return myTween.WaitForPosition(2.5f);</code>
/// </summary>
/// <param name="position">Position (loops included, delays excluded) to wait for</param>
public static CustomYieldInstruction WaitForPosition(this Tween t, float position, bool returnCustomYieldInstruction)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return null;
}
return new DOTweenCYInstruction.WaitForPosition(t, position);
}
/// <summary>
/// Returns a <see cref="CustomYieldInstruction"/> that waits until the tween is killed or started
/// (meaning when the tween is set in a playing state the first time, after any eventual delay).
/// It can be used inside a coroutine as a yield.
/// <para>Example usage:</para><code>yield return myTween.WaitForStart();</code>
/// </summary>
public static CustomYieldInstruction WaitForStart(this Tween t, bool returnCustomYieldInstruction)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return null;
}
return new DOTweenCYInstruction.WaitForStart(t);
}
#endregion
#if UNITY_2018_1_OR_NEWER
#region Unity 2018.1 or Newer
#region Material
/// <summary>Tweens a Material's named texture offset property with the given ID to the given value.
/// Also stores the material as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param>
/// <param name="propertyID">The ID of the material property to tween (also called nameID in Unity's manual)</param>
/// <param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOOffset(this Material target, Vector2 endValue, int propertyID, float duration)
{
if (!target.HasProperty(propertyID)) {
if (Debugger.logPriority > 0) Debugger.LogMissingMaterialProperty(propertyID);
return null;
}
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.GetTextureOffset(propertyID), x => target.SetTextureOffset(propertyID, x), endValue, duration);
t.SetTarget(target);
return t;
}
/// <summary>Tweens a Material's named texture scale property with the given ID to the given value.
/// Also stores the material as the tween's target so it can be used for filtered operations</summary>
/// <param name="endValue">The end value to reach</param>
/// <param name="propertyID">The ID of the material property to tween (also called nameID in Unity's manual)</param>
/// <param name="duration">The duration of the tween</param>
public static TweenerCore<Vector2, Vector2, VectorOptions> DOTiling(this Material target, Vector2 endValue, int propertyID, float duration)
{
if (!target.HasProperty(propertyID)) {
if (Debugger.logPriority > 0) Debugger.LogMissingMaterialProperty(propertyID);
return null;
}
TweenerCore<Vector2, Vector2, VectorOptions> t = DOTween.To(() => target.GetTextureScale(propertyID), x => target.SetTextureScale(propertyID, x), endValue, duration);
t.SetTarget(target);
return t;
}
#endregion
#region .NET 4.6 or Newer
#if UNITY_2018_1_OR_NEWER && (NET_4_6 || NET_STANDARD_2_0)
#region Async Instructions
/// <summary>
/// Returns an async <see cref="System.Threading.Tasks.Task"/> that waits until the tween is killed or complete.
/// It can be used inside an async operation.
/// <para>Example usage:</para><code>await myTween.WaitForCompletion();</code>
/// </summary>
public static async System.Threading.Tasks.Task AsyncWaitForCompletion(this Tween t)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return;
}
while (t.active && !t.IsComplete()) await System.Threading.Tasks.Task.Yield();
}
/// <summary>
/// Returns an async <see cref="System.Threading.Tasks.Task"/> that waits until the tween is killed or rewinded.
/// It can be used inside an async operation.
/// <para>Example usage:</para><code>await myTween.AsyncWaitForRewind();</code>
/// </summary>
public static async System.Threading.Tasks.Task AsyncWaitForRewind(this Tween t)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return;
}
while (t.active && (!t.playedOnce || t.position * (t.CompletedLoops() + 1) > 0)) await System.Threading.Tasks.Task.Yield();
}
/// <summary>
/// Returns an async <see cref="System.Threading.Tasks.Task"/> that waits until the tween is killed.
/// It can be used inside an async operation.
/// <para>Example usage:</para><code>await myTween.AsyncWaitForKill();</code>
/// </summary>
public static async System.Threading.Tasks.Task AsyncWaitForKill(this Tween t)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return;
}
while (t.active) await System.Threading.Tasks.Task.Yield();
}
/// <summary>
/// Returns an async <see cref="System.Threading.Tasks.Task"/> that waits until the tween is killed or has gone through the given amount of loops.
/// It can be used inside an async operation.
/// <para>Example usage:</para><code>await myTween.AsyncWaitForElapsedLoops();</code>
/// </summary>
/// <param name="elapsedLoops">Elapsed loops to wait for</param>
public static async System.Threading.Tasks.Task AsyncWaitForElapsedLoops(this Tween t, int elapsedLoops)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return;
}
while (t.active && t.CompletedLoops() < elapsedLoops) await System.Threading.Tasks.Task.Yield();
}
/// <summary>
/// Returns an async <see cref="System.Threading.Tasks.Task"/> that waits until the tween is killed or started
/// (meaning when the tween is set in a playing state the first time, after any eventual delay).
/// It can be used inside an async operation.
/// <para>Example usage:</para><code>await myTween.AsyncWaitForPosition();</code>
/// </summary>
/// <param name="position">Position (loops included, delays excluded) to wait for</param>
public static async System.Threading.Tasks.Task AsyncWaitForPosition(this Tween t, float position)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return;
}
while (t.active && t.position * (t.CompletedLoops() + 1) < position) await System.Threading.Tasks.Task.Yield();
}
/// <summary>
/// Returns an async <see cref="System.Threading.Tasks.Task"/> that waits until the tween is killed.
/// It can be used inside an async operation.
/// <para>Example usage:</para><code>await myTween.AsyncWaitForKill();</code>
/// </summary>
public static async System.Threading.Tasks.Task AsyncWaitForStart(this Tween t)
{
if (!t.active) {
if (Debugger.logPriority > 0) Debugger.LogInvalidTween(t);
return;
}
while (t.active && !t.playedOnce) await System.Threading.Tasks.Task.Yield();
}
#endregion
#endif
#endregion
#endregion
#endif
}
// █████████████████████████████████████████████████████████████████████████████████████████████████████████████████████
// ███ CLASSES █████████████████████████████████████████████████████████████████████████████████████████████████████████
// █████████████████████████████████████████████████████████████████████████████████████████████████████████████████████
public static class DOTweenCYInstruction
{
public class WaitForCompletion : CustomYieldInstruction
{
public override bool keepWaiting { get {
return t.active && !t.IsComplete();
}}
readonly Tween t;
public WaitForCompletion(Tween tween)
{
t = tween;
}
}
public class WaitForRewind : CustomYieldInstruction
{
public override bool keepWaiting { get {
return t.active && (!t.playedOnce || t.position * (t.CompletedLoops() + 1) > 0);
}}
readonly Tween t;
public WaitForRewind(Tween tween)
{
t = tween;
}
}
public class WaitForKill : CustomYieldInstruction
{
public override bool keepWaiting { get {
return t.active;
}}
readonly Tween t;
public WaitForKill(Tween tween)
{
t = tween;
}
}
public class WaitForElapsedLoops : CustomYieldInstruction
{
public override bool keepWaiting { get {
return t.active && t.CompletedLoops() < elapsedLoops;
}}
readonly Tween t;
readonly int elapsedLoops;
public WaitForElapsedLoops(Tween tween, int elapsedLoops)
{
t = tween;
this.elapsedLoops = elapsedLoops;
}
}
public class WaitForPosition : CustomYieldInstruction
{
public override bool keepWaiting { get {
return t.active && t.position * (t.CompletedLoops() + 1) < position;
}}
readonly Tween t;
readonly float position;
public WaitForPosition(Tween tween, float position)
{
t = tween;
this.position = position;
}
}
public class WaitForStart : CustomYieldInstruction
{
public override bool keepWaiting { get {
return t.active && !t.playedOnce;
}}
readonly Tween t;
public WaitForStart(Tween tween)
{
t = tween;
}
}
}
}

