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435 行
16 KiB
435 行
16 KiB
using System;
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using System.Collections.Generic;
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using RSG;
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using Unity.UIWidgets.animation;
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using Unity.UIWidgets.foundation;
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using Unity.UIWidgets.gestures;
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using Unity.UIWidgets.painting;
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using Unity.UIWidgets.physics;
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using Unity.UIWidgets.rendering;
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using Unity.UIWidgets.ui;
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using UnityEngine;
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namespace Unity.UIWidgets.widgets {
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public class PageController : ScrollController {
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public PageController(
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int initialPage = 0,
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bool keepPage = true,
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float viewportFraction = 1.0f
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) {
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this.initialPage = initialPage;
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this.keepPage = keepPage;
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this.viewportFraction = viewportFraction;
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D.assert(viewportFraction > 0.0);
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}
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public readonly int initialPage;
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public readonly bool keepPage;
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public readonly float viewportFraction;
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public virtual float page {
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get {
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D.assert(this.positions.isNotEmpty(),
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() => "PageController.page cannot be accessed before a PageView is built with it."
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);
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D.assert(this.positions.Count == 1,
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() => "The page property cannot be read when multiple PageViews are attached to " +
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"the same PageController."
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);
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_PagePosition position = (_PagePosition) this.position;
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return position.page;
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}
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}
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public IPromise animateToPage(int page, TimeSpan duration, Curve curve) {
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_PagePosition position = (_PagePosition) this.position;
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return position.animateTo(
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position.getPixelsFromPage(page),
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duration,
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curve
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);
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}
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public void jumpToPage(int page) {
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_PagePosition position = (_PagePosition) this.position;
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position.jumpTo(position.getPixelsFromPage(page));
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}
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public IPromise nextPage(TimeSpan duration, Curve curve) {
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return this.animateToPage(this.page.round() + 1, duration: duration, curve: curve);
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}
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public IPromise previousPage(TimeSpan duration, Curve curve) {
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return this.animateToPage(this.page.round() - 1, duration: duration, curve: curve);
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}
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public override ScrollPosition createScrollPosition(ScrollPhysics physics, ScrollContext context,
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ScrollPosition oldPosition) {
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return new _PagePosition(
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physics: physics,
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context: context,
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initialPage: this.initialPage,
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keepPage: this.keepPage,
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viewportFraction: this.viewportFraction,
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oldPosition: oldPosition
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);
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}
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public override void attach(ScrollPosition position) {
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base.attach(position);
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_PagePosition pagePosition = (_PagePosition) position;
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pagePosition.viewportFraction = this.viewportFraction;
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}
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}
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public interface IPageMetrics : ScrollMetrics {
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float page { get; }
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float viewportFraction { get; }
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}
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public class PageMetrics : FixedScrollMetrics, IPageMetrics {
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public PageMetrics(
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float minScrollExtent = 0.0f,
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float maxScrollExtent = 0.0f,
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float pixels = 0.0f,
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float viewportDimension = 0.0f,
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AxisDirection axisDirection = AxisDirection.down,
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float viewportFraction = 0.0f
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) : base(
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minScrollExtent: minScrollExtent,
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maxScrollExtent: maxScrollExtent,
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pixels: pixels,
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viewportDimension: viewportDimension,
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axisDirection: axisDirection
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) {
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this._viewportFraction = viewportFraction;
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}
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public readonly float _viewportFraction;
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public float page {
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get {
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return (Mathf.Max(0.0f, this.pixels.clamp(this.minScrollExtent, this.maxScrollExtent)) /
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Mathf.Max(1.0f, this.viewportDimension * this.viewportFraction));
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}
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}
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public float viewportFraction {
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get { return this._viewportFraction; }
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}
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}
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class _PagePosition : ScrollPositionWithSingleContext, IPageMetrics {
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internal _PagePosition(
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ScrollPhysics physics = null,
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ScrollContext context = null,
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int initialPage = 0,
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bool keepPage = true,
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float viewportFraction = 1.0f,
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ScrollPosition oldPosition = null
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) :
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base(
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physics: physics,
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context: context,
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initialPixels: null,
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keepScrollOffset: keepPage,
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oldPosition: oldPosition
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) {
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D.assert(viewportFraction > 0.0);
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this.initialPage = initialPage;
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this._viewportFraction = viewportFraction;
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this._pageToUseOnStartup = initialPage;
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}
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public readonly int initialPage;
