expression.js 13 KB

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  1. /**
  2. * VL Workflow Engine — Expression Evaluator
  3. * Ported from Go: workflow/expression.go
  4. * Spec: v3.15
  5. *
  6. * Syntax:
  7. * =expr → evaluate expression
  8. * ==literal → escape: return "=literal"
  9. * plain string → literal
  10. * $var → variable reference
  11. * $var.field → property access
  12. * $var[0] → array index
  13. * .length → array/string length
  14. * SYSVAR.name → system variable
  15. * _local → local variable
  16. */
  17. class ExpressionEvaluator {
  18. constructor(ctx) {
  19. this.ctx = ctx;
  20. }
  21. /**
  22. * Evaluate a value — if string starting with "=", evaluate as expression.
  23. * Non-strings returned as-is. "==X" returns "=X".
  24. */
  25. evaluateValue(value) {
  26. if (typeof value !== 'string') return value;
  27. if (!value.startsWith('=')) return value;
  28. if (value.startsWith('==')) return value.slice(1); // escape
  29. return this.evaluate(value.slice(1));
  30. }
  31. /**
  32. * Evaluate an expression string (without "=" prefix).
  33. */
  34. evaluate(expr) {
  35. expr = expr.trim();
  36. if (!expr) return null;
  37. // Ternary: a ? b : c
  38. const ternary = this._findTernary(expr);
  39. if (ternary) {
  40. const cond = this.evaluate(ternary.cond);
  41. return toBool(cond) ? this.evaluate(ternary.ifTrue) : this.evaluate(ternary.ifFalse);
  42. }
  43. // Logical OR: a || b
  44. let idx = this._findOperator(expr, '||');
  45. if (idx >= 0) {
  46. const left = this.evaluate(expr.slice(0, idx));
  47. if (toBool(left)) return left;
  48. return this.evaluate(expr.slice(idx + 2));
  49. }
  50. // Logical AND: a && b
  51. idx = this._findOperator(expr, '&&');
  52. if (idx >= 0) {
  53. const left = this.evaluate(expr.slice(0, idx));
  54. if (!toBool(left)) return left;
  55. return this.evaluate(expr.slice(idx + 2));
  56. }
  57. // Comparison: ===, !==, ==, !=, >=, <=, >, <
  58. // NOTE: === and !== must come before == and != to avoid partial matching
  59. for (const op of ['===', '!==', '==', '!=', '>=', '<=', '>', '<']) {
  60. idx = this._findOperator(expr, op);
  61. if (idx >= 0) {
  62. const left = this.evaluate(expr.slice(0, idx));
  63. const right = this.evaluate(expr.slice(idx + op.length));
  64. return this._compare(left, right, op);
  65. }
  66. }
  67. // Arithmetic: +, -
  68. for (const op of ['+', '-']) {
  69. idx = this._findOperatorReverse(expr, op);
  70. if (idx > 0) {
  71. const left = this.evaluate(expr.slice(0, idx));
  72. const right = this.evaluate(expr.slice(idx + 1));
  73. if (op === '+' && (typeof left === 'string' || typeof right === 'string')) {
  74. return String(left ?? '') + String(right ?? '');
  75. }
  76. return op === '+' ? toFloat(left) + toFloat(right) : toFloat(left) - toFloat(right);
  77. }
  78. }
  79. // Multiply, divide: *, /
  80. for (const op of ['*', '/']) {
  81. idx = this._findOperatorReverse(expr, op);
  82. if (idx > 0) {
  83. const left = this.evaluate(expr.slice(0, idx));
  84. const right = this.evaluate(expr.slice(idx + 1));
  85. return op === '*' ? toFloat(left) * toFloat(right) : toFloat(left) / toFloat(right);
  86. }
  87. }
  88. // Unary NOT: !expr
  89. if (expr.startsWith('!')) {
  90. return !toBool(this.evaluate(expr.slice(1)));
  91. }
  92. // Parenthesized: (expr)
  93. if (expr.startsWith('(') && this._findMatchingParen(expr, 0) === expr.length - 1) {
  94. return this.evaluate(expr.slice(1, -1));
  95. }
  96. // Literals
  97. if (expr === 'true') return true;
  98. if (expr === 'false') return false;
  99. if (expr === 'null' || expr === 'nil') return null;
  100. // Number
  101. if (/^-?\d+(\.\d+)?$/.test(expr)) {
  102. return expr.includes('.') ? parseFloat(expr) : parseInt(expr, 10);
  103. }
  104. // String literal: "..." or '...'
