|
14 | 14 | * |
15 | 15 | * @since 2.6 |
16 | 16 | */ |
17 | | -public abstract class CompactStringObjectMap |
| 17 | +public final class CompactStringObjectMap |
18 | 18 | { |
19 | | - public static CompactStringObjectMap empty() { |
20 | | - return Small.EMPTY; |
21 | | - } |
22 | | - |
23 | | - public static <T> CompactStringObjectMap construct(Map<String,T> contents) |
24 | | - { |
25 | | - if (contents.size() == 0) { // can this occur? |
26 | | - return empty(); |
27 | | - } |
28 | | - Iterator<Map.Entry<String,T>> it = contents.entrySet().iterator(); |
29 | | - switch (contents.size()) { |
30 | | - case 1: |
31 | | - return new Small(it.next(), null); |
32 | | - case 2: |
33 | | - return new Small(it.next(), it.next()); |
34 | | - } |
35 | | - // General-purpose "big" one needed: |
36 | | - return Big.construct(contents); |
37 | | - } |
38 | | - |
39 | | - public abstract Object find(String key); |
40 | | - |
41 | | - public abstract List<String> keys(); |
| 19 | + /** |
| 20 | + * Shared instance that can be used when there are no contents to Map. |
| 21 | + */ |
| 22 | + private final static CompactStringObjectMap EMPTY = new CompactStringObjectMap(1, 0, |
| 23 | + new Object[4]); |
42 | 24 |
|
43 | | - final static class Small extends CompactStringObjectMap |
44 | | - { |
45 | | - public final static Small EMPTY = new Small(null, null); |
46 | | - |
47 | | - protected final String key1, key2; |
48 | | - protected final Object value1, value2; |
| 25 | + private final int _hashMask, _spillCount; |
49 | 26 |
|
50 | | - public Small(Map.Entry<String,?> e1, Map.Entry<String,?> e2) |
51 | | - { |
52 | | - if (e1 == null) { |
53 | | - key1 = null; |
54 | | - value1 = null; |
55 | | - } else { |
56 | | - key1 = e1.getKey(); |
57 | | - value1 = e1.getValue(); |
58 | | - } |
59 | | - if (e2 == null) { |
60 | | - key2 = null; |
61 | | - value2 = null; |
62 | | - } else { |
63 | | - key2 = e2.getKey(); |
64 | | - value2 = e2.getValue(); |
65 | | - } |
66 | | - } |
67 | | - |
68 | | - @Override |
69 | | - public Object find(String key) { |
70 | | - // no assumption of key being intern()ed: |
71 | | - if (key.equals(key1)) { |
72 | | - return value1; |
73 | | - } |
74 | | - if (key.equals(key2)) { |
75 | | - return value2; |
76 | | - } |
77 | | - return null; |
78 | | - } |
| 27 | + private final Object[] _hashArea; |
79 | 28 |
|
80 | | - @Override |
81 | | - public List<String> keys() { |
82 | | - ArrayList<String> keys = new ArrayList<String>(2); |
83 | | - if (key1 != null) { |
84 | | - keys.add(key1); |
85 | | - } |
86 | | - if (key2 != null) { |
87 | | - keys.add(key2); |
88 | | - } |
89 | | - return keys; |
90 | | - } |
91 | | -} |
92 | | - |
93 | | - /** |
94 | | - * Raw mapping from keys to indices, optimized for fast access via |
95 | | - * better memory efficiency. Hash area divide in three; main hash, |
96 | | - * half-size secondary, followed by as-big-as-needed spillover. |
97 | | - */ |
98 | | - final static class Big extends CompactStringObjectMap |
| 29 | + private CompactStringObjectMap(int hashMask, int spillCount, Object[] hashArea) |
99 | 30 | { |
100 | | - private final int _hashMask, _spillCount; |
101 | | - |
102 | | - private final Object[] _hashArea; |
| 31 | + _hashMask = hashMask; |
| 32 | + _spillCount = spillCount; |
