NumberNumericalExpressionAnalyzer.spec.ts 8.4 KB

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  1. import 'reflect-metadata';
  2. import { assert } from 'chai';
  3. import { ServiceIdentifiers } from '../../../../src/container/ServiceIdentifiers';
  4. import { TNumberNumericalExpressionData } from '../../../../src/types/analyzers/number-numerical-expression-analyzer/TNumberNumericalExpressionData';
  5. import { IInversifyContainerFacade } from '../../../../src/interfaces/container/IInversifyContainerFacade';
  6. import { INumberNumericalExpressionAnalyzer } from '../../../../src/interfaces/analyzers/number-numerical-expression-analyzer/INumberNumericalExpressionAnalyzer';
  7. import { InversifyContainerFacade } from '../../../../src/container/InversifyContainerFacade';
  8. import { NumberNumericalExpressionAnalyzer } from '../../../../src/analyzers/number-numerical-expression-analyzer/NumberNumericalExpressionAnalyzer';
  9. /**
  10. * @param {TNumberNumericalExpressionData} data
  11. * @returns {string}
  12. */
  13. const numberNumericalExpressionDataToString = (data: TNumberNumericalExpressionData) =>
  14. data
  15. .map((part: number | number[]) => Array.isArray(part) ? part.join('*') : part)
  16. .join('+')
  17. .replace(/\+-/g, '-');
  18. describe('NumberNumericalExpressionAnalyzer', function() {
  19. let numberNumericalExpressionAnalyzer: INumberNumericalExpressionAnalyzer;
  20. this.timeout(10000);
  21. before(() => {
  22. const inversifyContainerFacade: IInversifyContainerFacade = new InversifyContainerFacade();
  23. inversifyContainerFacade.load('', '', {});
  24. numberNumericalExpressionAnalyzer = inversifyContainerFacade
  25. .get<INumberNumericalExpressionAnalyzer>(ServiceIdentifiers.INumberNumericalExpressionAnalyzer);
  26. });
  27. describe('analyze', () => {
  28. let evaluatedResult: number;
  29. describe('Positive numbers', () => {
  30. describe('Variant #1: positive number', () => {
  31. const number: number = 1234;
  32. before(() => {
  33. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  34. numberNumericalExpressionAnalyzer.analyze(
  35. number,
  36. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  37. );
  38. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  39. });
  40. it('should return correct number numerical expression data', () => {
  41. assert.equal(number, evaluatedResult);
  42. });
  43. });
  44. describe('Variant #2: positive zero number', () => {
  45. const number: number = 0;
  46. before(() => {
  47. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  48. numberNumericalExpressionAnalyzer.analyze(
  49. number,
  50. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  51. );
  52. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  53. });
  54. it('should return correct number numerical expression data', () => {
  55. assert.equal(number, evaluatedResult);
  56. });
  57. });
  58. describe('Variant #3: positive big number', () => {
  59. const number: number = Number.MAX_SAFE_INTEGER;
  60. before(() => {
  61. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  62. numberNumericalExpressionAnalyzer.analyze(
  63. number,
  64. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  65. );
  66. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  67. });
  68. it('should return correct number numerical expression data', () => {
  69. assert.equal(number, evaluatedResult);
  70. });
  71. });
  72. describe('Variant #4: positive unsafe big number', () => {
  73. const number: number = Number.MAX_SAFE_INTEGER + 1;
  74. before(() => {
  75. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  76. numberNumericalExpressionAnalyzer.analyze(
  77. number,
  78. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  79. );
  80. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  81. });
  82. it('should return correct number numerical expression data', () => {
  83. assert.equal(number, evaluatedResult);
  84. });
  85. });
  86. });
  87. describe('Negative numbers', () => {
  88. describe('Variant #1: negative number', () => {
  89. const number: number = -1234;
  90. before(() => {
  91. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  92. numberNumericalExpressionAnalyzer.analyze(
  93. number,
  94. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  95. );
  96. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  97. });
  98. it('should return correct number numerical expression data', () => {
  99. assert.equal(number, evaluatedResult);
  100. });
  101. });
  102. describe('Variant #2: negative zero number', () => {
  103. const number: number = -0;
  104. before(() => {
  105. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  106. numberNumericalExpressionAnalyzer.analyze(
  107. number,
  108. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  109. );
  110. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  111. });
  112. it('should return correct number numerical expression data', () => {
  113. assert.equal(number, evaluatedResult);
  114. });
  115. });
  116. describe('Variant #3: negative big number', () => {
  117. const number: number = Number.MIN_SAFE_INTEGER;
  118. before(() => {
  119. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  120. numberNumericalExpressionAnalyzer.analyze(
  121. number,
  122. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  123. );
  124. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  125. });
  126. it('should return correct number numerical expression data', () => {
  127. assert.equal(number, evaluatedResult);
  128. });
  129. });
  130. describe('Variant #4: negative unsafe number', () => {
  131. const number: number = Number.MIN_SAFE_INTEGER - 1;
  132. before(() => {
  133. const numberNumericalExpressionData: TNumberNumericalExpressionData =
  134. numberNumericalExpressionAnalyzer.analyze(
  135. number,
  136. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  137. );
  138. evaluatedResult = eval(numberNumericalExpressionDataToString(numberNumericalExpressionData));
  139. });
  140. it('should return correct number numerical expression data', () => {
  141. assert.equal(number, evaluatedResult);
  142. });
  143. });
  144. });
  145. describe('NaN', () => {
  146. const number: number = NaN;
  147. let testFunc: () => void;
  148. before(() => {
  149. testFunc = () => numberNumericalExpressionAnalyzer.analyze(
  150. number,
  151. NumberNumericalExpressionAnalyzer.defaultAdditionalPartsCount
  152. );
  153. });
  154. it('should throw error', () => {
  155. assert.throw(testFunc, 'Given value is NaN');
  156. });
  157. });
  158. });
  159. });