mirror of
https://github.com/DanilaFe/abacus
synced 2026-09-21 10:52:33 +00:00
Split the project into separate modules.
This commit is contained in:
107
core/src/test/java/org/nwapw/abacus/tests/CalculationTests.java
Executable file
107
core/src/test/java/org/nwapw/abacus/tests/CalculationTests.java
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package org.nwapw.abacus.tests;
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import org.junit.Assert;
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import org.junit.BeforeClass;
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import org.junit.Test;
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import org.nwapw.abacus.Abacus;
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import org.nwapw.abacus.config.Configuration;
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import org.nwapw.abacus.number.NumberInterface;
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import org.nwapw.abacus.plugin.StandardPlugin;
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import org.nwapw.abacus.tree.TreeNode;
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public class CalculationTests {
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private static Abacus abacus = new Abacus(new Configuration(0, "precise", new String[]{}));
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@BeforeClass
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public static void prepareTests(){
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abacus.getPluginManager().addInstantiated(new StandardPlugin(abacus.getPluginManager()));
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abacus.getPluginManager().load();
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}
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private void testOutput(String input, String parseOutput, String output){
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TreeNode parsedTree = abacus.parseString(input);
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Assert.assertNotNull(parsedTree);
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Assert.assertEquals(parsedTree.toString(), parseOutput);
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NumberInterface result = abacus.evaluateTree(parsedTree);
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Assert.assertNotNull(result);
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Assert.assertTrue(result.toString().startsWith(output));
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}
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private void testEvalError(String input, String parseOutput){
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TreeNode parsedTree = abacus.parseString(input);
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Assert.assertNotNull(parsedTree);
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Assert.assertEquals(parsedTree.toString(), parseOutput);
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Assert.assertNull(abacus.evaluateTree(parsedTree));
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}
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@Test
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public void testAddition(){
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testOutput("9.5+10", "(9.5+10)", "19.5");
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}
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@Test
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public void testSubtraction(){
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testOutput("9.5-10", "(9.5-10)", "-0.5");
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}
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@Test
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public void testMultiplication(){
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testOutput("9.5*10", "(9.5*10)", "95");
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}
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@Test
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public void testDivision(){
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testOutput("9.5/2", "(9.5/2)", "4.75");
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}
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@Test
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public void testNegation(){
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testOutput("-9.5", "(9.5)`", "-9.5");
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}
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@Test
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public void testFactorial(){
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testOutput("7!", "(7)!", "5040");
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}
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@Test
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public void testAbs(){
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testOutput("abs(-1)", "abs((1)`)", "1");
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testOutput("abs(1)", "abs(1)", "1");
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}
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@Test
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public void testLn(){
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testEvalError("ln(-1)", "ln((1)`)");
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testOutput("ln2", "ln(2)", "0.6931471805599453094172321214581765680755");
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}
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@Test
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public void testSqrt(){
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testOutput("sqrt0", "sqrt(0)", "0");
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testOutput("sqrt4", "sqrt(4)", "2");
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testOutput("sqrt2", "sqrt(2)", "1.4142135623730950488016887242096980785696");
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}
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@Test
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public void testExp(){
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testOutput("exp0", "exp(0)", "1");
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testOutput("exp1", "exp(1)", "2.718281828459045235360287471352662497757247");
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testOutput("exp300", "exp(300)", "1.9424263952412559365842088360176992193662086");
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testOutput("exp(-500)", "exp((500)`)", "7.1245764067412855315491573771227552469277568");
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}
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@Test
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public void testPow(){
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testOutput("0^2", "(0^2)", "0");
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testOutput("2^0", "(2^0)", "1");
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testOutput("2^1", "(2^1)", "2");
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testOutput("2^-1", "(2^(1)`)", "0.5");
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testOutput("2^50", "(2^50)", "112589990684262");
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testOutput("7^(-sqrt2*17)", "(7^((sqrt(2)*17))`)", "4.81354609155297814551845300063563");
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testEvalError("0^0", "(0^0)");
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testEvalError("(-13)^.9999", "((13)`^0.9999)");
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}
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}
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133
core/src/test/java/org/nwapw/abacus/tests/LexerTests.java
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133
core/src/test/java/org/nwapw/abacus/tests/LexerTests.java
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package org.nwapw.abacus.tests;
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import org.junit.Assert;
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import org.junit.Test;
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import org.nwapw.abacus.lexing.Lexer;
