1/*
2 * Copyright (C) 2011 The Guava Authors
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17package com.google.common.cache;
18
19import static com.google.common.base.Preconditions.checkArgument;
20
21import com.google.common.annotations.Beta;
22import com.google.common.annotations.GwtCompatible;
23import com.google.common.base.MoreObjects;
24import com.google.common.base.Objects;
25
26import java.util.concurrent.Callable;
27
28import javax.annotation.Nullable;
29
30/**
31 * Statistics about the performance of a {@link Cache}. Instances of this class are immutable.
32 *
33 * <p>Cache statistics are incremented according to the following rules:
34 *
35 * <ul>
36 * <li>When a cache lookup encounters an existing cache entry {@code hitCount} is incremented.
37 * <li>When a cache lookup first encounters a missing cache entry, a new entry is loaded.
38 * <ul>
39 * <li>After successfully loading an entry {@code missCount} and {@code loadSuccessCount} are
40 *     incremented, and the total loading time, in nanoseconds, is added to
41 *     {@code totalLoadTime}.
42 * <li>When an exception is thrown while loading an entry, {@code missCount} and {@code
43 *     loadExceptionCount} are incremented, and the total loading time, in nanoseconds, is
44 *     added to {@code totalLoadTime}.
45 * <li>Cache lookups that encounter a missing cache entry that is still loading will wait
46 *     for loading to complete (whether successful or not) and then increment {@code missCount}.
47 * </ul>
48 * <li>When an entry is evicted from the cache, {@code evictionCount} is incremented.
49 * <li>No stats are modified when a cache entry is invalidated or manually removed.
50 * <li>No stats are modified on a query to {@link Cache#getIfPresent}.
51 * <li>No stats are modified by operations invoked on the {@linkplain Cache#asMap asMap} view of
52 *     the cache.
53 * </ul>
54 *
55 * <p>A lookup is specifically defined as an invocation of one of the methods
56 * {@link LoadingCache#get(Object)}, {@link LoadingCache#getUnchecked(Object)},
57 * {@link Cache#get(Object, Callable)}, or {@link LoadingCache#getAll(Iterable)}.
58 *
59 * @author Charles Fry
60 * @since 10.0
61 */
62@Beta
63@GwtCompatible
64public final class CacheStats {
65  private final long hitCount;
66  private final long missCount;
67  private final long loadSuccessCount;
68  private final long loadExceptionCount;
69  private final long totalLoadTime;
70  private final long evictionCount;
71
72  /**
73   * Constructs a new {@code CacheStats} instance.
74   *
75   * <p>Five parameters of the same type in a row is a bad thing, but this class is not constructed
76   * by end users and is too fine-grained for a builder.
77   */
78  public CacheStats(long hitCount, long missCount, long loadSuccessCount,
79      long loadExceptionCount, long totalLoadTime, long evictionCount) {
80    checkArgument(hitCount >= 0);
81    checkArgument(missCount >= 0);
82    checkArgument(loadSuccessCount >= 0);
83    checkArgument(loadExceptionCount >= 0);
84    checkArgument(totalLoadTime >= 0);
85    checkArgument(evictionCount >= 0);
86
87    this.hitCount = hitCount;
88    this.missCount = missCount;
89    this.loadSuccessCount = loadSuccessCount;
90    this.loadExceptionCount = loadExceptionCount;
91    this.totalLoadTime = totalLoadTime;
92    this.evictionCount = evictionCount;
93  }
94
95  /**
96   * Returns the number of times {@link Cache} lookup methods have returned either a cached or
97   * uncached value. This is defined as {@code hitCount + missCount}.
98   */
99  public long requestCount() {
100    return hitCount + missCount;
101  }
102
103  /**
104   * Returns the number of times {@link Cache} lookup methods have returned a cached value.
105   */
106  public long hitCount() {
107    return hitCount;
108  }
109
110  /**
111   * Returns the ratio of cache requests which were hits. This is defined as
112   * {@code hitCount / requestCount}, or {@code 1.0} when {@code requestCount == 0}.
113   * Note that {@code hitRate + missRate =~ 1.0}.
114   */
115  public double hitRate() {
116    long requestCount = requestCount();
117    return (requestCount == 0) ? 1.0 : (double) hitCount / requestCount;
118  }
119
120  /**
121   * Returns the number of times {@link Cache} lookup methods have returned an uncached (newly
122   * loaded) value, or null. Multiple concurrent calls to {@link Cache} lookup methods on an absent
123   * value can result in multiple misses, all returning the results of a single cache load
124   * operation.
125   */
126  public long missCount() {
127    return missCount;
128  }
129
130  /**
131   * Returns the ratio of cache requests which were misses. This is defined as
132   * {@code missCount / requestCount}, or {@code 0.0} when {@code requestCount == 0}.
133   * Note that {@code hitRate + missRate =~ 1.0}. Cache misses include all requests which
134   * weren't cache hits, including requests which resulted in either successful or failed loading
135   * attempts, and requests which waited for other threads to finish loading. It is thus the case
136   * that {@code missCount &gt;= loadSuccessCount + loadExceptionCount}. Multiple
137   * concurrent misses for the same key will result in a single load operation.