  105. if ((expr.startsWith('"') && expr.endsWith('"')) || (expr.startsWith("'") && expr.endsWith("'"))) {
  106. return expr.slice(1, -1);
  107. }
  108. // JSON array: [...]
  109. if (expr.startsWith('[') && expr.endsWith(']')) {
  110. try { return JSON.parse(expr); } catch { /* fall through to variable */ }
  111. }
  112. // JSON object: {...}
  113. if (expr.startsWith('{') && expr.endsWith('}')) {
  114. try { return JSON.parse(expr); } catch { /* fall through */ }
  115. }
  116. // Variable reference with path navigation
  117. return this._resolveVariable(expr);
  118. }
  119. /**
  120. * Recursively evaluate all expressions inside maps and arrays.
  121. */
  122. evaluateDeep(value) {
  123. if (value === null || value === undefined) return value;
  124. if (typeof value === 'string') return this.evaluateValue(value);
  125. if (Array.isArray(value)) return value.map(v => this.evaluateDeep(v));
  126. if (typeof value === 'object') {
  127. const result = {};
  128. for (const [k, v] of Object.entries(value)) {
  129. result[k] = this.evaluateDeep(v);
  130. }
  131. return result;
  132. }
  133. return value;
  134. }
  135. /**
  136. * Set a variable by path: "$var.field[0].nested"
  137. */
  138. setVariable(path, value) {
  139. path = path.trim();
  140. // Simple case: no path navigation
  141. if (!path.includes('.') && !path.includes('[')) {
  142. value = this._applyTypeConversion(path, value);
  143. this.ctx.setVariable(path, value);
  144. return;
  145. }
  146. // Complex path: navigate and set
  147. const segments = this._parsePath(path);
  148. if (segments.length === 0) throw new Error(`Invalid path: ${path}`);
  149. const rootName = segments[0];
  150. let root = this.ctx.getVariable(rootName);
  151. if (segments.length === 1) {
  152. value = this._applyTypeConversion(rootName, value);
  153. this.ctx.setVariable(rootName, value);
  154. return;
  155. }
  156. // Auto-create root if null
  157. if (root == null) {
  158. root = typeof segments[1] === 'number' ? [] : {};
  159. this.ctx.setVariable(rootName, root);
  160. }
  161. let current = root;
  162. for (let i = 1; i < segments.length - 1; i++) {
  163. const seg = segments[i];
  164. const nextSeg = segments[i + 1];
  165. if (typeof seg === 'number') {
  166. // Array index — auto-grow
  167. while (Array.isArray(current) && current.length <= seg) current.push(null);
  168. if (current[seg] == null) current[seg] = typeof nextSeg === 'number' ? [] : {};
  169. current = current[seg];
  170. } else {
  171. if (current[seg] == null) current[seg] = typeof nextSeg === 'number' ? [] : {};
  172. current = current[seg];
  173. }
  174. }
  175. const lastSeg = segments[segments.length - 1];
  176. if (typeof lastSeg === 'number') {
  177. while (Array.isArray(current) && current.length <= lastSeg) current.push(null);
  178. current[lastSeg] = value;
  179. } else {
  180. current[lastSeg] = value;
  181. }
  182. }
  183. // ─── Internal ──────────────────────────────────────────────
  184. _resolveVariable(expr) {
  185. const segments = this._parsePath(expr);
  186. if (segments.length === 0) return undefined;
  187. // SYSVAR.xxx: reconstruct the full key for getVariable
  188. let startIdx = 1;
  189. let value;
  190. if (segments[0] === 'SYSVAR' && segments.length >= 2) {
  191. value = this.ctx.getVariable('SYSVAR.' + segments[1]);
  192. startIdx = 2;
  193. } else {