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float _pageToUseOnStartup;
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public float viewportFraction {
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get { return this._viewportFraction; }
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set {
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if (this._viewportFraction == value) {
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return;
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}
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float oldPage = this.page;
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this._viewportFraction = value;
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this.forcePixels(this.getPixelsFromPage(oldPage));
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}
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}
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float _viewportFraction;
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public float getPageFromPixels(float pixels, float viewportDimension) {
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return (Mathf.Max(0.0f, pixels) / Mathf.Max(1.0f, viewportDimension * this.viewportFraction));
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}
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public float getPixelsFromPage(float page) {
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return page * this.viewportDimension * this.viewportFraction;
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}
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public float page {
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get {
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return this.getPageFromPixels(this.pixels.clamp(this.minScrollExtent, this.maxScrollExtent),
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this.viewportDimension);
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}
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}
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protected override void saveScrollOffset() {
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PageStorage.of(this.context.storageContext)?.writeState(this.context.storageContext,
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this.getPageFromPixels(this.pixels, this.viewportDimension));
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}
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protected override void restoreScrollOffset() {
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object value = PageStorage.of(this.context.storageContext)?.readState(this.context.storageContext);
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if (value != null) {
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this._pageToUseOnStartup = (float) value;
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}
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}
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public override bool applyViewportDimension(float viewportDimension) {
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float oldViewportDimensions = 0.0f;
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if (this.haveDimensions) {
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oldViewportDimensions = this.viewportDimension;
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}
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bool result = base.applyViewportDimension(viewportDimension);
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float? oldPixels = null;
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if (this.havePixels) {
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oldPixels = this.pixels;
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}
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float page = (oldPixels == null || oldViewportDimensions == 0.0f)
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? this._pageToUseOnStartup
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: this.getPageFromPixels(oldPixels.Value, oldViewportDimensions);
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float newPixels = this.getPixelsFromPage(page);
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if (newPixels != oldPixels) {
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this.correctPixels(newPixels);
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return false;
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}
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return result;
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}
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}
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public class PageScrollPhysics : ScrollPhysics {
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public PageScrollPhysics(ScrollPhysics parent = null) : base(parent: parent) { }
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public override ScrollPhysics applyTo(ScrollPhysics ancestor) {
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return new PageScrollPhysics(parent: this.buildParent(ancestor));
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}
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float _getPage(ScrollPosition position) {
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if (position is _PagePosition) {
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return ((_PagePosition) position).page;
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}
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return position.pixels / position.viewportDimension;
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}
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float _getPixels(ScrollPosition position, float page) {
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if (position is _PagePosition) {
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return ((_PagePosition) position).getPixelsFromPage(page);
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}
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return page * position.viewportDimension;
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}
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float _getTargetPixels(ScrollPosition position, Tolerance tolerance, float velocity) {
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float page = this._getPage(position);
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if (velocity < -tolerance.velocity) {
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page -= 0.5f;
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}
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else if (velocity > tolerance.velocity) {
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page += 0.5f;
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}
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return this._getPixels(position, page.round());
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}
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public override Simulation createBallisticSimulation(ScrollMetrics position, float velocity) {
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if ((velocity <= 0.0 && position.pixels <= position.minScrollExtent) ||
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(velocity >= 0.0 && position.pixels >= position.maxScrollExtent)) {
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return base.createBallisticSimulation(position, velocity);
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}
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Tolerance tolerance = this.tolerance;
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float target = this._getTargetPixels((ScrollPosition) position, tolerance, velocity);
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if (target != position.pixels) {
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return new ScrollSpringSimulation(this.spring, position.pixels, target, velocity, tolerance: tolerance);
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}
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return null;
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}
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public override bool allowImplicitScrolling {
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get { return false; }
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}
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}
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public static class PageViewUtils {
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internal static PageController _defaultPageController = new PageController();
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internal static PageScrollPhysics _kPagePhysics = new PageScrollPhysics();
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}
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public class PageView : StatefulWidget {
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public PageView(
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Key key = null,
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Axis scrollDirection = Axis.horizontal,
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bool reverse = false,
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PageController controller = null,
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ScrollPhysics physics = null,
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bool pageSnapping = true,
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ValueChanged<int> onPageChanged = null,
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List<Widget> children = null,
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DragStartBehavior dragStartBehavior = DragStartBehavior.start,
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IndexedWidgetBuilder itemBuilder = null,
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SliverChildDelegate childDelegate = null,
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int itemCount = 0
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) : base(key: key) {
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this.scrollDirection = scrollDirection;
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this.reverse = reverse;
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this.physics = physics;
