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17 package com.google.common.primitives;
18
19 import static com.google.common.truth.Truth.assertThat;
20 import static java.lang.Double.NaN;
21
22 import com.google.common.annotations.GwtCompatible;
23 import com.google.common.base.Converter;
24 import com.google.common.collect.testing.Helpers;
25
26 import junit.framework.TestCase;
27
28 import java.util.Arrays;
29 import java.util.Collection;
30 import java.util.Collections;
31 import java.util.Comparator;
32 import java.util.List;
33
34
35
36
37
38
39 @GwtCompatible(emulated = true)
40 @SuppressWarnings("cast")
41 public class DoublesTest extends TestCase {
42 private static final double[] EMPTY = {};
43 private static final double[] ARRAY1 = {(double) 1};
44 private static final double[] ARRAY234
45 = {(double) 2, (double) 3, (double) 4};
46
47 private static final double LEAST = Double.NEGATIVE_INFINITY;
48 private static final double GREATEST = Double.POSITIVE_INFINITY;
49
50 private static final double[] NUMBERS = new double[] {
51 LEAST, -Double.MAX_VALUE, -1.0, -0.5, -0.1, -0.0, 0.0, 0.1, 0.5, 1.0,
52 Double.MAX_VALUE, GREATEST, Double.MIN_NORMAL, -Double.MIN_NORMAL,
53 Double.MIN_VALUE, -Double.MIN_VALUE, Integer.MIN_VALUE,
54 Integer.MAX_VALUE, Long.MIN_VALUE, Long.MAX_VALUE
55 };
56
57 private static final double[] VALUES
58 = Doubles.concat(NUMBERS, new double[] {NaN});
59
60 public void testHashCode() {
61 for (double value : VALUES) {
62 assertEquals(((Double) value).hashCode(), Doubles.hashCode(value));
63 }
64 }
65
66 public void testIsFinite() {
67 for (double value : NUMBERS) {
68 assertEquals(!(Double.isNaN(value) || Double.isInfinite(value)), Doubles.isFinite(value));
69 }
70 }
71
72 public void testCompare() {
73 for (double x : VALUES) {
74 for (double y : VALUES) {
75
76 assertEquals(x + ", " + y,
77 Double.valueOf(x).compareTo(y),
78 Doubles.compare(x, y));
79 }
80 }
81 }
82
83 public void testContains() {
84 assertFalse(Doubles.contains(EMPTY, (double) 1));
85 assertFalse(Doubles.contains(ARRAY1, (double) 2));
86 assertFalse(Doubles.contains(ARRAY234, (double) 1));
87 assertTrue(Doubles.contains(new double[] {(double) -1}, (double) -1));
88 assertTrue(Doubles.contains(ARRAY234, (double) 2));
89 assertTrue(Doubles.contains(ARRAY234, (double) 3));
90 assertTrue(Doubles.contains(ARRAY234, (double) 4));
91
92 for (double value : NUMBERS) {
93 assertTrue("" + value,
94 Doubles.contains(new double[] {5.0, value}, value));
95 }
96 assertFalse(Doubles.contains(new double[] {5.0, NaN}, NaN));
97 }
98
99 public void testIndexOf() {
100 assertEquals(-1, Doubles.indexOf(EMPTY, (double) 1));
101 assertEquals(-1, Doubles.indexOf(ARRAY1, (double) 2));
102 assertEquals(-1, Doubles.indexOf(ARRAY234, (double) 1));
103 assertEquals(0, Doubles.indexOf(
104 new double[] {(double) -1}, (double) -1));
105 assertEquals(0, Doubles.indexOf(ARRAY234, (double) 2));
106 assertEquals(1, Doubles.indexOf(ARRAY234, (double) 3));
107 assertEquals(2, Doubles.indexOf(ARRAY234, (double) 4));
108 assertEquals(1, Doubles.indexOf(
109 new double[] { (double) 2, (double) 3, (double) 2, (double) 3 },
110 (double) 3));
111
112 for (double value : NUMBERS) {
113 assertEquals("" + value,
114 1, Doubles.indexOf(new double[] {5.0, value}, value));
115 }
116 assertEquals(-1, Doubles.indexOf(new double[] {5.0, NaN}, NaN));
117 }
118
119 public void testIndexOf_arrayTarget() {
120 assertEquals(0, Doubles.indexOf(EMPTY, EMPTY));
121 assertEquals(0, Doubles.indexOf(ARRAY234, EMPTY));
122 assertEquals(-1, Doubles.indexOf(EMPTY, ARRAY234));
