Files
Umbraco-CMS/src/Umbraco.Core/PublishedCache/PublishedElementPropertyBase.cs
Mole bf41c2eeaa Netcore: Align namespaces (#9801)
* Rename Umbraco.Core namespace to Umbraco.Cms.Core

* Move extension methods in core project to Umbraco.Extensions

* Move extension methods in core project to Umbraco.Extensions

* Rename Umbraco.Examine namespace to Umbraco.Cms.Examine

* Move examine extensions to Umbraco.Extensions namespace

* Reflect changed namespaces in Builder and fix unit tests

* Adjust namespace in Umbraco.ModelsBuilder.Embedded

* Adjust namespace in Umbraco.Persistence.SqlCe

* Adjust namespace in Umbraco.PublishedCache.NuCache

* Align namespaces in Umbraco.Web.BackOffice

* Align namespaces in Umbraco.Web.Common

* Ensure that SqlCeSupport is still enabled after changing the namespace

* Align namespaces in Umbraco.Web.Website

* Align namespaces in Umbraco.Web.UI.NetCore

* Align namespaces in Umbraco.Tests.Common

* Align namespaces in Umbraco.Tests.UnitTests

* Align namespaces in Umbraco.Tests.Integration

* Fix errors caused by changed namespaces

* Fix integration tests

* Undo the Umbraco.Examine.Lucene namespace change

This breaks integration tests on linux, since the namespace wont exists there because it's only used on windows.