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import org.nwapw.abacus.lexing.pattern.Match;
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import java.util.List;
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public class LexerTests {
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@Test
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public void testBasicSuccess() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("abc", 0);
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lexer.register("def", 1);
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List<Match<Integer>> matchedIntegers = lexer.lexAll("abcdefabc", 0, Integer::compare);
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Assert.assertNotNull(matchedIntegers);
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Assert.assertEquals(matchedIntegers.get(0).getType(), Integer.valueOf(0));
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Assert.assertEquals(matchedIntegers.get(1).getType(), Integer.valueOf(1));
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Assert.assertEquals(matchedIntegers.get(2).getType(), Integer.valueOf(0));
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}
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@Test
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public void testBasicFailure() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("abc", 0);
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lexer.register("def", 1);
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Assert.assertNull(lexer.lexAll("abcdefabcz", 0, Integer::compare));
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}
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@Test
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public void testNoPatterns() {
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Lexer<Integer> lexer = new Lexer<>();
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Assert.assertNull(lexer.lexAll("abcdefabc", 0, Integer::compare));
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}
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@Test
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public void testEmptyMatches() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("a?", 0);
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Assert.assertNull(lexer.lexAll("", 0, Integer::compare));
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}
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@Test
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public void testOneOrMore() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("a+", 0);
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List<Match<Integer>> tokens = lexer.lexAll("aaaa", 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), 1);
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}
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@Test
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public void testZeroOrMore() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("a*", 0);
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List<Match<Integer>> tokens = lexer.lexAll("aaaa", 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), 1);
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}
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@Test
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public void testZeroOrOne() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("a?", 0);
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List<Match<Integer>> tokens = lexer.lexAll("aaaa", 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), 4);
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}
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@Test
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public void testGreedyMatching() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("a*a", 0);
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List<Match<Integer>> tokens = lexer.lexAll("aaaa", 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), 1);
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}
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@Test
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public void testAnyCharacter() {
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String testString = "abcdef";
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register(".", 0);
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List<Match<Integer>> tokens = lexer.lexAll(testString, 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), testString.length());
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for (int i = 0; i < tokens.size(); i++) {
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Assert.assertEquals(testString.substring(i, i + 1), tokens.get(i).getContent());
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}
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}
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@Test
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public void testBasicGroup() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("(abc)", 0);
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List<Match<Integer>> tokens = lexer.lexAll("abc", 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), 1);
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Assert.assertEquals(tokens.get(0).getContent(), "abc");
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}
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@Test
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public void testBasicRangeSuccess() {
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String testString = "abcdef";
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("[a-f]", 0);
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List<Match<Integer>> tokens = lexer.lexAll(testString, 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(testString.length(), tokens.size());
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for (int i = 0; i < tokens.size(); i++) {
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Assert.assertEquals(testString.substring(i, i + 1), tokens.get(i).getContent());
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}
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}
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@Test
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public void testBasicRangeFailure() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("[a-f]", 0);
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Assert.assertNull(lexer.lexAll("g", 0, Integer::compare));
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}
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@Test
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public void testGroupAndOperator() {
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Lexer<Integer> lexer = new Lexer<>();
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lexer.register("(abc)+", 0);
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List<Match<Integer>> tokens = lexer.lexAll("abcabc", 0, Integer::compare);
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Assert.assertNotNull(tokens);
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Assert.assertEquals(tokens.size(), 1);
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}
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}
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125
core/src/test/java/org/nwapw/abacus/tests/TokenizerTests.java
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125
core/src/test/java/org/nwapw/abacus/tests/TokenizerTests.java
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package org.nwapw.abacus.tests;
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import org.junit.Assert;
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import org.junit.BeforeClass;
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import org.junit.Test;
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import org.nwapw.abacus.Abacus;
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import org.nwapw.abacus.config.Configuration;
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import org.nwapw.abacus.function.Function;