123 assertEquals(-1, Doubles.indexOf(ARRAY234, ARRAY1));
124 assertEquals(-1, Doubles.indexOf(ARRAY1, ARRAY234));
125 assertEquals(0, Doubles.indexOf(ARRAY1, ARRAY1));
126 assertEquals(0, Doubles.indexOf(ARRAY234, ARRAY234));
127 assertEquals(0, Doubles.indexOf(
128 ARRAY234, new double[] { (double) 2, (double) 3 }));
129 assertEquals(1, Doubles.indexOf(
130 ARRAY234, new double[] { (double) 3, (double) 4 }));
131 assertEquals(1, Doubles.indexOf(ARRAY234, new double[] { (double) 3 }));
132 assertEquals(2, Doubles.indexOf(ARRAY234, new double[] { (double) 4 }));
133 assertEquals(1, Doubles.indexOf(new double[] { (double) 2, (double) 3,
134 (double) 3, (double) 3, (double) 3 },
135 new double[] { (double) 3 }
136 ));
137 assertEquals(2, Doubles.indexOf(
138 new double[] { (double) 2, (double) 3, (double) 2,
139 (double) 3, (double) 4, (double) 2, (double) 3},
140 new double[] { (double) 2, (double) 3, (double) 4}
141 ));
142 assertEquals(1, Doubles.indexOf(
143 new double[] { (double) 2, (double) 2, (double) 3,
144 (double) 4, (double) 2, (double) 3, (double) 4},
145 new double[] { (double) 2, (double) 3, (double) 4}
146 ));
147 assertEquals(-1, Doubles.indexOf(
148 new double[] { (double) 4, (double) 3, (double) 2},
149 new double[] { (double) 2, (double) 3, (double) 4}
150 ));
151
152 for (double value : NUMBERS) {
153 assertEquals("" + value, 1, Doubles.indexOf(
154 new double[] {5.0, value, value, 5.0}, new double[] {value, value}));
155 }
156 assertEquals(-1, Doubles.indexOf(
157 new double[] {5.0, NaN, NaN, 5.0}, new double[] {NaN, NaN}));
158 }
159
160 public void testLastIndexOf() {
161 assertEquals(-1, Doubles.lastIndexOf(EMPTY, (double) 1));
162 assertEquals(-1, Doubles.lastIndexOf(ARRAY1, (double) 2));
163 assertEquals(-1, Doubles.lastIndexOf(ARRAY234, (double) 1));
164 assertEquals(0, Doubles.lastIndexOf(
165 new double[] {(double) -1}, (double) -1));
166 assertEquals(0, Doubles.lastIndexOf(ARRAY234, (double) 2));
167 assertEquals(1, Doubles.lastIndexOf(ARRAY234, (double) 3));
168 assertEquals(2, Doubles.lastIndexOf(ARRAY234, (double) 4));
169 assertEquals(3, Doubles.lastIndexOf(
170 new double[] { (double) 2, (double) 3, (double) 2, (double) 3 },
171 (double) 3));
172
173 for (double value : NUMBERS) {
174 assertEquals("" + value,
175 0, Doubles.lastIndexOf(new double[] {value, 5.0}, value));
176 }
177 assertEquals(-1, Doubles.lastIndexOf(new double[] {NaN, 5.0}, NaN));
178 }
179
180 public void testMax_noArgs() {
181 try {
182 Doubles.max();
183 fail();
184 } catch (IllegalArgumentException expected) {
185 }
186 }
187
188 public void testMax() {
189 assertEquals(LEAST, Doubles.max(LEAST));
190 assertEquals(GREATEST, Doubles.max(GREATEST));
191 assertEquals((double) 9, Doubles.max(
192 (double) 8, (double) 6, (double) 7,
193 (double) 5, (double) 3, (double) 0, (double) 9));
194
195 assertEquals(0.0, Doubles.max(-0.0, 0.0));
196 assertEquals(0.0, Doubles.max(0.0, -0.0));
197 assertEquals(GREATEST, Doubles.max(NUMBERS));
198 assertTrue(Double.isNaN(Doubles.max(VALUES)));
199 }
200
201 public void testMin_noArgs() {
202 try {
203 Doubles.min();
204 fail();
205 } catch (IllegalArgumentException expected) {
206 }
207 }
208
209 public void testMin() {
210 assertEquals(LEAST, Doubles.min(LEAST));
211 assertEquals(GREATEST, Doubles.min(GREATEST));
212 assertEquals((double) 0, Doubles.min(
213 (double) 8, (double) 6, (double) 7,
214 (double) 5, (double) 3, (double) 0, (double) 9));
215
216 assertEquals(-0.0, Doubles.min(-0.0, 0.0));
217 assertEquals(-0.0, Doubles.min(0.0, -0.0));
218 assertEquals(LEAST, Doubles.min(NUMBERS));
