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docs/distributed/DESIGN.md
1024 drives. In this scenario 16 becomes the erasure set size. This is decided based on the greatest common divisor (GCD) of acceptable erasure set sizes ranging from *4 to 16*. - *If total drives has many common divisors the algorithm chooses the minimum amounts of erasure sets possible for a erasure set size of any N*. In the example with 1024 drives - 4, 8, 16 are GCD factors. With 16 drives we get a total of 64 possible sets, with 8 drives we get a total of 128 possible sets, with 4...
Created: Sun Apr 05 19:28:12 GMT 2026 - Last Modified: Wed Feb 26 09:25:50 GMT 2025 - 8K bytes - Click Count (2) -
guava-tests/benchmark/com/google/common/math/IntMathBenchmark.java
Created: Fri Apr 03 12:43:13 GMT 2026 - Last Modified: Wed May 14 19:40:47 GMT 2025 - 3.3K bytes - Click Count (0) -
android/guava-tests/benchmark/com/google/common/math/IntMathBenchmark.java
Created: Fri Apr 03 12:43:13 GMT 2026 - Last Modified: Wed May 14 19:40:47 GMT 2025 - 3.3K bytes - Click Count (0) -
android/guava-tests/benchmark/com/google/common/math/ApacheBenchmark.java
return DoubleMath.factorial(n); } @Override public int gcdInt(int a, int b) { return IntMath.gcd(a, b); } @Override public long gcdLong(long a, long b) { return LongMath.gcd(a, b); } @Override public long binomialCoefficient(int n, int k) { return LongMath.binomial(n, k); } @Override
Created: Fri Apr 03 12:43:13 GMT 2026 - Last Modified: Mon Jul 14 14:44:08 GMT 2025 - 6.9K bytes - Click Count (0) -
guava-tests/benchmark/com/google/common/math/ApacheBenchmark.java
return DoubleMath.factorial(n); } @Override public int gcdInt(int a, int b) { return IntMath.gcd(a, b); } @Override public long gcdLong(long a, long b) { return LongMath.gcd(a, b); } @Override public long binomialCoefficient(int n, int k) { return LongMath.binomial(n, k); } @Override
Created: Fri Apr 03 12:43:13 GMT 2026 - Last Modified: Mon Jul 14 14:44:08 GMT 2025 - 6.9K bytes - Click Count (0)