StringArrayStorageAnalyzer.spec.ts 23 KB

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  1. import 'reflect-metadata';
  2. import { assert } from 'chai';
  3. import * as ESTree from 'estree';
  4. import { ServiceIdentifiers } from '../../../../src/container/ServiceIdentifiers';
  5. import { TInputOptions } from '../../../../src/types/options/TInputOptions';
  6. import { IInversifyContainerFacade } from '../../../../src/interfaces/container/IInversifyContainerFacade';
  7. import { IStringArrayStorageAnalyzer } from '../../../../src/interfaces/analyzers/string-array-storage-analyzer/IStringArrayStorageAnalyzer';
  8. import { IStringArrayStorageItemData } from '../../../../src/interfaces/storages/string-array-transformers/IStringArrayStorageItem';
  9. import { StringArrayEncoding } from '../../../../src/enums/node-transformers/string-array-transformers/StringArrayEncoding';
  10. import { InversifyContainerFacade } from '../../../../src/container/InversifyContainerFacade';
  11. import { NodeFactory } from '../../../../src/node/NodeFactory';
  12. import { NodeMetadata } from '../../../../src/node/NodeMetadata';
  13. const getStringArrayStorageAnalyzer = (options: TInputOptions): IStringArrayStorageAnalyzer => {
  14. const inversifyContainerFacade: IInversifyContainerFacade = new InversifyContainerFacade();
  15. inversifyContainerFacade.load('', '', options);
  16. return inversifyContainerFacade.get<IStringArrayStorageAnalyzer>(ServiceIdentifiers.IStringArrayStorageAnalyzer);
  17. };
  18. describe('StringArrayStorageAnalyzer', () => {
  19. let stringArrayStorageAnalyzer: IStringArrayStorageAnalyzer;
  20. describe('analyze', () => {
  21. describe('Base analyze of the AST tree', () => {
  22. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  23. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  24. const literalNode3: ESTree.Literal = NodeFactory.literalNode('baz');
  25. const expectedStringArrayStorageItemData1: IStringArrayStorageItemData = {
  26. encodedValue: 'foo',
  27. encoding: StringArrayEncoding.None,
  28. decodeKey: null,
  29. index: 0,
  30. value: 'foo'
  31. };
  32. const expectedStringArrayStorageItemData2: IStringArrayStorageItemData = {
  33. encodedValue: 'bar',
  34. encoding: StringArrayEncoding.None,
  35. decodeKey: null,
  36. index: 1,
  37. value: 'bar'
  38. };
  39. const expectedStringArrayStorageItemData3: undefined = undefined;
  40. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  41. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  42. let stringArrayStorageItemData3: IStringArrayStorageItemData | undefined;
  43. before(() => {
  44. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  45. stringArrayThreshold: 1
  46. });
  47. const astTree: ESTree.Program = NodeFactory.programNode([
  48. NodeFactory.expressionStatementNode(literalNode1),
  49. NodeFactory.expressionStatementNode(literalNode2)
  50. ]);
  51. stringArrayStorageAnalyzer.analyze(astTree);
  52. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  53. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  54. stringArrayStorageItemData3 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode3);
  55. });
  56. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  57. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  58. });
  59. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  60. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  61. });
  62. it('Variant #3: should return correct string array storage item data for literal node #1', () => {
  63. assert.deepEqual(stringArrayStorageItemData3, expectedStringArrayStorageItemData3);
  64. });
  65. });
  66. describe('Base analyze of the AST tree with string literal nodes with values shorter than allowed length', () => {
  67. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  68. const literalNode2: ESTree.Literal = NodeFactory.literalNode('ba');
  69. const expectedStringArrayStorageItemData1: IStringArrayStorageItemData = {
  70. encodedValue: 'foo',
  71. encoding: StringArrayEncoding.None,
  72. decodeKey: null,
  73. index: 0,
  74. value: 'foo'
  75. };
  76. const expectedStringArrayStorageItemData2: undefined = undefined;
  77. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  78. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  79. before(() => {
  80. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  81. stringArrayThreshold: 1
  82. });
  83. const astTree: ESTree.Program = NodeFactory.programNode([
  84. NodeFactory.expressionStatementNode(literalNode1),
  85. NodeFactory.expressionStatementNode(literalNode2)
  86. ]);
  87. stringArrayStorageAnalyzer.analyze(astTree);
  88. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  89. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  90. });
  91. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  92. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  93. });
  94. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  95. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  96. });
  97. });
  98. describe('Base analyze of the AST tree with number literal nodes', () => {
  99. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  100. const literalNode2: ESTree.Literal = NodeFactory.literalNode(1);
  101. const expectedStringArrayStorageItemData1: IStringArrayStorageItemData = {
  102. encodedValue: 'foo',
  103. encoding: StringArrayEncoding.None,
  104. decodeKey: null,
  105. index: 0,
  106. value: 'foo'
  107. };
  108. const expectedStringArrayStorageItemData2: undefined = undefined;
  109. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  110. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  111. before(() => {
  112. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  113. stringArrayThreshold: 1
  114. });
  115. const astTree: ESTree.Program = NodeFactory.programNode([
  116. NodeFactory.expressionStatementNode(literalNode1),
  117. NodeFactory.expressionStatementNode(literalNode2)
  118. ]);
  119. stringArrayStorageAnalyzer.analyze(astTree);
  120. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  121. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  122. });
  123. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  124. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  125. });