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this.pageSnapping = pageSnapping;
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this.onPageChanged = onPageChanged;
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this.dragStartBehavior = dragStartBehavior;
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this.controller = controller ?? PageViewUtils._defaultPageController;
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if (itemBuilder != null) {
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this.childrenDelegate = new SliverChildBuilderDelegate(itemBuilder, childCount: itemCount);
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}
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else if (childDelegate != null) {
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this.childrenDelegate = childDelegate;
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}
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else {
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this.childrenDelegate = new SliverChildListDelegate(children ?? new List<Widget>());
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}
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}
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public static PageView builder(
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IndexedWidgetBuilder itemBuilder,
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Key key = null,
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Axis scrollDirection = Axis.horizontal,
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bool reverse = false,
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PageController controller = null,
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ScrollPhysics physics = null,
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bool pageSnapping = true,
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ValueChanged<int> onPageChanged = null,
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int itemCount = 0,
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DragStartBehavior dragStartBehavior = DragStartBehavior.start
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) {
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return new PageView(
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itemBuilder: itemBuilder,
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key: key,
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scrollDirection: scrollDirection,
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reverse: reverse,
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controller: controller,
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physics: physics,
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pageSnapping: pageSnapping,
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onPageChanged: onPageChanged,
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itemCount: itemCount,
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dragStartBehavior: dragStartBehavior
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);
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}
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// TODO: PageView.custom
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public readonly Axis scrollDirection;
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public readonly bool reverse;
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public readonly PageController controller;
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public readonly ScrollPhysics physics;
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public readonly bool pageSnapping;
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public readonly ValueChanged<int> onPageChanged;
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public readonly SliverChildDelegate childrenDelegate;
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public readonly DragStartBehavior dragStartBehavior;
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public override State createState() {
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return new _PageViewState();
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}
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}
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class _PageViewState : State<PageView> {
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int _lastReportedPage = 0;
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public override void initState() {
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base.initState();
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this._lastReportedPage = this.widget.controller.initialPage;
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}
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AxisDirection _getDirection(BuildContext context) {
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switch (this.widget.scrollDirection) {
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case Axis.horizontal:
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D.assert(WidgetsD.debugCheckHasDirectionality(context));
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TextDirection textDirection = Directionality.of(context);
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AxisDirection axisDirection = AxisUtils.textDirectionToAxisDirection(textDirection);
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return this.widget.reverse ? AxisUtils.flipAxisDirection(axisDirection) : axisDirection;
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case Axis.vertical:
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return this.widget.reverse ? AxisDirection.up : AxisDirection.down;
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}
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throw new UIWidgetsError("fail to get axis direction");
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}
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public override Widget build(BuildContext context) {
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AxisDirection axisDirection = this._getDirection(context);
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ScrollPhysics physics = this.widget.pageSnapping
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? PageViewUtils._kPagePhysics.applyTo(this.widget.physics)
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: this.widget.physics;
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return new NotificationListener<ScrollNotification>(
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onNotification: (ScrollNotification notification) => {
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if (notification.depth == 0 && this.widget.onPageChanged != null &&
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notification is ScrollUpdateNotification) {
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IPageMetrics metrics = (IPageMetrics) notification.metrics;
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int currentPage = metrics.page.round();
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if (currentPage != this._lastReportedPage) {
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this._lastReportedPage = currentPage;
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this.widget.onPageChanged(currentPage);
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}
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}
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return false;
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},
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child: new Scrollable(
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dragStartBehavior: this.widget.dragStartBehavior,
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axisDirection: axisDirection,
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controller: this.widget.controller,
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physics: physics,
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viewportBuilder: (BuildContext _context, ViewportOffset position) => {
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return new Viewport(
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cacheExtent: 0.0f,
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axisDirection: axisDirection,
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offset: position,
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slivers: new List<Widget> {
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new SliverFillViewport(
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viewportFraction: this.widget.controller.viewportFraction,
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del: this.widget.childrenDelegate
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)
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}
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);
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}
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)
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);
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}
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public override void debugFillProperties(DiagnosticPropertiesBuilder description) {
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base.debugFillProperties(description);
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description.add(new EnumProperty<Axis>("scrollDirection", this.widget.scrollDirection));
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description.add(new FlagProperty("reverse", value: this.widget.reverse, ifTrue: "reversed"));
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description.add(
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new DiagnosticsProperty<PageController>("controller", this.widget.controller, showName: false));
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description.add(new DiagnosticsProperty<ScrollPhysics>("physics", this.widget.physics, showName: false));
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description.add(new FlagProperty("pageSnapping", value: this.widget.pageSnapping,
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ifFalse: "snapping disabled"));
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}
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}
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}
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