"use strict"; var __createBinding = (this && this.__createBinding) || (Object.create ? (function(o, m, k, k2) { if (k2 === undefined) k2 = k; var desc = Object.getOwnPropertyDescriptor(m, k); if (!desc || ("get" in desc ? !m.__esModule : desc.writable || desc.configurable)) { desc = { enumerable: true, get: function() { return m[k]; } }; } Object.defineProperty(o, k2, desc); }) : (function(o, m, k, k2) { if (k2 === undefined) k2 = k; o[k2] = m[k]; })); var __setModuleDefault = (this && this.__setModuleDefault) || (Object.create ? (function(o, v) { Object.defineProperty(o, "default", { enumerable: true, value: v }); }) : function(o, v) { o["default"] = v; }); var __importStar = (this && this.__importStar) || function (mod) { if (mod && mod.__esModule) return mod; var result = {}; if (mod != null) for (var k in mod) if (k !== "default" && Object.prototype.hasOwnProperty.call(mod, k)) __createBinding(result, mod, k); __setModuleDefault(result, mod); return result; }; Object.defineProperty(exports, "__esModule", { value: true }); exports.binary_search = exports.equal_range = exports.upper_bound = exports.lower_bound = void 0; //================================================================ /** * @packageDocumentation * @module std.ranges */ //================================================================ var base = __importStar(require("../../algorithm/binary_search")); var factory_1 = require("../../iterator/factory"); var comparators_1 = require("../../functional/comparators"); /* ========================================================= BINARY SEARCH ========================================================= */ /** * Get iterator to lower bound. * * @param range An iterable ranged container. * @param val Value to search for. * @param comp A binary function predicates *x* element would be placed before *y*. When returns `true`, then *x* precedes *y*. Default is {@link less}. * * @return Iterator to the first element equal or after the val. */ function lower_bound(range, val, comp) { if (comp === void 0) { comp = comparators_1.less; } return base.lower_bound((0, factory_1.begin)(range), (0, factory_1.end)(range), val, comp); } exports.lower_bound = lower_bound; /** * Get iterator to upper bound. * * @param range An iterable ranged container. * @param val Value to search for. * @param comp A binary function predicates *x* element would be placed before *y*. When returns `true`, then *x* precedes *y*. Default is {@link less}. * * @return Iterator to the first element after the key. */ function upper_bound(range, val, comp) { if (comp === void 0) { comp = comparators_1.less; } return base.upper_bound((0, factory_1.begin)(range), (0, factory_1.end)(range), val, comp); } exports.upper_bound = upper_bound; /** * Get range of equal elements. * * @param range An iterable ranged container. * @param val Value to search for. * @param comp A binary function predicates *x* element would be placed before *y*. When returns `true`, then *x* precedes *y*. Default is {@link less}. * * @return Pair of {@link lower_bound} and {@link upper_bound}. */ function equal_range(range, val, comp) { if (comp === void 0) { comp = comparators_1.less; } return base.equal_range((0, factory_1.begin)(range), (0, factory_1.end)(range), val, comp); } exports.equal_range = equal_range; /** * Test whether a value exists in sorted range. * * @param range An iterable ranged container. * @param val Value to search for. * @param comp A binary function predicates *x* element would be placed before *y*. When returns `true`, then *x* precedes *y*. Default is {@link less}. * * @return Whether the value exists or not. */ function binary_search(range, val, comp) { if (comp === void 0) { comp = comparators_1.less; } return base.binary_search((0, factory_1.begin)(range), (0, factory_1.end)(range), val, comp); } exports.binary_search = binary_search; //# sourceMappingURL=binary_search.js.map