  126. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  127. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  128. });
  129. });
  130. describe('Analyzes of the AST tree with prohibited string literal nodes', () => {
  131. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  132. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  133. const expectedStringArrayStorageItemData1: IStringArrayStorageItemData = {
  134. encodedValue: 'foo',
  135. encoding: StringArrayEncoding.None,
  136. decodeKey: null,
  137. index: 0,
  138. value: 'foo'
  139. };
  140. const expectedStringArrayStorageItemData2: undefined = undefined;
  141. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  142. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  143. before(() => {
  144. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  145. stringArrayThreshold: 1
  146. });
  147. const astTree: ESTree.Program = NodeFactory.programNode([
  148. NodeFactory.expressionStatementNode(literalNode1),
  149. NodeFactory.variableDeclarationNode([
  150. NodeFactory.variableDeclaratorNode(
  151. NodeFactory.identifierNode('bar'),
  152. NodeFactory.objectExpressionNode([
  153. NodeFactory.propertyNode(
  154. literalNode2,
  155. NodeFactory.literalNode(1)
  156. )
  157. ])
  158. )
  159. ])
  160. ]);
  161. stringArrayStorageAnalyzer.analyze(astTree);
  162. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  163. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  164. });
  165. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  166. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  167. });
  168. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  169. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  170. });
  171. });
  172. describe('Analyzes of the AST tree with ignored string literal nodes', () => {
  173. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  174. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  175. NodeMetadata.set(literalNode2, {ignoredNode: true});
  176. const expectedStringArrayStorageItemData1: IStringArrayStorageItemData = {
  177. encodedValue: 'foo',
  178. encoding: StringArrayEncoding.None,
  179. decodeKey: null,
  180. index: 0,
  181. value: 'foo'
  182. };
  183. const expectedStringArrayStorageItemData2: undefined = undefined;
  184. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  185. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  186. before(() => {
  187. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  188. stringArrayThreshold: 1
  189. });
  190. const astTree: ESTree.Program = NodeFactory.programNode([
  191. NodeFactory.expressionStatementNode(literalNode1),
  192. NodeFactory.expressionStatementNode(literalNode2)
  193. ]);
  194. stringArrayStorageAnalyzer.analyze(astTree);
  195. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  196. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  197. });
  198. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  199. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  200. });
  201. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  202. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  203. });
  204. });
  205. describe('Analyzes of the AST tree with force transform string literal nodes', () => {
  206. describe('Variant #1: Force obfuscate string when threshold is `0`', () => {
  207. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  208. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  209. NodeMetadata.set(literalNode2, {forceTransformNode: true});
  210. const expectedStringArrayStorageItemData1: undefined = undefined;
  211. const expectedStringArrayStorageItemData2: IStringArrayStorageItemData = {
  212. encodedValue: 'bar',
  213. encoding: StringArrayEncoding.None,
  214. decodeKey: null,
  215. index: 0,
  216. value: 'bar'
  217. };
  218. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  219. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  220. before(() => {
  221. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  222. stringArrayThreshold: 0
  223. });
  224. const astTree: ESTree.Program = NodeFactory.programNode([
  225. NodeFactory.expressionStatementNode(literalNode1),
  226. NodeFactory.expressionStatementNode(literalNode2)
  227. ]);
  228. stringArrayStorageAnalyzer.analyze(astTree);
  229. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  230. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  231. });
  232. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  233. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  234. });
  235. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  236. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  237. });
  238. });
  239. describe('Variant #2: Force obfuscate string when string value shorter than allowed length', () => {
  240. const literalNode1: ESTree.Literal = NodeFactory.literalNode('a');
  241. const literalNode2: ESTree.Literal = NodeFactory.literalNode('b');
  242. NodeMetadata.set(literalNode2, {forceTransformNode: true});
  243. const expectedStringArrayStorageItemData1: undefined = undefined;
  244. const expectedStringArrayStorageItemData2: IStringArrayStorageItemData = {
  245. encodedValue: 'b',
  246. encoding: StringArrayEncoding.None,
  247. decodeKey: null,
  248. index: 0,
  249. value: 'b'
  250. };
  251. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  252. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  253. before(() => {
  254. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  255. stringArrayThreshold: 1
  256. });
  257. const astTree: ESTree.Program = NodeFactory.programNode([
  258. NodeFactory.expressionStatementNode(literalNode1),
  259. NodeFactory.expressionStatementNode(literalNode2)
  260. ]);
  261. stringArrayStorageAnalyzer.analyze(astTree);
  262. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  263. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  264. });
  265. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  266. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  267. });
  268. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  269. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  270. });
  271. });
  272. });
  273. /**
  274. * This test covers rare case when with random value inside `shouldAddValueToStringArray` was `0`
  275. * that trigger positive check for method.
