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122 lines
2.9 KiB
Java
122 lines
2.9 KiB
Java
package java.security;
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import com.google.gwt.core.client.JsArrayInteger;
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public class SecureRandom extends java.util.Random
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{
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private static final double twoToThe24 = 16777216.0;
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private static final double twoToThe31 = 2147483648.0;
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private static final double twoToThe32 = 4294967296.0;
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private static final double twoToTheMinus24 =
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5.9604644775390625e-8;
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private static final double twoToTheMinus26 =
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1.490116119384765625e-8;
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private static final double twoToTheMinus31 =
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4.656612873077392578125e-10;
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private static final double twoToTheMinus53 =
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1.1102230246251565404236316680908203125e-16;
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protected native JsArrayInteger jsNextChunk() /*-{
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var words = $wnd.sjcl.random.randomWords(4);
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return words;
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}-*/;
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public int next(int numBits)
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{
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int numBytes = (numBits+7)/8;
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byte[] bytes = new byte[numBytes];
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nextBytes(bytes);
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int result=0;
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for (int i=0; i<numBytes; ++i)
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{
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result |= bytes[i] << (8 * i);
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}
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return result;
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}
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public void nextBytes(byte[] bytes)
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{
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final int chunkSize = 4;
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int chunks = (bytes.length+(chunkSize-1)) / chunkSize;
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int j=0;
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for (int i=0; i<chunks; ++i)
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{
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JsArrayInteger a = jsNextChunk();
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int k=0;
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while (j < bytes.length && k < chunkSize)
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bytes[j++] = (byte)(a.get(k++));
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}
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}
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public boolean nextBoolean ()
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{
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return next(1) != 0;
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}
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public int nextInt(int max)
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{
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return (int) next(32) % max;
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}
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public long nextLong()
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{
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return ((long) next(32) << 32) + (long) next(32);
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}
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public double nextDouble() {
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return
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next(26) * twoToTheMinus26 +
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next(27) * twoToTheMinus53;
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}
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public float nextFloat() {
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return (float) (next(24) * twoToTheMinus24);
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}
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public static class Test {
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public static double test() {
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// create random number generators
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SecureRandom rand = new SecureRandom();
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// total number of sample points to take
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int numPoints = 10000;
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int inRandCircle = 0;
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double xr, yr, zr;
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// xr and yr will be the random point
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// zr will be the calculated distance to the center
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for(int i=0; i < numPoints; ++i)
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{
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xr = rand.nextDouble();
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yr = rand.nextDouble();
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zr = (xr * xr) + (yr * yr);
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if(zr <= 1.0)
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inRandCircle++;
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}
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// calculate the Pi approximations
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double randomPi = approxPi(inRandCircle, numPoints);
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// calculate the % error
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double randomError = calcError(randomPi);
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return randomError;
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}
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static double approxPi(int inCircle, int totalPoints)
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{
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return (double)inCircle / totalPoints * 4.0;
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}
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static double calcError(double pi)
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{
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return (pi - Math.PI)/Math.PI * 100;
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}
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}
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}
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