138   */
139  public double missRate() {
140    long requestCount = requestCount();
141    return (requestCount == 0) ? 0.0 : (double) missCount / requestCount;
142  }
143
144  /**
145   * Returns the total number of times that {@link Cache} lookup methods attempted to load new
146   * values. This includes both successful load operations, as well as those that threw
147   * exceptions. This is defined as {@code loadSuccessCount + loadExceptionCount}.
148   */
149  public long loadCount() {
150    return loadSuccessCount + loadExceptionCount;
151  }
152
153  /**
154   * Returns the number of times {@link Cache} lookup methods have successfully loaded a new value.
155   * This is always incremented in conjunction with {@link #missCount}, though {@code missCount}
156   * is also incremented when an exception is encountered during cache loading (see
157   * {@link #loadExceptionCount}). Multiple concurrent misses for the same key will result in a
158   * single load operation.
159   */
160  public long loadSuccessCount() {
161    return loadSuccessCount;
162  }
163
164  /**
165   * Returns the number of times {@link Cache} lookup methods threw an exception while loading a
166   * new value. This is always incremented in conjunction with {@code missCount}, though
167   * {@code missCount} is also incremented when cache loading completes successfully (see
168   * {@link #loadSuccessCount}). Multiple concurrent misses for the same key will result in a
169   * single load operation.
170   */
171  public long loadExceptionCount() {
172    return loadExceptionCount;
173  }
174
175  /**
176   * Returns the ratio of cache loading attempts which threw exceptions. This is defined as
177   * {@code loadExceptionCount / (loadSuccessCount + loadExceptionCount)}, or
178   * {@code 0.0} when {@code loadSuccessCount + loadExceptionCount == 0}.
179   */
180  public double loadExceptionRate() {
181    long totalLoadCount = loadSuccessCount + loadExceptionCount;
182    return (totalLoadCount == 0)
183        ? 0.0
184        : (double) loadExceptionCount / totalLoadCount;
185  }
186
187  /**
188   * Returns the total number of nanoseconds the cache has spent loading new values. This can be
189   * used to calculate the miss penalty. This value is increased every time
190   * {@code loadSuccessCount} or {@code loadExceptionCount} is incremented.
191   */
192  public long totalLoadTime() {
193    return totalLoadTime;
194  }
195
196  /**
197   * Returns the average time spent loading new values. This is defined as
198   * {@code totalLoadTime / (loadSuccessCount + loadExceptionCount)}.
199   */
200  public double averageLoadPenalty() {
201    long totalLoadCount = loadSuccessCount + loadExceptionCount;
202    return (totalLoadCount == 0)
203        ? 0.0
204        : (double) totalLoadTime / totalLoadCount;
205  }
206
207  /**
208   * Returns the number of times an entry has been evicted. This count does not include manual
209   * {@linkplain Cache#invalidate invalidations}.
210   */
211  public long evictionCount() {
212    return evictionCount;
213  }
214
215  /**
216   * Returns a new {@code CacheStats} representing the difference between this {@code CacheStats}
217   * and {@code other}. Negative values, which aren't supported by {@code CacheStats} will be
218   * rounded up to zero.
219   */
220  public CacheStats minus(CacheStats other) {
221    return new CacheStats(
222        Math.max(0, hitCount - other.hitCount),
223        Math.max(0, missCount - other.missCount),
224        Math.max(0, loadSuccessCount - other.loadSuccessCount),
225        Math.max(0, loadExceptionCount - other.loadExceptionCount),
226        Math.max(0, totalLoadTime - other.totalLoadTime),
227        Math.max(0, evictionCount - other.evictionCount));
228  }
229
230  /**
231   * Returns a new {@code CacheStats} representing the sum of this {@code CacheStats}
232   * and {@code other}.
233   *
234   * @since 11.0
235   */
236  public CacheStats plus(CacheStats other) {
237    return new CacheStats(
238        hitCount + other.hitCount,
239        missCount + other.missCount,
240        loadSuccessCount + other.loadSuccessCount,
241        loadExceptionCount + other.loadExceptionCount,
242        totalLoadTime + other.totalLoadTime,
243        evictionCount + other.evictionCount);
244  }
245
246  @Override
247  public int hashCode() {
248    return Objects.hashCode(hitCount, missCount, loadSuccessCount, loadExceptionCount,
249        totalLoadTime, evictionCount);
250  }
251
252  @Override
253  public boolean equals(@Nullable Object object) {
254    if (object instanceof CacheStats) {
255      CacheStats other = (CacheStats) object;
256      return hitCount == other.hitCount
257          && missCount == other.missCount
258          && loadSuccessCount == other.loadSuccessCount
259          && loadExceptionCount == other.loadExceptionCount
260          && totalLoadTime == other.totalLoadTime
261          && evictionCount == other.evictionCount;
262    }
263    return false;
264  }
265
266  @Override
267  public String toString() {
268    return MoreObjects.toStringHelper(this)
269        .add("hitCount", hitCount)
270        .add("missCount", missCount)
271        .add("loadSuccessCount", loadSuccessCount)
272        .add("loadExceptionCount", loadExceptionCount)
273        .add("totalLoadTime", totalLoadTime)
274        .add("evictionCount", evictionCount)
275        .toString();
276  }
277}
278