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guava-tests/benchmark/com/google/common/math/LongMathBenchmark.java
binomialArguments[i][0] = RANDOM_SOURCE.nextInt(MathBenchmarking.biggestBinomials[k] - k) + k; } } @Benchmark int pow(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) { int j = i & ARRAY_MASK; tmp += LongMath.pow(positive[j], exponents[j]); } return tmp; } @Benchmark int mod(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) {
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Mon Dec 04 17:37:03 UTC 2017 - 3.5K bytes - Viewed (0) -
android/guava-tests/benchmark/com/google/common/cache/LoadingCacheSingleThreadBenchmark.java
@BeforeExperiment void setUp() { // random integers will be generated in this range, then raised to the // power of (1/concentration) and floor()ed max = Ints.checkedCast((long) Math.pow(distinctKeys, concentration)); cache = CacheBuilder.newBuilder() .concurrencyLevel(segments) .maximumSize(maximumSize) .build(
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Mon Dec 04 17:37:03 UTC 2017 - 3.4K bytes - Viewed (0) -
android/guava-tests/benchmark/com/google/common/math/LongMathBenchmark.java
binomialArguments[i][0] = RANDOM_SOURCE.nextInt(MathBenchmarking.biggestBinomials[k] - k) + k; } } @Benchmark int pow(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) { int j = i & ARRAY_MASK; tmp += LongMath.pow(positive[j], exponents[j]); } return tmp; } @Benchmark int mod(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) {
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Mon Dec 04 17:37:03 UTC 2017 - 3.5K bytes - Viewed (0) -
guava-tests/benchmark/com/google/common/cache/LoadingCacheSingleThreadBenchmark.java
@BeforeExperiment void setUp() { // random integers will be generated in this range, then raised to the // power of (1/concentration) and floor()ed max = Ints.checkedCast((long) Math.pow(distinctKeys, concentration)); cache = CacheBuilder.newBuilder() .concurrencyLevel(segments) .maximumSize(maximumSize) .build(
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Mon Dec 04 17:37:03 UTC 2017 - 3.4K bytes - Viewed (0) -
guava-tests/benchmark/com/google/common/math/IntMathBenchmark.java
nonnegative[i] = randomNonNegativeBigInteger(Integer.SIZE - 1).intValue(); ints[i] = RANDOM_SOURCE.nextInt(); } } @Benchmark int pow(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) { int j = i & ARRAY_MASK; tmp += IntMath.pow(positive[j], exponent[j]); } return tmp; } @Benchmark int mod(int reps) { int tmp = 0; for (int i = 0; i < reps; i++) {
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Mon Dec 04 17:37:03 UTC 2017 - 3.2K bytes - Viewed (0) -
guava/src/com/google/common/math/BigDecimalMath.java
* infinite {@code double} values are considered infinitely far away. For example, 2^2000 is not * representable as a double, but {@code roundToDouble(BigDecimal.valueOf(2).pow(2000), HALF_UP)} * will return {@code Double.MAX_VALUE}, not {@code Double.POSITIVE_INFINITY}. * * <p>For the case of {@link RoundingMode#HALF_EVEN}, this implementation uses the IEEE 754
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Thu Feb 23 18:45:50 UTC 2023 - 3.1K bytes - Viewed (0) -
android/guava/src/com/google/common/math/BigDecimalMath.java
* infinite {@code double} values are considered infinitely far away. For example, 2^2000 is not * representable as a double, but {@code roundToDouble(BigDecimal.valueOf(2).pow(2000), HALF_UP)} * will return {@code Double.MAX_VALUE}, not {@code Double.POSITIVE_INFINITY}. * * <p>For the case of {@link RoundingMode#HALF_EVEN}, this implementation uses the IEEE 754
Registered: Fri Nov 01 12:43:10 UTC 2024 - Last Modified: Thu Feb 23 18:45:50 UTC 2023 - 3.1K bytes - Viewed (0)