| 33 | + _hashArea = hashArea; |
| 34 | + } |
103 | 35 |
|
104 | | - private Big(int hashMask, int spillCount, Object[] hashArea) |
105 | | - { |
106 | | - _hashMask = hashMask; |
107 | | - _spillCount = spillCount; |
108 | | - _hashArea = hashArea; |
| 36 | + public static <T> CompactStringObjectMap construct(Map<String,T> all) |
| 37 | + { |
| 38 | + if (all.isEmpty()) { // can this happen? |
| 39 | + return EMPTY; |
109 | 40 | } |
110 | 41 |
|
111 | | - public static <T> Big construct(Map<String,T> all) |
112 | | - { |
113 | | - // First: calculate size of primary hash area |
114 | | - final int size = findSize(all.size()); |
115 | | - final int mask = size-1; |
116 | | - // and allocate enough to contain primary/secondary, expand for spillovers as need be |
117 | | - int alloc = (size + (size>>1)) * 2; |
118 | | - Object[] hashArea = new Object[alloc]; |
119 | | - int spillCount = 0; |
| 42 | + // First: calculate size of primary hash area |
| 43 | + final int size = findSize(all.size()); |
| 44 | + final int mask = size-1; |
| 45 | + // and allocate enough to contain primary/secondary, expand for spillovers as need be |
| 46 | + int alloc = (size + (size>>1)) * 2; |
| 47 | + Object[] hashArea = new Object[alloc]; |
| 48 | + int spillCount = 0; |
120 | 49 |
|
121 | | - for (Map.Entry<String,T> entry : all.entrySet()) { |
122 | | - String key = entry.getKey(); |
| 50 | + for (Map.Entry<String,T> entry : all.entrySet()) { |
| 51 | + String key = entry.getKey(); |
123 | 52 |
|
124 | | - int slot = key.hashCode() & mask; |
125 | | - int ix = slot+slot; |
| 53 | + int slot = key.hashCode() & mask; |
| 54 | + int ix = slot+slot; |
126 | 55 |
|
127 | | - // primary slot not free? |
| 56 | + // primary slot not free? |
| 57 | + if (hashArea[ix] != null) { |
| 58 | + // secondary? |
| 59 | + ix = (size + (slot >> 1)) << 1; |
128 | 60 | if (hashArea[ix] != null) { |
129 | | - // secondary? |
130 | | - ix = (size + (slot >> 1)) << 1; |
131 | | - if (hashArea[ix] != null) { |
132 | | - // ok, spill over. |
133 | | - ix = ((size + (size >> 1) ) << 1) + spillCount; |
134 | | - spillCount += 2; |
135 | | - if (ix >= hashArea.length) { |
136 | | - hashArea = Arrays.copyOf(hashArea, hashArea.length + 4); |
137 | | - } |
| 61 | + // ok, spill over. |
| 62 | + ix = ((size + (size >> 1) ) << 1) + spillCount; |
| 63 | + spillCount += 2; |
| 64 | + if (ix >= hashArea.length) { |
| 65 | + hashArea = Arrays.copyOf(hashArea, hashArea.length + 4); |
138 | 66 | } |
139 | 67 | } |
140 | | - hashArea[ix] = key; |
141 | | - hashArea[ix+1] = entry.getValue(); |
142 | 68 | } |
143 | | - return new Big(mask, spillCount, hashArea); |
| 69 | + hashArea[ix] = key; |
| 70 | + hashArea[ix+1] = entry.getValue(); |
144 | 71 | } |
| 72 | + return new CompactStringObjectMap(mask, spillCount, hashArea); |
| 73 | + } |
145 | 74 |
|
146 | | - private final static int findSize(int size) |
147 | | - { |
148 | | - if (size <= 5) { |
149 | | - return 8; |
150 | | - } |
151 | | - if (size <= 12) { |
152 | | - return 16; |
153 | | - } |
154 | | - int needed = size + (size >> 2); // at most 80% full |
155 | | - int result = 32; |
156 | | - while (result < needed) { |
157 | | - result += result; |
158 | | - } |
159 | | - return result; |
| 75 | + private final static int findSize(int size) |
| 76 | + { |