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import org.nwapw.abacus.function.Operator;
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import org.nwapw.abacus.function.OperatorAssociativity;
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import org.nwapw.abacus.function.OperatorType;
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import org.nwapw.abacus.lexing.pattern.Match;
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import org.nwapw.abacus.number.NumberInterface;
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import org.nwapw.abacus.parsing.LexerTokenizer;
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import org.nwapw.abacus.plugin.Plugin;
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import org.nwapw.abacus.tree.TokenType;
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import java.util.List;
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public class TokenizerTests {
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private static Abacus abacus = new Abacus(new Configuration(0, "precise", new String[]{}));
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private static LexerTokenizer lexerTokenizer = new LexerTokenizer();
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private static Function subtractFunction = new Function() {
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@Override
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protected boolean matchesParams(NumberInterface[] params) {
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return params.length == 2;
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}
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@Override
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protected NumberInterface applyInternal(NumberInterface[] params) {
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return params[0].subtract(params[1]);
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}
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};
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private static Plugin testPlugin = new Plugin(abacus.getPluginManager()) {
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@Override
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public void onEnable() {
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registerOperator("+", new Operator(OperatorAssociativity.LEFT, OperatorType.BINARY_INFIX,
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0, subtractFunction));
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registerOperator("-", new Operator(OperatorAssociativity.LEFT, OperatorType.BINARY_INFIX,
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0, subtractFunction));
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registerFunction("subtract", subtractFunction);
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}
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@Override
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public void onDisable() {
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}
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};
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private static void assertTokensMatch(List<Match<TokenType>> tokenList, TokenType[] expectedTypes) {
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Assert.assertNotNull(tokenList);
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Assert.assertEquals(tokenList.size(), expectedTypes.length);
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for (int i = 0; i < expectedTypes.length; i++) {
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Assert.assertEquals(expectedTypes[i], tokenList.get(i).getType());
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}
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}
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@BeforeClass
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public static void prepareTests() {
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abacus.getPluginManager().addListener(lexerTokenizer);
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abacus.getPluginManager().addInstantiated(testPlugin);
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abacus.getPluginManager().load();
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}
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@Test
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public void testInteger() {
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assertTokensMatch(lexerTokenizer.tokenizeString("11"), new TokenType[]{TokenType.NUM});
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}
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@Test
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public void testLeadingZeroDecimal() {
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assertTokensMatch(lexerTokenizer.tokenizeString("0.1"), new TokenType[]{TokenType.NUM});
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}
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@Test
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public void testNonLeadingDecimal() {
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assertTokensMatch(lexerTokenizer.tokenizeString(".1"), new TokenType[]{TokenType.NUM});
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}
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@Test
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public void testSimpleChars() {
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TokenType[] types = {
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TokenType.OPEN_PARENTH,
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TokenType.WHITESPACE,
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TokenType.COMMA,
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TokenType.CLOSE_PARENTH
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};
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assertTokensMatch(lexerTokenizer.tokenizeString("( ,)"), types);
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}
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@Test
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public void testFunctionParsing() {
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TokenType[] types = {
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TokenType.FUNCTION,
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TokenType.OPEN_PARENTH,
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TokenType.NUM,
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TokenType.COMMA,
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TokenType.NUM,
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TokenType.CLOSE_PARENTH
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};
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assertTokensMatch(lexerTokenizer.tokenizeString("subtract(1,2)"), types);
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}
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@Test
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public void testOperatorParsing() {
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TokenType[] types = {
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TokenType.NUM,
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TokenType.OP,
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TokenType.NUM
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};
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assertTokensMatch(lexerTokenizer.tokenizeString("1-1"), types);
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}
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@Test
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public void testSanitizedOperators() {
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TokenType[] types = {
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TokenType.NUM,
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TokenType.OP,
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TokenType.NUM
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};
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assertTokensMatch(lexerTokenizer.tokenizeString("1+1"), types);
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}
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}
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