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Results 21 - 30 of 54 for dividend (0.04 sec)
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android/guava/src/com/google/common/hash/Hashing.java
* * <p>This method is suitable for the common use case of dividing work among buckets that meet the * following conditions: * * <ul> * <li>You want to assign the same fraction of inputs to each bucket. * <li>When you reduce the number of buckets, you can accept that the most recently added * buckets will be removed first. More concretely, if you are dividing traffic among tasks,
Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Thu Jul 17 15:26:41 UTC 2025 - 29.8K bytes - Viewed (0) -
guava/src/com/google/common/collect/Iterators.java
* partitions * @throws IllegalArgumentException if {@code size} is nonpositive */ public static <T extends @Nullable Object> UnmodifiableIterator<List<T>> partition( Iterator<T> iterator, int size) { return partitionImpl(iterator, size, false); } /**Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Tue Sep 16 12:42:11 UTC 2025 - 51.4K bytes - Viewed (0) -
guava-tests/test/com/google/common/math/BigIntegerMathTest.java
for (RoundingMode mode : ALL_SAFE_ROUNDING_MODES) { BigInteger expected = new BigDecimal(p).divide(new BigDecimal(q), 0, mode).toBigIntegerExact(); assertEquals(expected, BigIntegerMath.divide(p, q, mode)); } } } } private static final BigInteger BAD_FOR_ANDROID_P = new BigInteger("-9223372036854775808");
Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Wed Nov 19 01:35:24 UTC 2025 - 27.1K bytes - Viewed (0) -
android/guava-testlib/src/com/google/common/testing/CollectorTester.java
Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Tue Sep 16 22:01:32 UTC 2025 - 6.8K bytes - Viewed (0) -
android/guava-tests/benchmark/com/google/common/math/IntMathRoundingBenchmark.java
Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Thu Dec 19 18:03:30 UTC 2024 - 2.6K bytes - Viewed (0) -
guava-tests/benchmark/com/google/common/math/BigIntegerMathRoundingBenchmark.java
int j = i & ARRAY_MASK; tmp += BigIntegerMath.sqrt(positive[j], mode).intValue(); } return tmp; } @Benchmark int divide(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) { int j = i & ARRAY_MASK; tmp += BigIntegerMath.divide(nonzero1[j], nonzero2[j], mode).intValue(); } return tmp; } @Benchmark long roundToDouble(int reps) { long tmp = 0;Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Thu Dec 19 18:03:30 UTC 2024 - 2.9K bytes - Viewed (0) -
android/guava-tests/test/com/google/common/math/BigDecimalMathTest.java
new RoundToDoubleTester(BigDecimal.ZERO).setExpectation(0.0, RoundingMode.values()).test(); } public void testRoundToDouble_oneThird() { new RoundToDoubleTester( BigDecimal.ONE.divide(BigDecimal.valueOf(3), new MathContext(50, HALF_EVEN))) .roundUnnecessaryShouldThrow() .setExpectation(0.33333333333333337, UP, CEILING)
Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Wed Nov 19 01:35:24 UTC 2025 - 11K bytes - Viewed (0) -
guava-tests/test/com/google/common/math/IntMathTest.java
} int expected = new BigDecimal(valueOf(p)).divide(new BigDecimal(valueOf(q)), 0, mode).intValue(); assertEquals(p + "/" + q, force32(expected), IntMath.divide(p, q, mode)); // Check the assertions we make in the javadoc. if (mode == DOWN) { assertEquals(p + "/" + q, p / q, IntMath.divide(p, q, mode)); } else if (mode == FLOOR) {Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Mon Aug 11 19:31:30 UTC 2025 - 24.1K bytes - Viewed (0) -
okhttp/src/commonJvmAndroid/kotlin/okhttp3/internal/idn/IdnaMappingTable.kt
} /** * Binary search [sections] for [codePoint], looking at its top 14 bits. * * This binary searches over 4-byte entries, and so it needs to adjust binary search indices * in (by dividing by 4) and out (by multiplying by 4). */ private fun findSectionsIndex(codePoint: Int): Int { val target = (codePoint and 0x1fff80) shr 7 val offset = binarySearch( position = 0,
Registered: Fri Dec 26 11:42:13 UTC 2025 - Last Modified: Fri Dec 27 13:39:56 UTC 2024 - 9K bytes - Viewed (0) -
guava-tests/benchmark/com/google/common/math/BigIntegerMathBenchmark.java
result *= i; } return BigInteger.valueOf(result); } /* * We want each multiplication to have both sides with approximately the same number of digits. * Currently, we just divide the range in half. */ int mid = (n1 + n2) >>> 1; return oldSlowFactorial(n1, mid).multiply(oldSlowFactorial(mid, n2)); } @Benchmark int slowFactorial(int reps) { int tmp = 0;Registered: Fri Dec 26 12:43:10 UTC 2025 - Last Modified: Thu Dec 19 18:03:30 UTC 2024 - 3.5K bytes - Viewed (0)