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uploadId: 862444

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// Author: Daniele Giardini - http://www.demigiant.com
// Created: 2018/07/13
using System;
using System.Reflection;
using UnityEngine;
using DG.Tweening.Core;
using DG.Tweening.Plugins.Core.PathCore;
using DG.Tweening.Plugins.Options;
#pragma warning disable 1591
namespace DG.Tweening
{
/// <summary>
/// Utility functions that deal with available Modules and rewrite them.
/// Modules defines:
/// - DOTAUDIO
/// - DOTPHYSICS
/// - DOTPHYSICS2D
/// - DOTSPRITE
/// - DOTUI
/// Extra defines set and used for implementation of external assets:
/// - DOTWEEN_TMP ► TextMesh Pro
/// - DOTWEEN_TK2D ► 2D Toolkit
/// </summary>
public static class DOTweenModuleUtils
{
static bool _initialized;
#region Reflection
/// <summary>
/// Called via Reflection by DOTweenComponent on Awake
/// </summary>
#if UNITY_2018_1_OR_NEWER
[UnityEngine.Scripting.Preserve]
#endif
public static void Init()
{
if (_initialized) return;
_initialized = true;
DOTweenExternalCommand.SetOrientationOnPath += Physics.SetOrientationOnPath;
#if UNITY_EDITOR
#if UNITY_4_3 || UNITY_4_4 || UNITY_4_5 || UNITY_4_6 || UNITY_5 || UNITY_2017_1
UnityEditor.EditorApplication.playmodeStateChanged += PlaymodeStateChanged;
#else
UnityEditor.EditorApplication.playModeStateChanged += PlaymodeStateChanged;
#endif
#endif
}
#if UNITY_2018_1_OR_NEWER
#pragma warning disable
[UnityEngine.Scripting.Preserve]
// Just used to preserve methods when building, never called
static void Preserver()
{
Assembly[] loadedAssemblies = AppDomain.CurrentDomain.GetAssemblies();
MethodInfo mi = typeof(MonoBehaviour).GetMethod("Stub");
}
#pragma warning restore
#endif
#endregion
#if UNITY_EDITOR
// Fires OnApplicationPause in DOTweenComponent even when Editor is paused (otherwise it's only fired at runtime)
#if UNITY_4_3 || UNITY_4_4 || UNITY_4_5 || UNITY_4_6 || UNITY_5 || UNITY_2017_1
static void PlaymodeStateChanged()
#else
static void PlaymodeStateChanged(UnityEditor.PlayModeStateChange state)
#endif
{
if (DOTween.instance == null) return;
DOTween.instance.OnApplicationPause(UnityEditor.EditorApplication.isPaused);
}
#endif
// █████████████████████████████████████████████████████████████████████████████████████████████████████████████████████
// ███ INTERNAL CLASSES ████████████████████████████████████████████████████████████████████████████████████████████████
// █████████████████████████████████████████████████████████████████████████████████████████████████████████████████████
public static class Physics
{
// Called via DOTweenExternalCommand callback
public static void SetOrientationOnPath(PathOptions options, Tween t, Quaternion newRot, Transform trans)
{
#if !DOTWEEN_NOPHYSICS // PHYSICS_MARKER
if (options.isRigidbody) ((Rigidbody)t.target).rotation = newRot;
else trans.rotation = newRot;
#else
trans.rotation = newRot;
#endif
}
// Returns FALSE if the DOTween's Physics2D Module is disabled, or if there's no Rigidbody2D attached
public static bool HasRigidbody2D(Component target)
{
#if !DOTWEEN_NOPHYSICS2D // PHYSICS2D_MARKER
return target.GetComponent<Rigidbody2D>() != null;
#else
return false;
#endif
}
#region Called via Reflection
// Called via Reflection by DOTweenPathInspector
// Returns FALSE if the DOTween's Physics Module is disabled, or if there's no rigidbody attached
#if UNITY_2018_1_OR_NEWER
[UnityEngine.Scripting.Preserve]
#endif
public static bool HasRigidbody(Component target)
{
#if !DOTWEEN_NOPHYSICS // PHYSICS_MARKER
return target.GetComponent<Rigidbody>() != null;
#else
return false;
#endif
}
// Called via Reflection by DOTweenPath
#if UNITY_2018_1_OR_NEWER
[UnityEngine.Scripting.Preserve]
#endif
public static TweenerCore<Vector3, Path, PathOptions> CreateDOTweenPathTween(
MonoBehaviour target, bool tweenRigidbody, bool isLocal, Path path, float duration, PathMode pathMode
){
TweenerCore<Vector3, Path, PathOptions> t = null;
bool rBodyFoundAndTweened = false;
#if !DOTWEEN_NOPHYSICS // PHYSICS_MARKER
if (tweenRigidbody) {
Rigidbody rBody = target.GetComponent<Rigidbody>();
if (rBody != null) {
rBodyFoundAndTweened = true;
t = isLocal
? rBody.DOLocalPath(path, duration, pathMode)
: rBody.DOPath(path, duration, pathMode);
}
}
#endif
#if !DOTWEEN_NOPHYSICS2D // PHYSICS2D_MARKER
if (!rBodyFoundAndTweened && tweenRigidbody) {
Rigidbody2D rBody2D = target.GetComponent<Rigidbody2D>();
if (rBody2D != null) {
rBodyFoundAndTweened = true;
t = isLocal
? rBody2D.DOLocalPath(path, duration, pathMode)
: rBody2D.DOPath(path, duration, pathMode);
}
}
#endif
if (!rBodyFoundAndTweened) {
t = isLocal
? target.transform.DOLocalPath(path, duration, pathMode)
: target.transform.DOPath(path, duration, pathMode);
}
return t;
}
#endregion
}
}
}

View File

@@ -0,0 +1,15 @@
fileFormatVersion: 2
guid: 7bcaf917d9cf5b84090421a5a2abe42e
MonoImporter:
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defaultReferences: []
executionOrder: 0
icon: {instanceID: 0}
userData:
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packageName: DOTween (HOTween v2)
packageVersion: 1.2.825
assetPath: Assets/Plugins/Demigiant/DOTween/Modules/DOTweenModuleUtils.cs
uploadId: 862444

View File

@@ -0,0 +1,29 @@
DOTween and DOTween Pro are copyright (c) 2014-2018 Daniele Giardini - Demigiant
// IMPORTANT!!! /////////////////////////////////////////////
// Upgrading DOTween from versions older than 1.2.000 ///////
// (or DOTween Pro older than 1.0.000) //////////////////////
-------------------------------------------------------------
If you're upgrading your project from a version of DOTween older than 1.2.000 (or DOTween Pro older than 1.0.000) please follow these instructions carefully.
1) Import the new version in the same folder as the previous one, overwriting old files. A lot of errors will appear but don't worry
2) Close and reopen Unity (and your project). This is fundamental: skipping this step will cause a bloodbath
3) Open DOTween's Utility Panel (Tools > Demigiant > DOTween Utility Panel) if it doesn't open automatically, then press "Setup DOTween...": this will run the upgrade setup
4) From the Add/Remove Modules panel that opens, activate/deactivate Modules for Unity systems and for external assets (Pro version only)
// GET STARTED //////////////////////////////////////////////
- After importing a new DOTween update, select DOTween's Utility Panel from the "Tools/Demigiant" menu (if it doesn't open automatically) and press the "Setup DOTween..." button to activate/deactivate Modules. You can also access a Preferences Tab from there to choose default settings for DOTween.
- In your code, add "using DG.Tweening" to each class where you want to use DOTween.
- You're ready to tween. Check out the links below for full documentation and license info.
// LINKS ///////////////////////////////////////////////////////
DOTween website (documentation, examples, etc): http://dotween.demigiant.com
DOTween license: http://dotween.demigiant.com/license.php
DOTween repository (Google Code): https://code.google.com/p/dotween/
Demigiant website (documentation, examples, etc): http://www.demigiant.com
// NOTES //////////////////////////////////////////////////////
- DOTween's Utility Panel can be found under "Tools > Demigiant > DOTween Utility Panel" and also contains other useful options, plus a tab to set DOTween's preferences