  194. value = this.ctx.getVariable(segments[0]);
  195. }
  196. for (let i = startIdx; i < segments.length; i++) {
  197. if (value == null) return undefined;
  198. const seg = segments[i];
  199. if (seg === 'length') {
  200. if (Array.isArray(value)) return value.length;
  201. if (typeof value === 'string') return value.length;
  202. }
  203. if (typeof seg === 'number') {
  204. value = Array.isArray(value) ? value[seg] : (value[seg] ?? undefined);
  205. } else {
  206. value = value[seg] ?? undefined;
  207. }
  208. }
  209. return value;
  210. }
  211. _parsePath(path) {
  212. const segments = [];
  213. let i = 0;
  214. let current = '';
  215. while (i < path.length) {
  216. const ch = path[i];
  217. if (ch === '.') {
  218. if (current) segments.push(current);
  219. current = '';
  220. i++;
  221. } else if (ch === '[') {
  222. if (current) segments.push(current);
  223. current = '';
  224. const end = path.indexOf(']', i);
  225. if (end < 0) throw new Error(`Unmatched [ in path: ${path}`);
  226. const inside = path.slice(i + 1, end).trim();
  227. // Number index or expression
  228. if (/^\d+$/.test(inside)) {
  229. segments.push(parseInt(inside, 10));
  230. } else if ((inside.startsWith('"') && inside.endsWith('"')) || (inside.startsWith("'") && inside.endsWith("'"))) {
  231. segments.push(inside.slice(1, -1));
  232. } else {
  233. // Evaluate expression as index
  234. const idx = this.evaluate(inside);
  235. segments.push(typeof idx === 'number' ? idx : String(idx));
  236. }
  237. i = end + 1;
  238. } else {
  239. current += ch;
  240. i++;
  241. }
  242. }
  243. if (current) segments.push(current);
  244. return segments;
  245. }
  246. _applyTypeConversion(varName, value) {
  247. const types = this.ctx.varTypes || {};
  248. const type = types[varName];
  249. if (!type || value == null) return value;
  250. if (type === 'OBJECT' && typeof value === 'string') {
  251. try { return JSON.parse(value); } catch { return value; }
  252. }
  253. if (type.startsWith('[') && typeof value === 'string') {
  254. try { return JSON.parse(value); } catch { return value; }
  255. }
  256. if (type === 'STRING' && typeof value !== 'string') {
  257. return typeof value === 'object' ? JSON.stringify(value) : String(value);
  258. }
  259. return value;
  260. }
  261. _findTernary(expr) {
  262. let depth = 0;
  263. for (let i = 0; i < expr.length; i++) {
  264. const ch = expr[i];
  265. if (ch === '(' || ch === '[' || ch === '{') depth++;
  266. else if (ch === ')' || ch === ']' || ch === '}') depth--;
  267. else if (ch === '"' || ch === "'") { i = this._skipString(expr, i); continue; }
  268. else if (ch === '?' && depth === 0) {
  269. // Find matching :
  270. let d2 = 0;
  271. for (let j = i + 1; j < expr.length; j++) {
  272. const c2 = expr[j];
  273. if (c2 === '(' || c2 === '[' || c2 === '{') d2++;
  274. else if (c2 === ')' || c2 === ']' || c2 === '}') d2--;
  275. else if (c2 === '"' || c2 === "'") { j = this._skipString(expr, j); continue; }
  276. else if (c2 === ':' && d2 === 0) {
  277. return { cond: expr.slice(0, i), ifTrue: expr.slice(i + 1, j), ifFalse: expr.slice(j + 1) };
  278. }
  279. }
  280. }
  281. }
  282. return null;
  283. }
  284. _findOperator(expr, op) {
  285. let depth = 0;
  286. for (let i = 0; i <= expr.length - op.length; i++) {
  287. const ch = expr[i];
  288. if (ch === '(' || ch === '[' || ch === '{') depth++;
