Added Fibonacci.
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174
fibonacci/src/fibonacci/Main.java
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174
fibonacci/src/fibonacci/Main.java
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package fibonacci;
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import tester.Tester;
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class Examples {
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ISequence<Integer> f;
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ISequence<String> a;
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ISeqGen<String> aGen = new AGen();
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void init() {
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this.f = new Fibonacci();
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this.a = new GenSeq<String>("", aGen);
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}
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void testFibonacci(Tester t) {
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init();
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t.checkExpect(f.get(), 0);
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t.checkExpect(f.get(), 1);
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t.checkExpect(f.get(), 1);
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t.checkExpect(f.get(), 2);
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t.checkExpect(f.get(), 3);
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t.checkExpect(f.get(), 5);
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t.checkExpect(f.get(), 8);
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}
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void testASeq(Tester t) {
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init();
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t.checkExpect(a.get(), "");
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t.checkExpect(a.get(), "a");
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t.checkExpect(a.get(), "aa");
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t.checkExpect(a.get(), "aaa");
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t.checkExpect(a.get(), "aaaa");
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t.checkExpect(a.get(), "aaaaa");
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}
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}
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// A generic list.
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interface ILo<A> {}
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class Cons<A> implements ILo<A> {
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A first;
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ILo<A> rest;
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Cons(A first, ILo<A> rest) {
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this.first = first;
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this.rest = rest;
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}
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}
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class Mt<A> implements ILo<A> {}
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interface ISequence<X> {
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// Returns the current element in the sequence.
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// EFFECT: Updates the state to the next element in the sequence.
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X get();
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}
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// Sequence generator method.
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interface ISeqGen<X> {
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X gen(X state); // Generates the next value in the sequence given the current state.
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}
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// The Fibonacci sequence.
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class Fibonacci implements ISequence<Integer> {
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int idx; // Number of times `get()` has been called.
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int pre; // The previous (last) number.
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int pen; // The penultimate (second to last) number.
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Fibonacci() {
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this.pen = 0;
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this.pre = 1;
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}
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// Get the next in the sequence.
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public Integer get() {
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int ret; // What to return.
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/*
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idx pen pre ret
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0 0 1 0
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1 0 1 1
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2 1 1 2
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3 1 2 3
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4 2 3 5
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5 3 5 8
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*/
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// F(0) = 0; F(1) = 1
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if (this.idx <= 1) ret = this.idx;
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else { // F(n) = F(n-1) + F(n-2)
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ret = this.pre + this.pen;
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this.pen = this.pre;
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this.pre = ret;
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}
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this.idx = this.idx + 1;
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return ret;
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}
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}
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// A generic sequence.
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class GenSeq<X> implements ISequence<X> {
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X state; // The current state of the sequence.
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ISeqGen<X> seqGen; // The method by which new values are generated.
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// Create new generic sequence given an initial state.
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GenSeq(X init, ISeqGen<X> seqGen) {
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this.state = init;
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this.seqGen = seqGen;
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}
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public X get() {
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X ret = this.state;
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this.state = this.seqGen.gen(this.state);
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return ret;
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}
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}
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// A string of n "a"s.
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class AGen implements ISeqGen<String> {
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public String gen(String state) {
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return state.concat("a");
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}
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}
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class SimpleMarkov implements ISeqGen<String> {
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public String gen(String state) {
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return null;
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}
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}
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// The probability of a word.
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class ProbPair {
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String word; // The word itself.
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int count; // The number of times the word has appeared after this word.
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ProbPair(String word, int count) {
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this.word = word;
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this.count = count;
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}
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}
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// The probable completions for a word.
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class Completion {
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String word; // The word the completions are for.
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ILo<ProbPair> completions; //The probable completions.
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Completion(String word, ILo<ProbPair> completions) {
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this.word = word;
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this.completions = completions;
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}
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}
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// The list of all known completions.
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class CompletionTable {
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ILo<Completion> table;
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CompletionTable(ILo<Completion> table) {
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this.table = table;
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}
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}
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static class ProcessInput {}
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