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Results 1 - 7 of 7 for Prime (0.02 sec)

  1. android/guava-tests/test/com/google/common/math/MathTesting.java

        // Add boundary values manually to avoid over/under flow (this covers 2^N for 0 and 31).
        intValues.add(Integer.MAX_VALUE - 1, Integer.MAX_VALUE);
        // Add values up to 40. This covers cases like "square of a prime" and such.
        for (int i = 1; i <= 40; i++) {
          intValues.add(i);
        }
        // Now add values near 2^N for lots of values of N.
        for (int exponent : asList(2, 3, 4, 9, 15, 16, 17, 24, 25, 30)) {
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Sun Aug 10 19:54:19 UTC 2025
    - 11.3K bytes
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  2. guava/src/com/google/common/collect/DiscreteDomain.java

     * #minValue} and {@link #maxValue} should also be overridden for bounded types.
     *
     * <p>A discrete domain always represents the <i>entire</i> set of values of its type; it cannot
     * represent partial domains such as "prime integers" or "strings of length 5."
     *
     * <p>See the Guava User Guide section on <a href=
     * "https://github.com/google/guava/wiki/RangesExplained#discrete-domains">{@code
     * DiscreteDomain}</a>.
     *
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Thu Feb 13 17:34:21 UTC 2025
    - 10.4K bytes
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  3. android/guava/src/com/google/common/collect/DiscreteDomain.java

     * #minValue} and {@link #maxValue} should also be overridden for bounded types.
     *
     * <p>A discrete domain always represents the <i>entire</i> set of values of its type; it cannot
     * represent partial domains such as "prime integers" or "strings of length 5."
     *
     * <p>See the Guava User Guide section on <a href=
     * "https://github.com/google/guava/wiki/RangesExplained#discrete-domains">{@code
     * DiscreteDomain}</a>.
     *
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Thu Feb 13 17:34:21 UTC 2025
    - 10.4K bytes
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  4. guava/src/com/google/common/math/LongMath.java

              | (1 << 29));
    
      /**
       * Returns {@code true} if {@code n} is a <a
       * href="http://mathworld.wolfram.com/PrimeNumber.html">prime number</a>: an integer <i>greater
       * than one</i> that cannot be factored into a product of <i>smaller</i> positive integers.
       * Returns {@code false} if {@code n} is zero, one, or a composite number (one which <i>can</i> be
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Fri Aug 29 16:20:07 UTC 2025
    - 46.8K bytes
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  5. android/guava/src/com/google/common/hash/Hashing.java

        hashFunctions[0] = Murmur3_128HashFunction.GOOD_FAST_HASH_128;
        int seed = GOOD_FAST_HASH_SEED;
        for (int i = 1; i < hashFunctionsNeeded; i++) {
          seed += 1500450271; // a prime; shouldn't matter
          hashFunctions[i] = murmur3_128(seed);
        }
        return new ConcatenatedHashFunction(hashFunctions);
      }
    
      /**
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Thu Jul 17 15:26:41 UTC 2025
    - 29.8K bytes
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  6. android/guava/src/com/google/common/primitives/Ints.java

        //     ends up at a[d], which in turn ends up at a[2d], and so on until we get back to a[0].
        //     (All indices taken mod n.) If d and n are mutually prime, all elements will have been
        //     moved at that point. Otherwise, we can rotate the cycle a[1], a[1 + d], a[1 + 2d], etc,
        //     then a[2] etc, and so on until we have rotated all elements. There are gcd(d, n) cycles
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Thu Aug 07 16:05:33 UTC 2025
    - 31.4K bytes
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  7. guava/src/com/google/common/hash/Hashing.java

        hashFunctions[0] = Murmur3_128HashFunction.GOOD_FAST_HASH_128;
        int seed = GOOD_FAST_HASH_SEED;
        for (int i = 1; i < hashFunctionsNeeded; i++) {
          seed += 1500450271; // a prime; shouldn't matter
          hashFunctions[i] = murmur3_128(seed);
        }
        return new ConcatenatedHashFunction(hashFunctions);
      }
    
      /**
    Registered: Fri Sep 05 12:43:10 UTC 2025
    - Last Modified: Mon Aug 11 22:06:57 UTC 2025
    - 31.1K bytes
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