Next.js website for Rocky Mountain Vending company featuring: - Product catalog with Stripe integration - Service areas and parts pages - Admin dashboard with Clerk authentication - SEO optimized pages with JSON-LD structured data Co-authored-by: Cursor <cursoragent@cursor.com>
123 lines
4.2 KiB
Text
123 lines
4.2 KiB
Text
"use strict";
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Object.defineProperty(exports, "__esModule", { value: true });
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exports.ToRawFixed = ToRawFixed;
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var tslib_1 = require("tslib");
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var decimal_js_1 = tslib_1.__importDefault(require("decimal.js"));
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var utils_1 = require("../utils");
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var ApplyUnsignedRoundingMode_1 = require("./ApplyUnsignedRoundingMode");
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//IMPL: Setting Decimal configuration
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decimal_js_1.default.set({
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toExpPos: 100,
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});
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//IMPL: Helper function to calculate raw fixed value
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function ToRawFixedFn(n, f) {
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return n.times(decimal_js_1.default.pow(10, -f));
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}
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//IMPL: Helper function to find n1 and r1
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function findN1R1(x, f, roundingIncrement) {
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var nx = x.times(decimal_js_1.default.pow(10, f)).floor();
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var n1 = nx.div(roundingIncrement).floor().times(roundingIncrement);
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var r1 = ToRawFixedFn(n1, f);
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return {
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n1: n1,
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r1: r1,
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};
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}
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//IMPL: Helper function to find n2 and r2
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function findN2R2(x, f, roundingIncrement) {
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var nx = x.times(decimal_js_1.default.pow(10, f)).ceil();
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var n2 = nx.div(roundingIncrement).ceil().times(roundingIncrement);
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var r2 = ToRawFixedFn(n2, f);
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return {
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n2: n2,
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r2: r2,
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};
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}
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/**
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* https://tc39.es/ecma402/#sec-torawfixed
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* @param x a finite non-negative Number or BigInt
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* @param minFraction an integer between 0 and 20
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* @param maxFraction an integer between 0 and 20
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*/
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function ToRawFixed(x, minFraction, maxFraction, roundingIncrement, unsignedRoundingMode) {
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// 1. Let f be maxFraction.
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var f = maxFraction;
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// 2. Let n1 and r1 be the results of performing the maximized rounding of x to f fraction digits.
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var _a = findN1R1(x, f, roundingIncrement), n1 = _a.n1, r1 = _a.r1;
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// 3. Let n2 and r2 be the results of performing the minimized rounding of x to f fraction digits.
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var _b = findN2R2(x, f, roundingIncrement), n2 = _b.n2, r2 = _b.r2;
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// 4. Let r be ApplyUnsignedRoundingMode(x, r1, r2, unsignedRoundingMode).
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var r = (0, ApplyUnsignedRoundingMode_1.ApplyUnsignedRoundingMode)(x, r1, r2, unsignedRoundingMode);
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var n, xFinal;
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var m;
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// 5. If r is equal to r1, then
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if (r.eq(r1)) {
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// a. Let n be n1.
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n = n1;
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// b. Let xFinal be r1.
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xFinal = r1;
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}
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else {
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// 6. Else,
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// a. Let n be n2.
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n = n2;
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// b. Let xFinal be r2.
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xFinal = r2;
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}
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// 7. If n is 0, let m be "0".
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if (n.isZero()) {
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m = '0';
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}
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else {
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// 8. Else, let m be the String representation of n.
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m = n.toString();
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}
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var int;
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// 9. If f is not 0, then
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if (f !== 0) {
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// a. Let k be the length of m.
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var k = m.length;
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// b. If k < f, then
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if (k <= f) {
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// i. Let z be the String value consisting of f + 1 - k occurrences of the character "0".
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var z = (0, utils_1.repeat)('0', f - k + 1);
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// ii. Set m to the string-concatenation of z and m.
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m = z + m;
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// iii. Set k to f + 1.
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k = f + 1;
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}
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// c. Let a be the substring of m from 0 to k - f.
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var a = m.slice(0, k - f);
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// d. Let b be the substring of m from k - f to k.
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var b = m.slice(m.length - f);
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// e. Set m to the string-concatenation of a, ".", and b.
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m = a + '.' + b;
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// f. Let int be the length of a.
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int = a.length;
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}
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else {
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// 10. Else, let int be the length of m.
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int = m.length;
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}
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// 11. Let cut be maxFraction - minFraction.
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var cut = maxFraction - minFraction;
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// 12. Repeat, while cut > 0 and the last character of m is "0",
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while (cut > 0 && m[m.length - 1] === '0') {
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// a. Remove the last character from m.
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m = m.slice(0, m.length - 1);
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// b. Decrease cut by 1.
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cut--;
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}
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// 13. If the last character of m is ".", then
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if (m[m.length - 1] === '\u002e') {
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// a. Remove the last character from m.
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m = m.slice(0, m.length - 1);
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}
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// 14. Return the Record { [[FormattedString]]: m, [[RoundedNumber]]: xFinal, [[IntegerDigitsCount]]: int, [[RoundingMagnitude]]: -f }.
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return {
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formattedString: m,
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roundedNumber: xFinal,
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integerDigitsCount: int,
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roundingMagnitude: -f,
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};
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}
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