219 assertTrue(Double.isNaN(Doubles.min(VALUES)));
220 }
221
222 public void testConcat() {
223 assertTrue(Arrays.equals(EMPTY, Doubles.concat()));
224 assertTrue(Arrays.equals(EMPTY, Doubles.concat(EMPTY)));
225 assertTrue(Arrays.equals(EMPTY, Doubles.concat(EMPTY, EMPTY, EMPTY)));
226 assertTrue(Arrays.equals(ARRAY1, Doubles.concat(ARRAY1)));
227 assertNotSame(ARRAY1, Doubles.concat(ARRAY1));
228 assertTrue(Arrays.equals(ARRAY1, Doubles.concat(EMPTY, ARRAY1, EMPTY)));
229 assertTrue(Arrays.equals(
230 new double[] {(double) 1, (double) 1, (double) 1},
231 Doubles.concat(ARRAY1, ARRAY1, ARRAY1)));
232 assertTrue(Arrays.equals(
233 new double[] {(double) 1, (double) 2, (double) 3, (double) 4},
234 Doubles.concat(ARRAY1, ARRAY234)));
235 }
236
237 public void testEnsureCapacity() {
238 assertSame(EMPTY, Doubles.ensureCapacity(EMPTY, 0, 1));
239 assertSame(ARRAY1, Doubles.ensureCapacity(ARRAY1, 0, 1));
240 assertSame(ARRAY1, Doubles.ensureCapacity(ARRAY1, 1, 1));
241 assertTrue(Arrays.equals(
242 new double[] {(double) 1, (double) 0, (double) 0},
243 Doubles.ensureCapacity(ARRAY1, 2, 1)));
244 }
245
246 public void testEnsureCapacity_fail() {
247 try {
248 Doubles.ensureCapacity(ARRAY1, -1, 1);
249 fail();
250 } catch (IllegalArgumentException expected) {
251 }
252 try {
253
254 Doubles.ensureCapacity(ARRAY1, 1, -1);
255 fail();
256 } catch (IllegalArgumentException expected) {
257 }
258 }
259
260 public void testJoinNonTrivialDoubles() {
261 assertEquals("", Doubles.join(",", EMPTY));
262 assertEquals("1.2", Doubles.join(",", 1.2));
263 assertEquals("1.3,2.4", Doubles.join(",", 1.3, 2.4));
264 assertEquals("1.42.53.6", Doubles.join("", 1.4, 2.5, 3.6));
265 }
266
267 public void testLexicographicalComparator() {
268 List<double[]> ordered = Arrays.asList(
269 new double[] {},
270 new double[] {LEAST},
271 new double[] {LEAST, LEAST},
272 new double[] {LEAST, (double) 1},
273 new double[] {(double) 1},
274 new double[] {(double) 1, LEAST},
275 new double[] {GREATEST, Double.MAX_VALUE},
276 new double[] {GREATEST, GREATEST},
277 new double[] {GREATEST, GREATEST, GREATEST});
278
279 Comparator<double[]> comparator = Doubles.lexicographicalComparator();
280 Helpers.testComparator(comparator, ordered);
281 }
282
283 public void testToArray() {
284
285 List<Double> none = Arrays.<Double>asList();
286 assertTrue(Arrays.equals(EMPTY, Doubles.toArray(none)));
287
288 List<Double> one = Arrays.asList((double) 1);
289 assertTrue(Arrays.equals(ARRAY1, Doubles.toArray(one)));
290
291 double[] array = {(double) 0, (double) 1, Math.PI};
292
293 List<Double> three = Arrays.asList((double) 0, (double) 1, Math.PI);
294 assertTrue(Arrays.equals(array, Doubles.toArray(three)));
295
296 assertTrue(Arrays.equals(array, Doubles.toArray(Doubles.asList(array))));
297 }
298
299 public void testToArray_threadSafe() {
300 for (int delta : new int[] { +1, 0, -1 }) {
301 for (int i = 0; i < VALUES.length; i++) {
302 List<Double> list = Doubles.asList(VALUES).subList(0, i);
303 Collection<Double> misleadingSize =
304 Helpers.misleadingSizeCollection(delta);
305 misleadingSize.addAll(list);
306 double[] arr = Doubles.toArray(misleadingSize);
307 assertEquals(i, arr.length);
308 for (int j = 0; j < i; j++) {
309 assertEquals(VALUES[j], arr[j]);
310 }
311 }
312 }
313 }
314
315 public void testToArray_withNull() {
316 List<Double> list = Arrays.asList((double) 0, (double) 1, null);
317 try {
318 Doubles.toArray(list);
319 fail();
320 } catch (NullPointerException expected) {
321 }
322 }
323
324 public void testToArray_withConversion() {