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View File

@@ -37,12 +37,12 @@ namespace Hallucinate.UI
textDisplay.text = text;
// Animation using PrimeTween
PrimeTween.Sequence.Create()
/*PrimeTween.Sequence.Create()
.Group(Tween.Alpha(canvasGroup, 1f, 0.3f))
.Group(Tween.Scale(bubbleRect, Vector3.zero, Vector3.one, 0.4f, Ease.OutBack))
.Chain(Tween.Delay(duration))
.Chain(Tween.Alpha(canvasGroup, 0f, 0.5f))
.OnComplete(() => gameObject.SetActive(false));
.OnComplete(() => gameObject.SetActive(false));*/
}
}
}

View File

@@ -337,10 +337,10 @@ namespace Hallucinate.UI
return;
}
if (UIManager.Instance != null)
/*if (UIManager.Instance != null)
{
UIManager.Instance.OnBackToMenu();
}
}*/
}
public void OnSessionListUpdated(NetworkRunner runner, List<SessionInfo> sessionList)
@@ -391,7 +391,7 @@ namespace Hallucinate.UI
SceneManager = gameObject.GetComponent<NetworkSceneManagerDefault>() ?? gameObject.AddComponent<NetworkSceneManagerDefault>()
});
if (result.Ok)
/*if (result.Ok)
{
Debug.Log("[BasicSpawner] Host Migration SUCCESSFUL");
}
@@ -399,7 +399,7 @@ namespace Hallucinate.UI
{
Debug.LogError($"[BasicSpawner] Host Migration FAILED: {result.ShutdownReason}");
UIManager.Instance?.OnBackToMenu();
}
}*/
}
public void OnSceneLoadDone(NetworkRunner runner)
@@ -414,10 +414,10 @@ namespace Hallucinate.UI
_spawnedCharacters.Add(player, networkPlayerObject);
}
}
if (currentSceneName == "Main Scene")
/*if (currentSceneName == "Main Scene")
{
UIManager.Instance?.OnGameStarted();
}
}*/
}

View File

@@ -2,6 +2,7 @@ using UnityEngine;
using UnityEngine.UIElements;
using PrimeTween;
using System.Threading.Tasks;
using DG.Tweening;
namespace Hallucinate.UI
{
@@ -50,7 +51,7 @@ namespace Hallucinate.UI
public virtual void Update() { }
public virtual async Task PlayTransitionIn()
/*public virtual async Task PlayTransitionIn()
{
if (root == null) return;
@@ -70,6 +71,6 @@ namespace Hallucinate.UI
onValueChange: val => root.style.translate = new StyleTranslate(new Translate(Length.Percent(val), 0)));
Hide();
}
}*/
}
}

View File

@@ -2,6 +2,7 @@ using UnityEngine;
using UnityEngine.UIElements;
using PrimeTween;
using System.Threading.Tasks;
using DG.Tweening;
namespace Hallucinate.UI
{
@@ -73,25 +74,25 @@ namespace Hallucinate.UI
public void WakeUpHUD()
{
_lastActionTime = Time.time;
if (_isFaded)
/*if (_isFaded)
{
_isFaded = false;
Tween.Custom(_topLeft.style.opacity.value, 1f, duration: 0.3f, onValueChange: val => _topLeft.style.opacity = val);
Tween.Custom(_bottomLeft.style.opacity.value, 1f, duration: 0.3f, onValueChange: val => _bottomLeft.style.opacity = val);
}
}*/
}
public override void Update()
{
if (!_isFaded && Time.time - _lastActionTime > FADE_TIMEOUT)
/*if (!_isFaded && Time.time - _lastActionTime > FADE_TIMEOUT)
{
_isFaded = true;
Tween.Custom(_topLeft.style.opacity.value, 0.2f, duration: 1.0f, onValueChange: val => _topLeft.style.opacity = val);
Tween.Custom(_bottomLeft.style.opacity.value, 0.2f, duration: 1.0f, onValueChange: val => _bottomLeft.style.opacity = val);
}
}*/
}
public override Task PlayTransitionIn()
/*public override Task PlayTransitionIn()
{
Show();
_topLeft.style.opacity = 1;
@@ -103,6 +104,6 @@ namespace Hallucinate.UI
{
Hide();
return Task.CompletedTask;
}
}*/
}
}

View File

@@ -75,7 +75,7 @@ namespace Hallucinate.UI
root.Q<Button>("GoToCreateBtn").clicked += ShowCreate;
root.Q<Button>("CancelCreateBtn").clicked += ShowJoin;
root.Q<Button>("BackToMenuBtn").clicked += async () => { if (_isBusy) return; await uiManager.Pop(); };
/*root.Q<Button>("BackToMenuBtn").clicked += async () => { if (_isBusy) return; await uiManager.Pop(); };*/
_confirmCreateBtn = root.Q<Button>("ConfirmCreateBtn");
if (_confirmCreateBtn != null) _confirmCreateBtn.clicked += OnCreateRoomClicked;
root.Q<Button>("ConfirmJoinBtn").clicked += OnConfirmPasswordClicked;
@@ -142,12 +142,12 @@ namespace Hallucinate.UI
private string GetT(string key) => LocalizationManager.Instance != null ? LocalizationManager.Instance.GetLocalizedString(key) : key;
public void SetRoomTemplate(VisualTreeAsset template) => _roomItemTemplate = template;
public override async Task PlayTransitionIn()
/*public override async Task PlayTransitionIn()
{
_isBusy = false;
await base.PlayTransitionIn();
ShowJoin();
}
}*/
public void ShowJoin()
{

View File

@@ -2,6 +2,7 @@ using UnityEngine;
using UnityEngine.UIElements;
using PrimeTween;
using System.Threading.Tasks;
using DG.Tweening;
namespace Hallucinate.UI
{
@@ -19,8 +20,10 @@ namespace Hallucinate.UI
_errorLabel = root.Q<Label>("ErrorMsg");
_confirmBtn = root.Q<Button>("ConfirmBtn");
/*
if (_confirmBtn != null)
_confirmBtn.clicked += OnConfirmClicked;
*/
// Đăng ký Localization
if (LocalizationManager.Instance != null)
@@ -45,7 +48,7 @@ namespace Hallucinate.UI
}
private async void OnConfirmClicked()
/*private async void OnConfirmClicked()
{
string username = _nameInput.value.Trim();
@@ -89,16 +92,16 @@ namespace Hallucinate.UI
// _confirmBtn.text = "CONFIRM";
// }
}
}
}*/
private void ShowError(string msg)
/*private void ShowError(string msg)
{
if (_errorLabel == null) return;
_errorLabel.text = msg;
_errorLabel.style.display = DisplayStyle.Flex;
}
}*/
public override async Task PlayTransitionIn()
/*public override async Task PlayTransitionIn()
{
// Login hiện ra như một overlay trung tâm
if (root != null)
@@ -108,6 +111,6 @@ namespace Hallucinate.UI
}
Show();
await Tween.Custom(0f, 1f, duration: 0.5f, onValueChange: val => root.style.opacity = val);
}
}*/
}
}

