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android/guava/src/com/google/common/math/PairedStats.java
* * <p>This fit minimizes the root-mean-square error in {@code y} as a function of {@code x}. This * error is defined as the square root of the mean of the squares of the differences between the * actual {@code y} values of the data and the values predicted by the fit for the {@code x} * values (i.e. it is the square root of the mean of the squares of the vertical distances between
Java - Registered: Fri Apr 26 12:43:10 GMT 2024 - Last Modified: Fri May 12 17:02:53 GMT 2023 - 12.6K bytes - Viewed (0) -
android/guava/src/com/google/common/base/Preconditions.java
* throw new IllegalArgumentException("input is negative: " + value); * } * // calculate square root * } * }</pre> * * <p>to be replaced with the more compact * * <pre>{@code * public static double sqrt(double value) { * checkArgument(value >= 0, "input is negative: %s", value); * // calculate square root * } * }</pre> * * <p>so that a hypothetical bad caller of this method, such as: *
Java - Registered: Fri May 03 12:43:13 GMT 2024 - Last Modified: Thu Apr 11 11:52:14 GMT 2024 - 52.9K bytes - Viewed (0) -
guava/src/com/google/common/base/Strings.java
builder.append(args[i++]); templateStart = placeholderStart + 2; } builder.append(template, templateStart, template.length()); // if we run out of placeholders, append the extra args in square braces if (i < args.length) { builder.append(" ["); builder.append(args[i++]); while (i < args.length) { builder.append(", "); builder.append(args[i++]); }
Java - Registered: Fri Apr 05 12:43:09 GMT 2024 - Last Modified: Fri Sep 17 20:47:03 GMT 2021 - 12.6K bytes - Viewed (0) -
guava-gwt/test-super/com/google/common/collect/testing/super/com/google/common/collect/testing/testers/Platform.java
builder.append(args[i++]); templateStart = placeholderStart + 2; } builder.append(template.substring(templateStart)); // if we run out of placeholders, append the extra args in square braces if (i < args.length) { builder.append(" ["); builder.append(args[i++]); while (i < args.length) { builder.append(", "); builder.append(args[i++]); }
Java - Registered: Fri Apr 26 12:43:10 GMT 2024 - Last Modified: Wed Oct 04 15:31:40 GMT 2023 - 2.3K bytes - Viewed (0) -
guava/src/com/google/common/base/Preconditions.java
* throw new IllegalArgumentException("input is negative: " + value); * } * // calculate square root * } * }</pre> * * <p>to be replaced with the more compact * * <pre>{@code * public static double sqrt(double value) { * checkArgument(value >= 0, "input is negative: %s", value); * // calculate square root * } * }</pre> * * <p>so that a hypothetical bad caller of this method, such as: *
Java - Registered: Fri Apr 05 12:43:09 GMT 2024 - Last Modified: Wed Feb 14 15:46:55 GMT 2024 - 52.9K bytes - Viewed (0) -
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)) {
Java - Registered: Fri May 03 12:43:13 GMT 2024 - Last Modified: Mon Oct 10 19:45:10 GMT 2022 - 11.2K bytes - Viewed (0) -
android/guava/src/com/google/common/math/BigIntegerMath.java
return (logX2Floor < 2 * logFloor + 1) ? logFloor : logFloor + 1; default: throw new AssertionError(); } } /* * The maximum number of bits in a square root for which we'll precompute an explicit half power * of two. This can be any value, but higher values incur more class load time and linearly * increasing memory consumption. */
Java - Registered: Fri Apr 26 12:43:10 GMT 2024 - Last Modified: Wed Feb 07 17:50:39 GMT 2024 - 18.9K bytes - Viewed (0) -
guava-tests/test/com/google/common/math/BigIntegerMathTest.java
public void testSqrtExact() { for (BigInteger x : POSITIVE_BIGINTEGER_CANDIDATES) { BigInteger floor = BigIntegerMath.sqrt(x, FLOOR); // We only expect an exception if x was not a perfect square. boolean isPerfectSquare = floor.pow(2).equals(x); try { assertEquals(floor, BigIntegerMath.sqrt(x, UNNECESSARY)); assertTrue(isPerfectSquare); } catch (ArithmeticException e) {
Java - Registered: Fri Apr 12 12:43:09 GMT 2024 - Last Modified: Wed Feb 07 17:50:39 GMT 2024 - 28.2K bytes - Viewed (0) -
android/guava-tests/test/com/google/common/math/BigIntegerMathTest.java
public void testSqrtExact() { for (BigInteger x : POSITIVE_BIGINTEGER_CANDIDATES) { BigInteger floor = BigIntegerMath.sqrt(x, FLOOR); // We only expect an exception if x was not a perfect square. boolean isPerfectSquare = floor.pow(2).equals(x); try { assertEquals(floor, BigIntegerMath.sqrt(x, UNNECESSARY)); assertTrue(isPerfectSquare); } catch (ArithmeticException e) {
Java - Registered: Fri May 03 12:43:13 GMT 2024 - Last Modified: Wed Feb 07 17:50:39 GMT 2024 - 28.2K bytes - Viewed (0) -
android/guava-tests/test/com/google/common/collect/MultimapsTest.java
Function<Integer, Integer> square = new Function<Integer, Integer>() { @Override public Integer apply(Integer in) { return in * in; } }; Multimap<String, Integer> transformed = Multimaps.transformValues(multimap, square); assertThat(transformed.entries()) .containsExactly(
Java - Registered: Fri May 03 12:43:13 GMT 2024 - Last Modified: Thu Mar 07 18:34:03 GMT 2024 - 39.1K bytes - Viewed (0)