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Umbraco-CMS/src/Umbraco.Core/Cache/HttpRuntimeCacheProvider.cs

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C#
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using System;
using System.Collections;
using System.Linq;
using System.Threading;
using System.Web;
using System.Web.Caching;
using Umbraco.Core.Logging;
using CacheItemPriority = System.Web.Caching.CacheItemPriority;
namespace Umbraco.Core.Cache
{
/// <summary>
/// A CacheProvider that wraps the logic of the HttpRuntime.Cache
/// </summary>
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internal class HttpRuntimeCacheProvider : DictionaryCacheProviderBase, IRuntimeCacheProvider
{
private readonly System.Web.Caching.Cache _cache;
private readonly DictionaryCacheWrapper _wrapper;
public HttpRuntimeCacheProvider(System.Web.Caching.Cache cache)
{
_cache = cache;
_wrapper = new DictionaryCacheWrapper(_cache, s => _cache.Get(s.ToString()), o => _cache.Remove(o.ToString()));
}
protected override DictionaryCacheWrapper DictionaryCache
{
get { return _wrapper; }
}
/// <summary>
/// Clears all objects in the System.Web.Cache with the System.Type specified that satisfy the predicate
/// </summary>
public override void ClearCacheObjectTypes<T>(Func<string, T, bool> predicate)
{
try
{
lock (Locker)
{
foreach (DictionaryEntry c in _cache)
{
var key = c.Key.ToString();
if (_cache[key] != null
&& _cache[key] is T
&& predicate(key, (T)_cache[key]))
{
_cache.Remove(c.Key.ToString());
}
}
}
}
catch (Exception e)
{
LogHelper.Error<CacheHelper>("Cache clearing error", e);
}
}
/// <summary>
/// Gets (and adds if necessary) an item from the cache with all of the default parameters
/// </summary>
/// <param name="cacheKey"></param>
/// <param name="getCacheItem"></param>
/// <returns></returns>
public override object GetCacheItem(string cacheKey, Func<object> getCacheItem)
{
return GetCacheItem(cacheKey, getCacheItem, null, dependentFiles: null);
}
/// <summary>
/// This overload is here for legacy purposes
/// </summary>
/// <param name="cacheKey"></param>
/// <param name="getCacheItem"></param>
/// <param name="timeout"></param>
/// <param name="isSliding"></param>
/// <param name="priority"></param>
/// <param name="removedCallback"></param>
/// <param name="dependency"></param>
/// <returns></returns>
internal object GetCacheItem(string cacheKey, Func<object> getCacheItem, TimeSpan? timeout, bool isSliding = false, CacheItemPriority priority = CacheItemPriority.Normal, CacheItemRemovedCallback removedCallback = null, CacheDependency dependency = null)
{
cacheKey = GetCacheKey(cacheKey);
// NOTE - because we don't know what getCacheItem does, how long it will take and whether it will hang,
// getCacheItem should run OUTSIDE of the global application lock else we run into lock contention and
// nasty performance issues.
// So.... we insert a Lazy<object> in the cache while holding the global application lock, and then rely
// on the Lazy lock to ensure that getCacheItem runs once and everybody waits on it, while the global
// application lock has been released.
// Note that this means we'll end up storing null values in the cache, whereas in the past we made sure
// not to store them. There's code below, commented out, to make sure we do re-compute the value if it
// was previously computed as null - effectively reproducing the past behavior - but I'm not quite sure
// it is a good idea.
Lazy<object> result;
using (var lck = new UpgradeableReadLock(Locker))
{
result = DictionaryCache.Get(cacheKey) as Lazy<object>;
if (result == null /* || (result.IsValueCreated && result.Value == null) */)
{
lck.UpgradeToWriteLock();
result = new Lazy<object>(getCacheItem);
var absolute = isSliding ? System.Web.Caching.Cache.NoAbsoluteExpiration : (timeout == null ? System.Web.Caching.Cache.NoAbsoluteExpiration : DateTime.Now.Add(timeout.Value));
var sliding = isSliding == false ? System.Web.Caching.Cache.NoSlidingExpiration : (timeout ?? System.Web.Caching.Cache.NoSlidingExpiration);
_cache.Insert(cacheKey, result, dependency, absolute, sliding, priority, removedCallback);
}
}
return result.Value;
}
public object GetCacheItem(string cacheKey, Func<object> getCacheItem, TimeSpan? timeout, bool isSliding = false, CacheItemPriority priority = CacheItemPriority.Normal, CacheItemRemovedCallback removedCallback = null, string[] dependentFiles = null)
{
CacheDependency dependency = null;
if (dependentFiles != null && dependentFiles.Any())
{
dependency = new CacheDependency(dependentFiles);
}
return GetCacheItem(cacheKey, getCacheItem, timeout, isSliding, priority, removedCallback, dependency);
}
/// <summary>
/// This overload is here for legacy purposes
/// </summary>
/// <param name="cacheKey"></param>
/// <param name="getCacheItem"></param>
/// <param name="timeout"></param>
/// <param name="isSliding"></param>
/// <param name="priority"></param>
/// <param name="removedCallback"></param>
/// <param name="dependency"></param>
internal void InsertCacheItem(string cacheKey, Func<object> getCacheItem, TimeSpan? timeout = null, bool isSliding = false, CacheItemPriority priority = CacheItemPriority.Normal, CacheItemRemovedCallback removedCallback = null, CacheDependency dependency = null)
{
// NOTE - here also we must insert a Lazy<object> but we can evaluate it right now
// and make sure we don't store a null value. Though I'm not sure it is a good idea.
var result = new Lazy<object>(getCacheItem);
//if (result.Value == null) return;
cacheKey = GetCacheKey(cacheKey);
var absolute = isSliding ? System.Web.Caching.Cache.NoAbsoluteExpiration : (timeout == null ? System.Web.Caching.Cache.NoAbsoluteExpiration : DateTime.Now.Add(timeout.Value));
var sliding = isSliding == false ? System.Web.Caching.Cache.NoSlidingExpiration : (timeout ?? System.Web.Caching.Cache.NoSlidingExpiration);
_cache.Insert(cacheKey, result, dependency, absolute, sliding, priority, removedCallback);
}
public void InsertCacheItem(string cacheKey, Func<object> getCacheItem, TimeSpan? timeout = null, bool isSliding = false, CacheItemPriority priority = CacheItemPriority.Normal, CacheItemRemovedCallback removedCallback = null, string[] dependentFiles = null)
{
CacheDependency dependency = null;
if (dependentFiles != null && dependentFiles.Any())
{
dependency = new CacheDependency(dependentFiles);
}
InsertCacheItem(cacheKey, getCacheItem, timeout, isSliding, priority, removedCallback, dependency);
}
}
}