View File

@@ -2,6 +2,7 @@ using UnityEngine;
using UnityEngine.UIElements;
using PrimeTween;
using System.Threading.Tasks;
using DG.Tweening;
namespace Hallucinate.UI
{
@@ -41,15 +42,15 @@ namespace Hallucinate.UI
// Lắng nghe sự kiện thay đổi kích thước toàn màn hình
root.RegisterCallback<GeometryChangedEvent>(OnScreenResize);
_logo.RegisterCallback<ClickEvent>(OnLogoClicked);
/*_logo.RegisterCallback<ClickEvent>(OnLogoClicked);*/
var settingsBtn = root.Q<Button>("SettingsBtn");
if (settingsBtn != null) settingsBtn.clicked += () => { if (_isBusy) return; uiManager.ToggleSettings(); };
/*if (settingsBtn != null) settingsBtn.clicked += () => { if (_isBusy) return; uiManager.ToggleSettings(); };
root.Q<Button>("JoinBtn").clicked += async () => { if (_isBusy) return; _isBusy = true; await uiManager.Push<LobbyController>(); };
root.Q<Button>("CreateBtn").clicked += async () => { if (_isBusy) return; _isBusy = true; await uiManager.Push<LobbyController>(); };
root.Q<Button>("ProfileBtn").clicked += async () => { if (_isBusy) return; _isBusy = true; await uiManager.Push<ProfileController>(); };
root.Q<Button>("ExitBtn").clicked += () => Application.Quit();
root.Q<Button>("ExitBtn").clicked += () => Application.Quit();*/
// Đăng ký Localization
if (LocalizationManager.Instance != null)
@@ -130,19 +131,19 @@ namespace Hallucinate.UI
StartRotation();
}
private void StartRotation()
{
if (_currentIcon == null) return;
/*if (_currentIcon == null) return;
if (_rotationTween.isAlive) _rotationTween.Stop();
_rotationTween = Tween.Custom(0f, 360f, duration: 4f,
onValueChange: val => _logo.style.rotate = new StyleRotate(new Rotate(Angle.Degrees(val))),
cycles: -1,
ease: Ease.Linear);
ease: Ease.Linear);*/
}
public override async Task PlayTransitionIn()
/*public override async Task PlayTransitionIn()
{
_isBusy = false;
_lastInteractionTime = Time.time;
@@ -164,11 +165,11 @@ namespace Hallucinate.UI
public override async Task PlayTransitionOut()
{
if (_rotationTween.isAlive) _rotationTween.Stop();
await base.PlayTransitionOut();
}
/*if (_rotationTween.isAlive) _rotationTween.Stop();
await base.PlayTransitionOut();#1#
}*/
private async void OnLogoClicked(ClickEvent evt)
/*private async void OnLogoClicked(ClickEvent evt)
{
if (_isBusy) return;
_lastInteractionTime = Time.time;
@@ -178,7 +179,7 @@ namespace Hallucinate.UI
_isBusy = true;
await uiManager.Push<LobbyController>();
}
}
}*/
private void TransitionToRibbon()
{
@@ -187,7 +188,9 @@ namespace Hallucinate.UI
_lastInteractionTime = Time.time;
_ribbon.style.display = DisplayStyle.Flex;
/*
Tween.Custom(0f, 1f, duration: 0.3f, onValueChange: val => _ribbon.style.opacity = val);
*/
// Đợi một frame để Ribbon layout xong rồi mới lấy vị trí LogoSpace
_logoSpace.RegisterCallback<GeometryChangedEvent>(OnLogoSpaceReady);
@@ -215,7 +218,7 @@ namespace Hallucinate.UI
if (animate)
{
Tween.Custom(_logo.resolvedStyle.left, targetX, duration: 0.5f,
/*Tween.Custom(_logo.resolvedStyle.left, targetX, duration: 0.5f,
onValueChange: val => _logo.style.left = val,
ease: Ease.OutQuad);
@@ -229,7 +232,7 @@ namespace Hallucinate.UI
Tween.Custom(_logo.resolvedStyle.height, 100f, duration: 0.5f,
onValueChange: val => _logo.style.height = val,
ease: Ease.OutQuad);
ease: Ease.OutQuad);*/
}
else
{
@@ -248,7 +251,7 @@ namespace Hallucinate.UI
_currentState = MenuState.Idle;
// Quay lại dùng phần trăm để tự động căn giữa
Tween.Custom(_logo.resolvedStyle.width, 200f, duration: 0.5f, onValueChange: val => _logo.style.width = val, ease: Ease.OutQuad);
/*Tween.Custom(_logo.resolvedStyle.width, 200f, duration: 0.5f, onValueChange: val => _logo.style.width = val, ease: Ease.OutQuad);
Tween.Custom(_logo.resolvedStyle.height, 200f, duration: 0.5f, onValueChange: val => _logo.style.height = val, ease: Ease.OutQuad);
// Animate left/top về 50%
@@ -265,7 +268,7 @@ namespace Hallucinate.UI
});
Tween.Custom(1f, 0f, duration: 0.5f, onValueChange: val => _ribbon.style.opacity = val)
.OnComplete(() => _ribbon.style.display = DisplayStyle.None);
.OnComplete(() => _ribbon.style.display = DisplayStyle.None);*/
}
public override void Update()
@@ -283,12 +286,12 @@ namespace Hallucinate.UI
private void StartPulse()
{
if (_pulseTween.isAlive) _pulseTween.Stop();
/*if (_pulseTween.isAlive) _pulseTween.Stop();
_pulseTween = Tween.Custom(Vector3.one, Vector3.one * 1.1f, duration: 0.8f,
onValueChange: val => _logo.style.scale = new StyleScale(new Scale(val)),
cycles: -1,
cycleMode: CycleMode.Yoyo,
ease: Ease.InOutSine);
ease: Ease.InOutSine);*/
}
private void OnDestroy()

View File

@@ -17,7 +17,7 @@ namespace Hallucinate.UI
_resumeBtn = root.Q<Button>("ResumeBtn");
_quitBtn = root.Q<Button>("QuitBtn");
if (_resumeBtn != null) _resumeBtn.clicked += OnResumeClicked;
/*if (_resumeBtn != null) _resumeBtn.clicked += OnResumeClicked;*/
if (_quitBtn != null) _quitBtn.clicked += OnQuitClicked;
ApplyLocalization();
@@ -40,37 +40,37 @@ namespace Hallucinate.UI
if (title != null) title.text = GetLoc("PAUSE_TITLE");
}
private void OnResumeClicked()
/*private void OnResumeClicked()
{
uiManager.TogglePauseMenu();
}
}*/
private void OnQuitClicked()
{
Debug.Log("[PauseMenu] Quit clicked - shutting down runner.");
if (BasicSpawner.Instance != null && BasicSpawner.Instance.Runner != null)
/*if (BasicSpawner.Instance != null && BasicSpawner.Instance.Runner != null)
{
BasicSpawner.Instance.Runner.Shutdown();
}
else
{
uiManager.OnBackToMenu();
}
}*/
}
public override async Task PlayTransitionIn()
/*public override async Task PlayTransitionIn()
{
Show();
/*Show();
root.style.opacity = 0;
await PrimeTween.Tween.Custom(0f, 1f, duration: 0.2f, onValueChange: val => root.style.opacity = val);
await Task.Delay(200);
await Task.Delay(200);#1#
}
public override async Task PlayTransitionOut()
{
await PrimeTween.Tween.Custom(1f, 0f, duration: 0.2f, onValueChange: val => root.style.opacity = val);
/*await PrimeTween.Tween.Custom(1f, 0f, duration: 0.2f, onValueChange: val => root.style.opacity = val);
await Task.Delay(200);
Hide();
}
Hide();#1#
}*/
}
}

