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rss-nostr-lambda/node_modules/tstl/algorithm/merge.js
T

218 lines
9.3 KiB
JavaScript

"use strict";
Object.defineProperty(exports, "__esModule", { value: true });
exports.set_symmetric_difference = exports.set_difference = exports.set_intersection = exports.set_union = exports.includes = exports.inplace_merge = exports.merge = void 0;
var comparators_1 = require("../functional/comparators");
var modifiers_1 = require("./modifiers");
var factory_1 = require("../iterator/factory");
var Vector_1 = require("../container/Vector");
/* =========================================================
MERGE & SET OPERATIONS
- MERGE
- SET OPERATION
============================================================
MERGE
--------------------------------------------------------- */
/**
* Merge two sorted ranges.
*
* @param first1 Input iteartor of the first position of the 1st range.
* @param last1 Input iterator of the last position of the 1st range.
* @param first2 Input iterator of the first position of the 2nd range.
* @param last2 Input iterator of the last position of the 2nd range.
* @param output Output iterator of the first position.
* @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 Output Iterator of the last position by advancing.
*/
function merge(first1, last1, first2, last2, output, comp) {
if (comp === void 0) { comp = comparators_1.less; }
while (true) {
if (first1.equals(last1))
return (0, modifiers_1.copy)(first2, last2, output);
else if (first2.equals(last2))
return (0, modifiers_1.copy)(first1, last1, output);
if (comp(first1.value, first2.value)) {
output.value = first1.value;
first1 = first1.next();
}
else {
output.value = first2.value;
first2 = first2.next();
}
output = output.next();
}
}
exports.merge = merge;
/**
* Merge two sorted & consecutive ranges.
*
* @param first Bidirectional iterator of the first position.
* @param middle Bidirectional iterator of the initial position of the 2nd range.
* @param last Bidirectional iterator of the last position.
* @param comp A binary function predicates *x* element would be placed before *y*. When returns `true`, then *x* precedes *y*. Default is {@link less}.
*/
function inplace_merge(first, middle, last, comp) {
if (comp === void 0) { comp = comparators_1.less; }
var vector = new Vector_1.Vector();
merge(first, middle, middle, last, (0, factory_1.back_inserter)(vector), comp);
(0, modifiers_1.copy)(vector.begin(), vector.end(), first);
}
exports.inplace_merge = inplace_merge;
/* ---------------------------------------------------------
SET OPERATIONS
--------------------------------------------------------- */
/**
* Test whether two sorted ranges are in inclusion relationship.
*
* @param first1 Input iteartor of the first position of the 1st range.
* @param last1 Input iterator of the last position of the 1st range.
* @param first2 Input iterator of the first position of the 2nd range.
* @param last2 Input iterator of the last position of the 2nd range.
* @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 [first, last1) includes [first2, last2).
*/
function includes(first1, last1, first2, last2, comp) {
if (comp === void 0) { comp = comparators_1.less; }
while (!first2.equals(last2)) {
if (first1.equals(last1) || comp(first2.value, first1.value))
return false;
else if (!comp(first1.value, first2.value))
first2 = first2.next();
first1 = first1.next();
}
return true;
}
exports.includes = includes;
/**
* Combine two sorted ranges to union relationship.
*
* @param first1 Input iteartor of the first position of the 1st range.
* @param last1 Input iterator of the last position of the 1st range.
* @param first2 Input iterator of the first position of the 2nd range.
* @param last2 Input iterator of the last position of the 2nd range.
* @param output Output iterator of the first position.
* @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 Output Iterator of the last position by advancing.
*/
function set_union(first1, last1, first2, last2, output, comp) {
if (comp === void 0) { comp = comparators_1.less; }
while (true) {
if (first1.equals(last1))
return (0, modifiers_1.copy)(first2, last2, output);
else if (first2.equals(last2))
return (0, modifiers_1.copy)(first1, last1, output);
if (comp(first1.value, first2.value)) {
output.value = first1.value;
first1 = first1.next();
}
else if (comp(first2.value, first1.value)) {
output.value = first2.value;
first2 = first2.next();
}
else {
// equals
output.value = first1.value;
first1 = first1.next();
first2 = first2.next();
}
output = output.next();
}
}
exports.set_union = set_union;
/**
* Combine two sorted ranges to intersection relationship.
*
* @param first1 Input iteartor of the first position of the 1st range.
* @param last1 Input iterator of the last position of the 1st range.
* @param first2 Input iterator of the first position of the 2nd range.
* @param last2 Input iterator of the last position of the 2nd range.
* @param output Output iterator of the first position.
* @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 Output Iterator of the last position by advancing.
*/
function set_intersection(first1, last1, first2, last2, output, comp) {
if (comp === void 0) { comp = comparators_1.less; }
while (!first1.equals(last1) && !first2.equals(last2))
if (comp(first1.value, first2.value))
first1 = first1.next();
else if (comp(first2.value, first1.value))
first2 = first2.next();
else {
output.value = first1.value;
output = output.next();
first1 = first1.next();
first2 = first2.next();
}
return output;
}
exports.set_intersection = set_intersection;
/**
* Combine two sorted ranges to difference relationship.
*
* @param first1 Input iteartor of the first position of the 1st range.
* @param last1 Input iterator of the last position of the 1st range.
* @param first2 Input iterator of the first position of the 2nd range.
* @param last2 Input iterator of the last position of the 2nd range.
* @param output Output iterator of the first position.
* @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 Output Iterator of the last position by advancing.
*/
function set_difference(first1, last1, first2, last2, output, comp) {
if (comp === void 0) { comp = comparators_1.less; }
while (!first1.equals(last1) && !first2.equals(last2))
if (comp(first1.value, first2.value)) {
output.value = first1.value;
output = output.next();
first1 = first1.next();
}
else if (comp(first2.value, first1.value))
first2 = first2.next();
else {
first1 = first1.next();
first2 = first2.next();
}
return (0, modifiers_1.copy)(first1, last1, output);
}
exports.set_difference = set_difference;
/**
* Combine two sorted ranges to symmetric difference relationship.
*
* @param first1 Input iteartor of the first position of the 1st range.
* @param last1 Input iterator of the last position of the 1st range.
* @param first2 Input iterator of the first position of the 2nd range.
* @param last2 Input iterator of the last position of the 2nd range.
* @param output Output iterator of the first position.
* @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 Output Iterator of the last position by advancing.
*/
function set_symmetric_difference(first1, last1, first2, last2, output, comp) {
if (comp === void 0) { comp = comparators_1.less; }
while (true) {
if (first1.equals(last1))
return (0, modifiers_1.copy)(first2, last2, output);
else if (first2.equals(last2))
return (0, modifiers_1.copy)(first1, last1, output);
if (comp(first1.value, first2.value)) {
output.value = first1.value;
output = output.next();
first1 = first1.next();
}
else if (comp(first2.value, first1.value)) {
output.value = first2.value;
output = output.next();
first2 = first2.next();
}
else {
// equals
first1 = first1.next();
first2 = first2.next();
}
}
}
exports.set_symmetric_difference = set_symmetric_difference;
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