  289. else if (ch === ')' || ch === ']' || ch === '}') depth--;
  290. else if (ch === '"' || ch === "'") { i = this._skipString(expr, i); continue; }
  291. else if (depth === 0 && expr.slice(i, i + op.length) === op) {
  292. // Disambiguate: don't match partial operators
  293. if (op === '==' && i > 0 && '!><'.includes(expr[i - 1])) continue;
  294. if (op === '===' && i > 0 && '!'.includes(expr[i - 1])) continue;
  295. // Don't match == when === exists at this position
  296. if (op === '==' && i + 2 < expr.length && expr[i + 2] === '=') continue;
  297. if (op === '!=' && i + 2 < expr.length && expr[i + 2] === '=') continue;
  298. return i;
  299. }
  300. }
  301. return -1;
  302. }
  303. _findOperatorReverse(expr, op) {
  304. let depth = 0;
  305. // Pre-scan: build a set of positions inside string literals so we can skip them
  306. const inString = new Uint8Array(expr.length);
  307. for (let s = 0; s < expr.length; s++) {
  308. if (expr[s] === '"' || expr[s] === "'") {
  309. const end = this._skipString(expr, s);
  310. for (let k = s; k <= end; k++) inString[k] = 1;
  311. s = end;
  312. }
  313. }
  314. for (let i = expr.length - 1; i >= 1; i--) {
  315. if (inString[i]) continue;
  316. const ch = expr[i];
  317. if (ch === ')' || ch === ']' || ch === '}') depth++;
  318. else if (ch === '(' || ch === '[' || ch === '{') depth--;
  319. else if (depth === 0 && expr[i] === op) {
  320. // For - : skip if previous char is an operator (unary minus)
  321. if (op === '-') {
  322. const prev = expr[i - 1];
  323. if ('(+-*/=<>!&|,'.includes(prev)) continue;
  324. }
  325. return i;
  326. }
  327. }
  328. return -1;
  329. }
  330. _skipString(expr, start) {
  331. const quote = expr[start];
  332. for (let i = start + 1; i < expr.length; i++) {
  333. if (expr[i] === '\\') { i++; continue; }
  334. if (expr[i] === quote) return i;
  335. }
  336. return expr.length - 1;
  337. }
  338. _findMatchingParen(expr, start) {
  339. let depth = 0;
  340. for (let i = start; i < expr.length; i++) {
  341. if (expr[i] === '(') depth++;
  342. else if (expr[i] === ')') { depth--; if (depth === 0) return i; }
  343. else if (expr[i] === '"' || expr[i] === "'") i = this._skipString(expr, i);
  344. }
  345. return -1;
  346. }
  347. _compare(left, right, op) {
  348. switch (op) {
  349. case '===': return left === right;
  350. case '!==': return left !== right;
  351. case '==': return left == right; // eslint-disable-line eqeqeq
  352. case '!=': return left != right; // eslint-disable-line eqeqeq
  353. case '>=': return toFloat(left) >= toFloat(right);
  354. case '<=': return toFloat(left) <= toFloat(right);
  355. case '>': return toFloat(left) > toFloat(right);
  356. case '<': return toFloat(left) < toFloat(right);
  357. }
  358. return false;
  359. }
  360. }
  361. // ─── Helpers ─────────────────────────────────────────────────
  362. function toBool(val) {
  363. if (val == null) return false;
  364. if (typeof val === 'boolean') return val;
  365. if (typeof val === 'number') return val !== 0;
  366. if (typeof val === 'string') return val !== '';
  367. return true;
  368. }
  369. function toFloat(val) {
  370. if (typeof val === 'number') return val;
  371. if (typeof val === 'string') { const n = Number(val); return isNaN(n) ? 0 : n; }
  372. if (typeof val === 'boolean') return val ? 1 : 0;
  373. return 0;
  374. }
  375. module.exports = { ExpressionEvaluator, toBool, toFloat };