| 77 | + if (size <= 5) { |
| 78 | + return 8; |
160 | 79 | } |
| 80 | + if (size <= 12) { |
| 81 | + return 16; |
| 82 | + } |
| 83 | + int needed = size + (size >> 2); // at most 80% full |
| 84 | + int result = 32; |
| 85 | + while (result < needed) { |
| 86 | + result += result; |
| 87 | + } |
| 88 | + return result; |
| 89 | + } |
161 | 90 |
|
162 | | - @Override |
163 | | - public Object find(String key) { |
164 | | - int slot = key.hashCode() & _hashMask; |
165 | | - int ix = (slot<<1); |
166 | | - Object match = _hashArea[ix]; |
167 | | - if ((match == key) || key.equals(match)) { |
168 | | - return _hashArea[ix+1]; |
169 | | - } |
170 | | - return _find2(key, slot, match); |
| 91 | + public Object find(String key) { |
| 92 | + int slot = key.hashCode() & _hashMask; |
| 93 | + int ix = (slot<<1); |
| 94 | + Object match = _hashArea[ix]; |
| 95 | + if ((match == key) || key.equals(match)) { |
| 96 | + return _hashArea[ix+1]; |
171 | 97 | } |
| 98 | + return _find2(key, slot, match); |
| 99 | + } |
172 | 100 |
|
173 | | - private final Object _find2(String key, int slot, Object match) |
174 | | - { |
175 | | - if (match == null) { |
176 | | - return null; |
177 | | - } |
178 | | - int hashSize = _hashMask+1; |
179 | | - int ix = hashSize + (slot>>1) << 1; |
180 | | - match = _hashArea[ix]; |
181 | | - if (key.equals(match)) { |
182 | | - return _hashArea[ix+1]; |
183 | | - } |
184 | | - if (match != null) { // _findFromSpill(...) |
185 | | - int i = (hashSize + (hashSize>>1)) << 1; |
186 | | - for (int end = i + _spillCount; i < end; i += 2) { |
187 | | - match = _hashArea[i]; |
188 | | - if ((match == key) || key.equals(match)) { |
189 | | - return _hashArea[i+1]; |
190 | | - } |
| 101 | + private final Object _find2(String key, int slot, Object match) |
| 102 | + { |
| 103 | + if (match == null) { |
| 104 | + return null; |
| 105 | + } |
| 106 | + int hashSize = _hashMask+1; |
| 107 | + int ix = hashSize + (slot>>1) << 1; |
| 108 | + match = _hashArea[ix]; |
| 109 | + if (key.equals(match)) { |
| 110 | + return _hashArea[ix+1]; |
| 111 | + } |
| 112 | + if (match != null) { // _findFromSpill(...) |
| 113 | + int i = (hashSize + (hashSize>>1)) << 1; |
| 114 | + for (int end = i + _spillCount; i < end; i += 2) { |
| 115 | + match = _hashArea[i]; |
| 116 | + if ((match == key) || key.equals(match)) { |
| 117 | + return _hashArea[i+1]; |
191 | 118 | } |
192 | 119 | } |
193 | | - return null; |
194 | 120 | } |
| 121 | + return null; |
| 122 | + } |
195 | 123 |
|
196 | | - @Override |
197 | | - public List<String> keys() { |
198 | | - final int end = _hashArea.length; |
199 | | - List<String> keys = new ArrayList<String>(end >> 2); |
200 | | - for (int i = 0; i < end; i += 2) { |
201 | | - Object key = _hashArea[i]; |
202 | | - if (key != null) { |
203 | | - keys.add((String) key); |
204 | | - } |
| 124 | + public List<String> keys() { |
| 125 | + final int end = _hashArea.length; |
| 126 | + List<String> keys = new ArrayList<String>(end >> 2); |
| 127 | + for (int i = 0; i < end; i += 2) { |
| 128 | + Object key = _hashArea[i]; |
| 129 | + if (key != null) { |
| 130 | + keys.add((String) key); |
205 | 131 | } |
206 | | - return keys; |
207 | 132 | } |
| 133 | + return keys; |
208 | 134 | } |
209 | 135 | } |
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