View File

@@ -31,12 +31,12 @@ namespace Hallucinate.UI
_winRateText = root.Q<Label>("WinRateText");
_logoutBtn = root.Q<Button>("LogoutBtn");
root.Q<Button>("BackBtn").clicked += async () => await uiManager.Pop();
/*root.Q<Button>("BackBtn").clicked += async () => await uiManager.Pop();*/
if (_logoutBtn != null)
/*if (_logoutBtn != null)
{
_logoutBtn.clicked += Logout;
}
}*/
if (LocalizationManager.Instance != null)
{
@@ -70,11 +70,11 @@ namespace Hallucinate.UI
if (_logoutBtn != null) _logoutBtn.text = LocalizationManager.Instance.GetLocalizedString("PROFILE_LOGOUT");
}
public override async Task PlayTransitionIn()
/*public override async Task PlayTransitionIn()
{
await LoadProfileData(); // Refresh data every time we show the profile
await base.PlayTransitionIn();
}
}*/
private async Task LoadProfileData()
{
@@ -109,7 +109,7 @@ namespace Hallucinate.UI
}
}
private async void Logout()
/*private async void Logout()
{
// Clear local save data
PlayerPrefs.DeleteKey("Username");
@@ -128,7 +128,7 @@ namespace Hallucinate.UI
// Redirect to Login Screen
await uiManager.Push<LoginController>();
}
}*/
}
}

View File

@@ -6,6 +6,7 @@ using System.Collections.Generic;
using System.Linq;
using System;
using System.Threading.Tasks;
using DG.Tweening;
using OnlyScove.Scripts;
using Hallucinate.Audio;
using PrimeTween;
@@ -51,7 +52,7 @@ namespace Hallucinate.UI
private float _masterVol = 80f;
private int _overlayActiveCount = 0;
public override void Initialize(VisualElement uxmlRoot, UIManager manager)
/*public override void Initialize(VisualElement uxmlRoot, UIManager manager)
{
base.Initialize(uxmlRoot, manager);
@@ -96,7 +97,7 @@ namespace Hallucinate.UI
// Render ban đầu
RefreshUI();
ApplyVideoSettings();
}
}*/
private void OnLanguageChanged()
{
@@ -127,31 +128,31 @@ namespace Hallucinate.UI
private void OnSidebarPointerEnter(PointerEnterEvent evt)
{
_hoverTimer.Stop();
ExpandSidebar();
/*_hoverTimer.Stop();
ExpandSidebar();*/
}
private void OnSidebarPointerLeave(PointerLeaveEvent evt)
{
_hoverTimer.Stop();
CollapseSidebar();
/*_hoverTimer.Stop();
CollapseSidebar();*/
}
private void ExpandSidebar()
/*private void ExpandSidebar()
{
if (_isExpanded) return;
_isExpanded = true;
_tabsColumn.AddToClassList("sidebar-expanded");
Tween.Custom(_tabsColumn.resolvedStyle.width, 240f, duration: 0.5f, ease: Ease.OutQuart, onValueChange: val => _tabsColumn.style.width = val);
}
}*/
private void CollapseSidebar()
/*rivate void CollapseSidebar()
{
if (!_isExpanded) return;
_isExpanded = false;
_tabsColumn.RemoveFromClassList("sidebar-expanded");
Tween.Custom(_tabsColumn.resolvedStyle.width, 80f, duration: 0.45f, ease: Ease.OutQuart, onValueChange: val => _tabsColumn.style.width = val);
}
}*/
private void RenderAllSettings()
{
@@ -186,9 +187,9 @@ namespace Hallucinate.UI
HighlightTab(tabId);
float targetY = header.layout.y;
Tween.Custom(_content.scrollOffset.y, targetY, duration: 0.5f, ease: Ease.OutQuart, onValueChange: val => {
/*Tween.Custom(_content.scrollOffset.y, targetY, duration: 0.5f, ease: Ease.OutQuart, onValueChange: val => {
_content.scrollOffset = new Vector2(0, val);
}).OnComplete(() => _isManualScrolling = false);
}).OnComplete(() => _isManualScrolling = false);*/
}
private void OnScrollValueChanged(float val)
@@ -497,11 +498,11 @@ namespace Hallucinate.UI
_masterVolLabel.text = $"{Mathf.RoundToInt(_masterVol)}%";
int currentId = _overlayActiveCount;
await Task.Delay(3000);
if (currentId == _overlayActiveCount && _hoveredSubVolume == null)
/*if (currentId == _overlayActiveCount && _hoveredSubVolume == null)
{
Tween.Custom(1f, 0f, duration: 0.5f, onValueChange: val => _volumeContainer.style.opacity = val)
.OnComplete(() => { if (_volumeContainer.style.opacity == 0f) _volumeContainer.style.display = DisplayStyle.None; });
}
}*/
}
private VisualElement CreateSection(string title)
@@ -585,7 +586,7 @@ namespace Hallucinate.UI
}
}
public override async Task PlayTransitionIn()
/*public override async Task PlayTransitionIn()
{
root.style.display = DisplayStyle.Flex;
_sidebar.style.translate = new StyleTranslate(new Translate(Length.Percent(-100), 0));
@@ -596,7 +597,7 @@ namespace Hallucinate.UI
{
await Tween.Custom(0f, -100f, duration: 0.3f, ease: Ease.InQuad, onValueChange: val => _sidebar.style.translate = new StyleTranslate(new Translate(Length.Percent(val), 0)));
Hide();
}
}*/
private void OnDestroy()
{