* Fix merge

* Fix Merge
2021-02-18 11:06:02 +01:00

191 lines
8.4 KiB
C#

using System;
using Umbraco.Cms.Core.Cache;
using Umbraco.Cms.Core.Models.PublishedContent;
using Umbraco.Cms.Core.PropertyEditors;
namespace Umbraco.Cms.Core.PublishedCache
{
internal class PublishedElementPropertyBase : PublishedPropertyBase
{
private readonly object _locko = new object();
private readonly object _sourceValue;
private readonly IPublishedSnapshotAccessor _publishedSnapshotAccessor;
protected readonly IPublishedElement Element;
protected readonly bool IsPreviewing;
protected readonly bool IsMember;
private bool _interInitialized;
private object _interValue;
private CacheValues _cacheValues;
private string _valuesCacheKey;
// define constant - determines whether to use cache when previewing
// to store eg routes, property converted values, anything - caching
// means faster execution, but uses memory - not sure if we want it
// so making it configurable.
private const bool FullCacheWhenPreviewing = true;
public PublishedElementPropertyBase(IPublishedPropertyType propertyType, IPublishedElement element, bool previewing, PropertyCacheLevel referenceCacheLevel, object sourceValue = null, IPublishedSnapshotAccessor publishedSnapshotAccessor = null)
: base(propertyType, referenceCacheLevel)
{
_sourceValue = sourceValue;
_publishedSnapshotAccessor = publishedSnapshotAccessor;
Element = element;
IsPreviewing = previewing;
IsMember = propertyType.ContentType.ItemType == PublishedItemType.Member;
}
public override bool HasValue(string culture = null, string segment = null)
{
var hasValue = PropertyType.IsValue(_sourceValue, PropertyValueLevel.Source);
if (hasValue.HasValue) return hasValue.Value;
GetCacheLevels(out var cacheLevel, out var referenceCacheLevel);
lock (_locko)
{
var value = GetInterValue();
hasValue = PropertyType.IsValue(value, PropertyValueLevel.Inter);
if (hasValue.HasValue) return hasValue.Value;
var cacheValues = GetCacheValues(cacheLevel);
if (!cacheValues.ObjectInitialized)
{
cacheValues.ObjectValue = PropertyType.ConvertInterToObject(Element, referenceCacheLevel, value, IsPreviewing);
cacheValues.ObjectInitialized = true;
}
value = cacheValues.ObjectValue;
return PropertyType.IsValue(value, PropertyValueLevel.Object) ?? false;
}
}
// used to cache the CacheValues of this property
// ReSharper disable InconsistentlySynchronizedField
internal string ValuesCacheKey => _valuesCacheKey
?? (_valuesCacheKey = PropertyCacheValues(Element.Key, Alias, IsPreviewing));
// ReSharper restore InconsistentlySynchronizedField
protected class CacheValues
{
public bool ObjectInitialized;
public object ObjectValue;
public bool XPathInitialized;
public object XPathValue;
}
public static string PropertyCacheValues(Guid contentUid, string typeAlias, bool previewing)
{
return "PublishedSnapshot.Property.CacheValues[" + (previewing ? "D:" : "P:") + contentUid + ":" + typeAlias + "]";
}
private void GetCacheLevels(out PropertyCacheLevel cacheLevel, out PropertyCacheLevel referenceCacheLevel)
{
// based upon the current reference cache level (ReferenceCacheLevel) and this property
// cache level (PropertyType.CacheLevel), determines both the actual cache level for the
// property, and the new reference cache level.
// if the property cache level is 'shorter-termed' that the reference
// then use it and it becomes the new reference, else use Content and
// don't change the reference.
//
// examples:
// currently (reference) caching at published snapshot, property specifies
// elements, ok to use element. OTOH, currently caching at elements,
// property specifies snapshot, need to use snapshot.
//
if (PropertyType.CacheLevel > ReferenceCacheLevel || PropertyType.CacheLevel == PropertyCacheLevel.None)
{
cacheLevel = PropertyType.CacheLevel;
referenceCacheLevel = cacheLevel;
}
else
{
cacheLevel = PropertyCacheLevel.Element;
referenceCacheLevel = ReferenceCacheLevel;
}
}
private IAppCache GetSnapshotCache()
{
// cache within the snapshot cache, unless previewing, then use the snapshot or
// elements cache (if we don't want to pollute the elements cache with short-lived
// data) depending on settings
// for members, always cache in the snapshot cache - never pollute elements cache
var publishedSnapshot = _publishedSnapshotAccessor?.PublishedSnapshot;
if (publishedSnapshot == null) return null;
return (IsPreviewing == false || FullCacheWhenPreviewing) && IsMember == false
? publishedSnapshot.ElementsCache
: publishedSnapshot.SnapshotCache;
}
private CacheValues GetCacheValues(PropertyCacheLevel cacheLevel)
{
CacheValues cacheValues;
switch (cacheLevel)
{
case PropertyCacheLevel.None:
// never cache anything
cacheValues = new CacheValues();
break;
case PropertyCacheLevel.Element:
// cache within the property object itself, ie within the content object
cacheValues = _cacheValues ?? (_cacheValues = new CacheValues());
break;
case PropertyCacheLevel.Elements:
// cache within the elements cache, depending...
var snapshotCache = GetSnapshotCache();
cacheValues = (CacheValues) snapshotCache?.Get(ValuesCacheKey, () => new CacheValues()) ?? new CacheValues();
break;
case PropertyCacheLevel.Snapshot:
// cache within the snapshot cache
var facadeCache = _publishedSnapshotAccessor?.PublishedSnapshot?.SnapshotCache;
cacheValues = (CacheValues) facadeCache?.Get(ValuesCacheKey, () => new CacheValues()) ?? new CacheValues();
break;
default:
throw new InvalidOperationException("Invalid cache level.");
}
return cacheValues;
}
private object GetInterValue()
{
if (_interInitialized) return _interValue;
_interValue = PropertyType.ConvertSourceToInter(Element, _sourceValue, IsPreviewing);
_interInitialized = true;
return _interValue;
}
public override object GetSourceValue(string culture = null, string segment = null) => _sourceValue;
public override object GetValue(string culture = null, string segment = null)
{
GetCacheLevels(out var cacheLevel, out var referenceCacheLevel);
lock (_locko)
{
var cacheValues = GetCacheValues(cacheLevel);
if (cacheValues.ObjectInitialized) return cacheValues.ObjectValue;
cacheValues.ObjectValue = PropertyType.ConvertInterToObject(Element, referenceCacheLevel, GetInterValue(), IsPreviewing);
cacheValues.ObjectInitialized = true;
return cacheValues.ObjectValue;
}
}
public override object GetXPathValue(string culture = null, string segment = null)
{
GetCacheLevels(out var cacheLevel, out var referenceCacheLevel);
lock (_locko)
{
var cacheValues = GetCacheValues(cacheLevel);
if (cacheValues.XPathInitialized) return cacheValues.XPathValue;
cacheValues.XPathValue = PropertyType.ConvertInterToXPath(Element, referenceCacheLevel, GetInterValue(), IsPreviewing);
cacheValues.XPathInitialized = true;
return cacheValues.XPathValue;
}
}
}
}