  276. *
  277. * As fix i added check of `this.options.stringArray` option value
  278. */
  279. describe('Analyzes of the AST tree with disabled string array', () => {
  280. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  281. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  282. const expectedStringArrayStorageItemData1: undefined = undefined;
  283. const expectedStringArrayStorageItemData2: undefined = undefined;
  284. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  285. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  286. before(() => {
  287. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  288. stringArray: false,
  289. stringArrayThreshold: 1
  290. });
  291. (<any>stringArrayStorageAnalyzer).options.stringArrayThreshold = 1;
  292. const astTree: ESTree.Program = NodeFactory.programNode([
  293. NodeFactory.expressionStatementNode(literalNode1),
  294. NodeFactory.expressionStatementNode(literalNode2)
  295. ]);
  296. stringArrayStorageAnalyzer.analyze(astTree);
  297. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  298. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  299. });
  300. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  301. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  302. });
  303. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  304. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  305. });
  306. });
  307. describe('Analyzes of the AST tree with string array threshold', () => {
  308. describe('Threshold value: 0', () => {
  309. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  310. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  311. const expectedStringArrayStorageItemData1: undefined = undefined;
  312. const expectedStringArrayStorageItemData2: undefined = undefined;
  313. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  314. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  315. before(() => {
  316. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  317. stringArrayThreshold: 0
  318. });
  319. const astTree: ESTree.Program = NodeFactory.programNode([
  320. NodeFactory.expressionStatementNode(literalNode1),
  321. NodeFactory.expressionStatementNode(literalNode2)
  322. ]);
  323. stringArrayStorageAnalyzer.analyze(astTree);
  324. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  325. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  326. });
  327. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  328. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  329. });
  330. it('Variant #2: should return correct string array storage item data for literal node #1', () => {
  331. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  332. });
  333. });
  334. describe('Threshold value: 0.5', () => {
  335. const literalNode1: ESTree.Literal = NodeFactory.literalNode('foo');
  336. const literalNode2: ESTree.Literal = NodeFactory.literalNode('bar');
  337. const expectedStringArrayStorageItemData1: undefined = undefined;
  338. const expectedStringArrayStorageItemData2: IStringArrayStorageItemData = {
  339. encodedValue: 'bar',
  340. encoding: StringArrayEncoding.None,
  341. decodeKey: null,
  342. index: 0,
  343. value: 'bar'
  344. };
  345. let stringArrayStorageItemData1: IStringArrayStorageItemData | undefined;
  346. let stringArrayStorageItemData2: IStringArrayStorageItemData | undefined;
  347. before(() => {
  348. stringArrayStorageAnalyzer = getStringArrayStorageAnalyzer({
  349. stringArrayThreshold: 0.5,
  350. seed: 1
  351. });
  352. const astTree: ESTree.Program = NodeFactory.programNode([
  353. NodeFactory.expressionStatementNode(literalNode1),
  354. NodeFactory.expressionStatementNode(literalNode2)
  355. ]);
  356. stringArrayStorageAnalyzer.analyze(astTree);
  357. stringArrayStorageItemData1 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode1);
  358. stringArrayStorageItemData2 = stringArrayStorageAnalyzer.getItemDataForLiteralNode(literalNode2);
  359. });
  360. it('Variant #1: should return correct string array storage item data for literal node #1', () => {
  361. assert.deepEqual(stringArrayStorageItemData1, expectedStringArrayStorageItemData1);
  362. });
  363. it('Variant #2: should return correct string array storage item data for literal node #2', () => {
  364. assert.deepEqual(stringArrayStorageItemData2, expectedStringArrayStorageItemData2);
  365. });
  366. });
  367. });
  368. });
  369. });