View File

@@ -1,6 +1,7 @@
using System;
using System.Collections.Generic;
using System.Threading.Tasks;
using DG.Tweening;
using UnityEngine;
using UnityEngine.UIElements;
using PrimeTween;
@@ -138,7 +139,7 @@ namespace Hallucinate.UI
}
}
public void OnGameStarted()
/*public void OnGameStarted()
{
_ = Push<HUDController>();
}
@@ -146,7 +147,7 @@ namespace Hallucinate.UI
public void OnBackToMenu()
{
_ = Push<MainMenuController>();
}
}*/
public void SetUIScale(float scale)
{
@@ -201,14 +202,15 @@ namespace Hallucinate.UI
_rootElement.RegisterCallback<PointerDownEvent>(OnGlobalClick, TrickleDown.TrickleDown);
if (inputReader != null)
/*if (inputReader != null)
{
inputReader.OnToggleSettingsEvent += ToggleSettings;
inputReader.OnCancelEvent += HandleCancel;
}
*/
InitializeControllers();
CheckLoginStatus();
/*CheckLoginStatus();*/
}
private void InitializeTrailPool()
@@ -229,7 +231,7 @@ namespace Hallucinate.UI
}
}
private void CheckLoginStatus()
/*private void CheckLoginStatus()
{
string savedName = PlayerPrefs.GetString("Username", "");
if (string.IsNullOrEmpty(savedName)) _ = Push<LoginController>();
@@ -245,18 +247,18 @@ namespace Hallucinate.UI
inputReader.OnToggleSettingsEvent -= ToggleSettings;
inputReader.OnCancelEvent -= HandleCancel;
}
}
}*/
private void HandleCancel()
/*private void HandleCancel()
{
if (_isSettingsOpen) ToggleSettings();
else if (UnityEngine.SceneManagement.SceneManager.GetActiveScene().name == "Main Scene")
{
TogglePauseMenu();
}
}
}*/
public async void TogglePauseMenu()
/*public async void TogglePauseMenu()
{
if (_pauseMenuController == null) return;
if (!_isPauseMenuOpen)
@@ -283,9 +285,9 @@ namespace Hallucinate.UI
await _pauseMenuController.PlayTransitionOut();
}
}
}*/
public async void ToggleSettings()
/*public async void ToggleSettings()
{
if (_settingsController == null) return;
if (!_isSettingsOpen)
@@ -293,14 +295,15 @@ namespace Hallucinate.UI
_isSettingsOpen = true;
_settingsController.Root.BringToFront();
if (_cursorLayer != null) _cursorLayer.BringToFront();
await _settingsController.PlayTransitionIn();
await /*_settingsController.PlayTransitionIn();#1#
}
else
{
_isSettingsOpen = false;
await _settingsController.PlayTransitionOut();
await /*_settingsController.PlayTransitionOut();#1#
}
}
*/
private void Update()
{
@@ -340,7 +343,7 @@ namespace Hallucinate.UI
var particle = _trailPool[_currentTrailIndex];
_currentTrailIndex = (_currentTrailIndex + 1) % MAX_TRAIL_PARTICLES;
Tween.StopAll(particle);
/*Tween.StopAll(particle);*/
particle.style.display = DisplayStyle.Flex;
particle.style.left = pos.x;
particle.style.top = pos.y;
@@ -374,8 +377,8 @@ namespace Hallucinate.UI
_cursorLayer.Add(ripple);
Tween.Custom(Vector3.one, Vector3.one * 2.5f, duration: 0.4f, onValueChange: val => ripple.style.scale = new StyleScale(new Scale(val)), ease: Ease.OutQuad);
Tween.Custom(1f, 0f, duration: 0.4f, onValueChange: val => ripple.style.opacity = val).OnComplete(() => ripple.RemoveFromHierarchy());
/*Tween.Custom(Vector3.one, Vector3.one * 2.5f, duration: 0.4f, onValueChange: val => ripple.style.scale = new StyleScale(new Scale(val)), ease: Ease.OutQuad);
Tween.Custom(1f, 0f, duration: 0.4f, onValueChange: val => ripple.style.opacity = val).OnComplete(() => ripple.RemoveFromHierarchy());*/
}
private void InitializeControllers()
@@ -411,7 +414,7 @@ namespace Hallucinate.UI
return controller;
}
public async Task Push<T>() where T : BaseUIController
/*public async Task Push<T>() where T : BaseUIController
{
if (!_controllers.TryGetValue(typeof(T), out var newScreen)) return;
if (_history.Count > 0 && _history.Peek() == newScreen) return;
@@ -427,6 +430,6 @@ namespace Hallucinate.UI
await _history.Pop().PlayTransitionOut();
if (_history.Count > 0) await _history.Peek().PlayTransitionIn();
if (_cursorLayer != null) _cursorLayer.BringToFront();
}
}*/
}
}

View File

@@ -0,0 +1,8 @@
fileFormatVersion: 2
guid: 9a78f7e76907a724aaf0e4efefb9ec01
folderAsset: yes
DefaultImporter:
externalObjects: {}
userData:
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@@ -0,0 +1,8 @@
fileFormatVersion: 2
guid: bafff9b1bbcf26e4a88401d639bf76bf
folderAsset: yes
DefaultImporter:
externalObjects: {}
userData:
assetBundleName:
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@@ -0,0 +1,8 @@
fileFormatVersion: 2
guid: 8bc68afd635c3474887a28f00b342edd
folderAsset: yes
DefaultImporter:
externalObjects: {}
userData:
assetBundleName:
assetBundleVariant:

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@@ -0,0 +1,15 @@
# Default ignored files
/shelf/
/workspace.xml
# Rider ignored files
/contentModel.xml
/projectSettingsUpdater.xml
/.idea.UI.iml
/modules.xml
# Editor-based HTTP Client requests
/httpRequests/
# Ignored default folder with query files
/queries/
# Datasource local storage ignored files
/dataSources/
/dataSources.local.xml

View File

@@ -0,0 +1,4 @@
<?xml version="1.0" encoding="UTF-8"?>
<project version="4">
<component name="Encoding" addBOMForNewFiles="with BOM under Windows, with no BOM otherwise" />
</project>

View File

@@ -0,0 +1,6 @@
<?xml version="1.0" encoding="UTF-8"?>
<project version="4">
<component name="VcsDirectoryMappings">
<mapping directory="$PROJECT_DIR$/../../../../../.." vcs="Git" />
</component>
</project>

View File

@@ -22,7 +22,6 @@
"com.unity.ugui": "2.0.0",
"com.unity.visualeffectgraph": "17.3.0",
"com.unity.visualscripting": "1.9.9",
"com.wooshii.foldericons": "https://github.com/WooshiiDev/Unity-Folder-Icons.git",
"com.unity.modules.accessibility": "1.0.0",
"com.unity.modules.adaptiveperformance": "1.0.0",
"com.unity.modules.ai": "1.0.0",

View File

@@ -273,13 +273,6 @@
},
"url": "https://packages.unity.com"
},
"com.wooshii.foldericons": {
"version": "https://github.com/WooshiiDev/Unity-Folder-Icons.git",
"depth": 0,
"source": "git",
"dependencies": {},
"hash": "201a18f355d3e9bc49b337e7c93423743ab42b2f"
},
"com.unity.modules.accessibility": {
"version": "1.0.0",
"depth": 0,

View File

@@ -61,7 +61,7 @@ GraphicsSettings:
UnityEngine.Rendering.Universal.UniversalRenderPipeline: {fileID: 11400000, guid: 18dc0cd2c080841dea60987a38ce93fa, type: 2}
m_ShaderBuildSettings:
keywordDeclarationOverrides: []
m_LightsUseLinearIntensity: 1
m_LightsUseLinearIntensity: 0
m_LightsUseColorTemperature: 1
m_LogWhenShaderIsCompiled: 0
m_LightProbeOutsideHullStrategy: 0

View File

@@ -1173,4 +1173,196 @@ InputManager:
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Enable Debug Button 1
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: left ctrl
altNegativeButton:
altPositiveButton: joystick button 8
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Enable Debug Button 2
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: backspace
altNegativeButton:
altPositiveButton: joystick button 9
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Reset
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: left alt
altNegativeButton:
altPositiveButton: joystick button 1
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Next
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: page down
altNegativeButton:
altPositiveButton: joystick button 5
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Previous
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: page up
altNegativeButton:
altPositiveButton: joystick button 4
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Validate
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: return
altNegativeButton:
altPositiveButton: joystick button 0
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Persistent
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: right shift
altNegativeButton:
altPositiveButton: joystick button 2
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Multiplier
descriptiveName:
descriptiveNegativeName:
negativeButton:
positiveButton: left shift
altNegativeButton:
altPositiveButton: joystick button 3
gravity: 0
dead: 0
sensitivity: 0
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Horizontal
descriptiveName:
descriptiveNegativeName:
negativeButton: left
positiveButton: right
altNegativeButton:
altPositiveButton:
gravity: 1000
dead: 0.001
sensitivity: 1000
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Vertical
descriptiveName:
descriptiveNegativeName:
negativeButton: down
positiveButton: up
altNegativeButton:
altPositiveButton:
gravity: 1000
dead: 0.001
sensitivity: 1000
snap: 0
invert: 0
type: 0
axis: 0
joyNum: 0
- serializedVersion: 3
m_Name: Debug Vertical
descriptiveName:
descriptiveNegativeName:
negativeButton: down
positiveButton: up
altNegativeButton:
altPositiveButton:
gravity: 1000
dead: 0.001
sensitivity: 1000
snap: 0
invert: 0
type: 2
axis: 6
joyNum: 0
- serializedVersion: 3
m_Name: Debug Horizontal
descriptiveName:
descriptiveNegativeName:
negativeButton: left
positiveButton: right
altNegativeButton:
altPositiveButton:
gravity: 1000
dead: 0.001
sensitivity: 1000
snap: 0
invert: 0
type: 2
axis: 5
joyNum: 0
m_UsePhysicalKeys: 1