325 double[] array = {(double) 0, (double) 1, (double) 2};
326
327 List<Byte> bytes = Arrays.asList((byte) 0, (byte) 1, (byte) 2);
328 List<Short> shorts = Arrays.asList((short) 0, (short) 1, (short) 2);
329 List<Integer> ints = Arrays.asList(0, 1, 2);
330 List<Float> floats = Arrays.asList((float) 0, (float) 1, (float) 2);
331 List<Long> longs = Arrays.asList((long) 0, (long) 1, (long) 2);
332 List<Double> doubles = Arrays.asList((double) 0, (double) 1, (double) 2);
333
334 assertTrue(Arrays.equals(array, Doubles.toArray(bytes)));
335 assertTrue(Arrays.equals(array, Doubles.toArray(shorts)));
336 assertTrue(Arrays.equals(array, Doubles.toArray(ints)));
337 assertTrue(Arrays.equals(array, Doubles.toArray(floats)));
338 assertTrue(Arrays.equals(array, Doubles.toArray(longs)));
339 assertTrue(Arrays.equals(array, Doubles.toArray(doubles)));
340 }
341
342 public void testAsList_isAView() {
343 double[] array = {(double) 0, (double) 1};
344 List<Double> list = Doubles.asList(array);
345 list.set(0, (double) 2);
346 assertTrue(Arrays.equals(new double[] {(double) 2, (double) 1}, array));
347 array[1] = (double) 3;
348 assertThat(list).has().exactly((double) 2, (double) 3).inOrder();
349 }
350
351 public void testAsList_toArray_roundTrip() {
352 double[] array = { (double) 0, (double) 1, (double) 2 };
353 List<Double> list = Doubles.asList(array);
354 double[] newArray = Doubles.toArray(list);
355
356
357 list.set(0, (double) 4);
358 assertTrue(Arrays.equals(
359 new double[] { (double) 0, (double) 1, (double) 2 }, newArray));
360 newArray[1] = (double) 5;
361 assertEquals((double) 1, (double) list.get(1));
362 }
363
364
365 public void testAsList_subList_toArray_roundTrip() {
366 double[] array = { (double) 0, (double) 1, (double) 2, (double) 3 };
367 List<Double> list = Doubles.asList(array);
368 assertTrue(Arrays.equals(new double[] { (double) 1, (double) 2 },
369 Doubles.toArray(list.subList(1, 3))));
370 assertTrue(Arrays.equals(new double[] {},
371 Doubles.toArray(list.subList(2, 2))));
372 }
373
374 public void testAsListEmpty() {
375 assertSame(Collections.emptyList(), Doubles.asList(EMPTY));
376 }
377
378
379
380
381
382 private static Double referenceTryParse(String input) {
383 if (input.trim().length() < input.length()) {
384 return null;
385 }
386 try {
387 return Double.valueOf(input);
388 } catch (NumberFormatException e) {
389 return null;
390 }
391 }
392
393 private static final String[] BAD_TRY_PARSE_INPUTS =
394 { "", "+-", "+-0", " 5", "32 ", " 55 ", "infinity", "POSITIVE_INFINITY", "0x9A", "0x9A.bE-5",
395 ".", ".e5", "NaNd", "InfinityF" };
396
397 public void testStringConverter_convert() {
398 Converter<String, Double> converter = Doubles.stringConverter();
399 assertEquals((Double) 1.0, converter.convert("1.0"));
400 assertEquals((Double) 0.0, converter.convert("0.0"));
401 assertEquals((Double) (-1.0), converter.convert("-1.0"));
402 assertEquals((Double) 1.0, converter.convert("1"));
403 assertEquals((Double) 0.0, converter.convert("0"));
404 assertEquals((Double) (-1.0), converter.convert("-1"));
405 assertEquals((Double) 1e6, converter.convert("1e6"));
406 assertEquals((Double) 1e-6, converter.convert("1e-6"));
407 }
408
409 public void testStringConverter_convertError() {
410 try {
411 Doubles.stringConverter().convert("notanumber");
412 fail();
413 } catch (NumberFormatException expected) {
414 }
415 }
416
417 public void testStringConverter_nullConversions() {
418 assertNull(Doubles.stringConverter().convert(null));
419 assertNull(Doubles.stringConverter().reverse().convert(null));
420 }
421 }
422