"use strict";
+function near(a, b, epsilon = 1e-6) {
+ return Math.abs(a - b) < epsilon;
+}
+
+function less_than_or_near(a, b, epsilon = 1e-6) {
+ return a < b || near(a, b, epsilon);
+}
+
function parse_table(as_text) {
function parse_line(line) {
return line.trim().split(' ').filter(x => x !== '').map(x => parseFloat(x));
// for gross:
// net - b = m * gross
// (net - b) / m = gross
- // and the calculate the inverse's bounds
const ms = table.map(([start, end, rate]) => 1 - rate);
- const full_brackets = [[0]].concat(table.map(([start, end, rate]) => (end - start) * rate)).slice(0, table.length);
+ const full_brackets = [0].concat(table.map(([start, end, rate]) => (end - start) * rate)).slice(0, table.length);
function sum_lower_brackets(remaining_brackets, acc = 0) {
if (remaining_brackets.length == 0) return [];
return [acc + remaining_brackets[0]].concat(sum_lower_brackets(remaining_brackets.slice(1), acc + remaining_brackets[0]));
const inverse_table = table.map(([start, end, rate], i) => {
const m = ms[i];
const b = bs[i];
- return [(start - b) / m, (end - b) / m, m, b];
+ return [m * start + b, m * end + b, m, b];
});
return function(net) {
for (const [start, end, m, b] of inverse_table) {
- if (start < net && net < end) {
+ if (less_than_or_near(start, net) && less_than_or_near(net, end)) {
return (net - b) / m;
}
}