View File

@@ -4,7 +4,7 @@
PlayerSettings:
m_ObjectHideFlags: 0
serializedVersion: 28
productGUID: 74219575553b5a449a8764d63c7b341a
productGUID: b326b5f0b2b0c4c4780e362c7f2918cd
AndroidProfiler: 0
AndroidFilterTouchesWhenObscured: 0
AndroidEnableSustainedPerformanceMode: 0
@@ -12,11 +12,11 @@ PlayerSettings:
targetDevice: 2
useOnDemandResources: 0
accelerometerFrequency: 60
companyName: Scovania
productName: HALLUCINATE
companyName: DefaultCompany
productName: BABA_YAGA
defaultCursor: {fileID: 0}
cursorHotspot: {x: 0, y: 0}
m_SplashScreenBackgroundColor: {r: 0.13725491, g: 0.12156863, b: 0.1254902, a: 1}
m_SplashScreenBackgroundColor: {r: 0.12156863, g: 0.12156863, b: 0.1254902, a: 1}
m_ShowUnitySplashScreen: 1
m_ShowUnitySplashLogo: 1
m_SplashScreenOverlayOpacity: 1
@@ -40,14 +40,14 @@ PlayerSettings:
width: 1
height: 1
m_SplashScreenLogos: []
m_VirtualRealitySplashScreen: {fileID: 2800000, guid: 6eeaebf0e7047544cbe9984637a7a603, type: 3}
m_VirtualRealitySplashScreen: {fileID: 0}
m_HolographicTrackingLossScreen: {fileID: 0}
defaultScreenWidth: 1024
defaultScreenHeight: 768
defaultScreenWidth: 1920
defaultScreenHeight: 1080
defaultScreenWidthWeb: 960
defaultScreenHeightWeb: 600
m_StereoRenderingPath: 0
m_ActiveColorSpace: 1
m_ActiveColorSpace: 0
unsupportedMSAAFallback: 0
m_SpriteBatchMaxVertexCount: 65535
m_SpriteBatchVertexThreshold: 300
@@ -69,7 +69,7 @@ PlayerSettings:
disableDepthAndStencilBuffers: 0
androidStartInFullscreen: 1
androidRenderOutsideSafeArea: 1
androidUseSwappy: 0
androidUseSwappy: 1
androidDisplayOptions: 1
androidBlitType: 0
androidResizeableActivity: 1
@@ -99,8 +99,8 @@ PlayerSettings:
resizableWindow: 0
useMacAppStoreValidation: 0
macAppStoreCategory: public.app-category.games
gpuSkinning: 1
meshDeformation: 2
gpuSkinning: 0
meshDeformation: 0
xboxPIXTextureCapture: 0
xboxEnableAvatar: 0
xboxEnableKinect: 0
@@ -137,13 +137,13 @@ PlayerSettings:
switchGraphicsJobsSyncAfterKick: 1
vulkanNumSwapchainBuffers: 3
vulkanEnableSetSRGBWrite: 0
vulkanEnablePreTransform: 1
vulkanEnablePreTransform: 0
vulkanEnableLateAcquireNextImage: 0
vulkanEnableCommandBufferRecycling: 1
loadStoreDebugModeEnabled: 0
visionOSBundleVersion: 1.0
tvOSBundleVersion: 1.0
bundleVersion: 0.1.0
bundleVersion: 1.0
preloadedAssets: []
metroInputSource: 0
wsaTransparentSwapchain: 0
@@ -165,16 +165,13 @@ PlayerSettings:
androidSupportedAspectRatio: 1
androidMaxAspectRatio: 2.4
androidMinAspectRatio: 1
applicationIdentifier:
Android: com.UnityTechnologies.com.unity.template.urpblank
Standalone: com.Unity-Technologies.com.unity.template.urp-blank
iPhone: com.Unity-Technologies.com.unity.template.urp-blank
applicationIdentifier: {}
buildNumber:
Standalone: 0
VisionOS: 0
iPhone: 0
tvOS: 0
overrideDefaultApplicationIdentifier: 1
overrideDefaultApplicationIdentifier: 0
AndroidBundleVersionCode: 1
AndroidMinSdkVersion: 25
AndroidTargetSdkVersion: 0
@@ -256,9 +253,9 @@ PlayerSettings:
iOSAutomaticallyDetectAndAddCapabilities: 1
appleEnableProMotion: 0
shaderPrecisionModel: 0
clonedFromGUID: 3c72c65a16f0acb438eed22b8b16c24a
templatePackageId: com.unity.template.urp-blank@17.0.14
templateDefaultScene: Assets/Scenes/SampleScene.unity
clonedFromGUID: 00000000000000000000000000000000
templatePackageId:
templateDefaultScene:
useCustomMainManifest: 0
useCustomLauncherManifest: 0
useCustomMainGradleTemplate: 0
@@ -268,7 +265,7 @@ PlayerSettings:
useCustomGradleSettingsTemplate: 0
useCustomProguardFile: 0
AndroidTargetArchitectures: 2
AndroidAllowedArchitectures: -13
AndroidAllowedArchitectures: -1
AndroidSplashScreenScale: 0
androidSplashScreen: {fileID: 0}
AndroidKeystoreName:
@@ -293,258 +290,16 @@ PlayerSettings:
AndroidMinifyRelease: 0
AndroidMinifyDebug: 0
AndroidValidateAppBundleSize: 1
AndroidAppBundleSizeToValidate: 150
AndroidAppBundleSizeToValidate: 200
AndroidReportGooglePlayAppDependencies: 1
androidSymbolsSizeThreshold: 800
m_BuildTargetIcons:
- m_BuildTarget:
m_Icons:
- serializedVersion: 2
m_Icon: {fileID: 2800000, guid: 87bdbf8b24b50c943ab70ce235338dc7, type: 3}
m_Width: 128
m_Height: 128
m_Kind: 0
m_BuildTargetPlatformIcons:
- m_BuildTarget: iPhone
m_Icons:
- m_Textures: []
m_Width: 180
m_Height: 180
m_Kind: 0
m_SubKind: iPhone
- m_Textures: []
m_Width: 120
m_Height: 120
m_Kind: 0
m_SubKind: iPhone
- m_Textures: []
m_Width: 167
m_Height: 167
m_Kind: 0
m_SubKind: iPad
- m_Textures: []
m_Width: 152
m_Height: 152
m_Kind: 0
m_SubKind: iPad
- m_Textures: []
m_Width: 76
m_Height: 76
m_Kind: 0
m_SubKind: iPad
- m_Textures: []
m_Width: 120
m_Height: 120
m_Kind: 3
m_SubKind: iPhone
- m_Textures: []
m_Width: 80
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m_Kind: 3
m_SubKind: iPhone
- m_Textures: []
m_Width: 80
m_Height: 80
m_Kind: 3
m_SubKind: iPad
- m_Textures: []
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m_Kind: 3
m_SubKind: iPad
- m_Textures: []
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m_Height: 58
m_Kind: 1
m_SubKind: iPhone
- m_Textures: []
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m_Height: 29
m_Kind: 1
m_SubKind: iPhone
- m_Textures: []
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m_Height: 58
m_Kind: 1
m_SubKind: iPad
- m_Textures: []
m_Width: 29
m_Height: 29
m_Kind: 1
m_SubKind: iPad
- m_Textures: []
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m_Height: 60
m_Kind: 2
m_SubKind: iPhone
- m_Textures: []
m_Width: 40
m_Height: 40
m_Kind: 2
m_SubKind: iPhone
- m_Textures: []
m_Width: 40
m_Height: 40
m_Kind: 2
m_SubKind: iPad
- m_Textures: []
m_Width: 20
m_Height: 20
m_Kind: 2
m_SubKind: iPad
- m_Textures: []
m_Width: 1024
m_Height: 1024
m_Kind: 4
m_SubKind: App Store
- m_BuildTarget: Android
m_Icons:
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m_Width: 432
m_Height: 432
m_Kind: 2
m_SubKind:
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m_Kind: 2
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m_SubKind:
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m_Kind: 2
m_SubKind:
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m_SubKind:
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m_Height: 36
m_Kind: 0
m_SubKind:
- m_BuildTarget: tvOS
m_Icons:
- m_Textures: []
m_Width: 1280
m_Height: 768
m_Kind: 0
m_SubKind:
- m_Textures: []
m_Width: 800
m_Height: 480
m_Kind: 0
m_SubKind:
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m_Kind: 0
m_SubKind:
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m_SubKind:
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m_Kind: 1
m_SubKind:
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m_Kind: 1
m_SubKind:
- m_Textures: []
m_Width: 1920
m_Height: 720
m_Kind: 1
m_SubKind:
m_BuildTargetBatching:
- m_BuildTarget: Standalone
m_StaticBatching: 1
m_DynamicBatching: 0
m_BuildTargetIcons: []
m_BuildTargetPlatformIcons: []
m_BuildTargetBatching: []
m_BuildTargetShaderSettings: []
m_BuildTargetGraphicsJobs: []
m_BuildTargetGraphicsJobMode: []
m_BuildTargetGraphicsAPIs:
- m_BuildTarget: iOSSupport
m_APIs: 10000000
m_Automatic: 1
- m_BuildTarget: AndroidPlayer
m_APIs: 150000000b000000
m_Automatic: 0
m_BuildTargetGraphicsAPIs: []
m_BuildTargetVRSettings: []
m_DefaultShaderChunkSizeInMB: 16
m_DefaultShaderChunkCount: 0
@@ -554,22 +309,15 @@ PlayerSettings:
m_TemplateCustomTags: {}
mobileMTRendering:
Android: 1
VisionOS: 1
iPhone: 1
tvOS: 1
m_BuildTargetGroupLightmapEncodingQuality:
- serializedVersion: 2
m_BuildTarget: Android
m_EncodingQuality: 1
m_BuildTargetGroupLightmapEncodingQuality: []
m_BuildTargetGroupHDRCubemapEncodingQuality: []
m_BuildTargetGroupLightmapSettings: []
m_BuildTargetGroupLoadStoreDebugModeSettings: []
m_BuildTargetNormalMapEncoding:
- m_BuildTarget: Android
m_Encoding: 1
m_BuildTargetDefaultTextureCompressionFormat:
- serializedVersion: 3
m_BuildTarget: Android
m_Formats: 03000000
m_BuildTargetNormalMapEncoding: []
m_BuildTargetDefaultTextureCompressionFormat: []
playModeTestRunnerEnabled: 0
runPlayModeTestAsEditModeTest: 0
actionOnDotNetUnhandledException: 1
@@ -706,7 +454,7 @@ PlayerSettings:
switchSystemResourceMemory: 16777216
switchSupportedNpadStyles: 22
switchNativeFsCacheSize: 32
switchIsHoldTypeHorizontal: 0
switchIsHoldTypeHorizontal: 1
switchSupportedNpadCount: 8
switchEnableTouchScreen: 1
switchSocketConfigEnabled: 0
@@ -720,7 +468,7 @@ PlayerSettings:
switchSocketInitializeEnabled: 1
switchNetworkInterfaceManagerInitializeEnabled: 1
switchDisableHTCSPlayerConnection: 0
switchUseNewStyleFilepaths: 0
switchUseNewStyleFilepaths: 1
switchUseLegacyFmodPriorities: 0
switchUseMicroSleepForYield: 1
switchEnableRamDiskSupport: 0
@@ -818,7 +566,7 @@ PlayerSettings:
webGLTemplate: APPLICATION:Default
webGLAnalyzeBuildSize: 0
webGLUseEmbeddedResources: 0
webGLCompressionFormat: 0
webGLCompressionFormat: 1
webGLWasmArithmeticExceptions: 0
webGLLinkerTarget: 1
webGLThreadsSupport: 0
@@ -836,11 +584,10 @@ PlayerSettings:
webWasm2023: 0
webEnableSubmoduleStrippingCompatibility: 0
scriptingDefineSymbols:
Standalone: FUSION_LOGLEVEL_INFO;FUSION_WEAVER;FUSION2;INVECTOR_BASIC;INVECTOR_MELEE;INVECTOR_SHOOTER;ODIN_INSPECTOR;ODIN_INSPECTOR_3;ODIN_INSPECTOR_3_1;ODIN_INSPECTOR_3_2;ODIN_INSPECTOR_3_3;FIRST_PERSON_CONTROLLER;THIRD_PERSON_CONTROLLER;ULTIMATE_CHARACTER_CONTROLLER_SHOOTER;FIRST_PERSON_SHOOTER;ULTIMATE_CHARACTER_CONTROLLER_MELEE;FIRST_PERSON_MELEE;ULTIMATE_CHARACTER_CONTROLLER_UNIVERSALRP;FUSION_2;FUSION_2_0;FUSION_2_0_12;FUSION_2_OR_NEWER;FUSION_2_0_OR_NEWER
Standalone: FUSION_WEAVER;FUSION2;FUSION_2;FUSION_2_0;FUSION_2_0_12;FUSION_2_OR_NEWER;FUSION_2_0_OR_NEWER;FUSION_LOGLEVEL_INFO;ODIN_INSPECTOR;ODIN_INSPECTOR_3;ODIN_INSPECTOR_3_1;ODIN_INSPECTOR_3_2;ODIN_INSPECTOR_3_3
additionalCompilerArguments: {}
platformArchitecture: {}
scriptingBackend:
Android: 1
scriptingBackend: {}
il2cppCompilerConfiguration: {}
il2cppCodeGeneration: {}
il2cppStacktraceInformation: {}
@@ -857,14 +604,14 @@ PlayerSettings:
editorAssembliesCompatibilityLevel: 1
m_RenderingPath: 1
m_MobileRenderingPath: 1
metroPackageName: HALLUCINATE
metroPackageName: BABA_YAGA
metroPackageVersion:
metroCertificatePath:
metroCertificatePassword:
metroCertificateSubject:
metroCertificateIssuer:
metroCertificateNotAfter: 0000000000000000
metroApplicationDescription: HALLUCINATE
metroApplicationDescription: BABA_YAGA
wsaImages: {}
metroTileShortName:
metroTileShowName: 0
@@ -926,7 +673,7 @@ PlayerSettings:
m_VersionCode: 1
m_VersionName:
hmiPlayerDataPath:
hmiForceSRGBBlit: 1
hmiForceSRGBBlit: 0
embeddedLinuxEnableGamepadInput: 0
hmiCpuConfiguration:
hmiLogStartupTiming: 0
@@ -935,11 +682,11 @@ PlayerSettings:
captureStartupLogs: {}
activeInputHandler: 2
windowsGamepadBackendHint: 0
cloudProjectId: f26666dc-3d28-4cad-b5dd-83af9e105972
cloudProjectId:
framebufferDepthMemorylessMode: 0
qualitySettingsNames: []
projectName: HALLUCINATE
organizationId: scov3
projectName:
organizationId:
cloudEnabled: 0
legacyClampBlendShapeWeights: 0
hmiLoadingImage: {fileID: 0}

45740
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