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https://github.com/Azgaar/Fantasy-Map-Generator.git
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refactor: generate wild provicnes start
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parent
a1e7727730
commit
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2 changed files with 129 additions and 1 deletions
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@ -2,6 +2,7 @@ import {TIME} from "config/logging";
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import {getInputNumber} from "utils/nodeUtils";
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import {getInputNumber} from "utils/nodeUtils";
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import {expandProvinces} from "./expandProvinces";
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import {expandProvinces} from "./expandProvinces";
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import {generateCoreProvinces} from "./generateCoreProvinces";
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import {generateCoreProvinces} from "./generateCoreProvinces";
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import {generateWildProvinces} from "./generateWildProvinces";
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export function generateProvinces(
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export function generateProvinces(
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states: TStates,
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states: TStates,
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@ -17,8 +18,9 @@ export function generateProvinces(
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const coreProvinces = generateCoreProvinces(states, burgs, cultures, percentage);
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const coreProvinces = generateCoreProvinces(states, burgs, cultures, percentage);
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const provinceIds = expandProvinces(percentage, coreProvinces, cells);
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const provinceIds = expandProvinces(percentage, coreProvinces, cells);
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const wildProvinces = generateWildProvinces(states, burgs, cultures, coreProvinces, provinceIds, cells); // mutates provinceIds
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const provinces = [...coreProvinces];
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const provinces = [...coreProvinces, ...wildProvinces];
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TIME && console.timeEnd("generateProvinces");
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TIME && console.timeEnd("generateProvinces");
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return {provinceIds, provinces};
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return {provinceIds, provinces};
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126
src/scripts/generation/pack/provinces/generateWildProvinces.ts
Normal file
126
src/scripts/generation/pack/provinces/generateWildProvinces.ts
Normal file
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@ -0,0 +1,126 @@
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import {group} from "d3-array";
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import {rand} from "utils/probabilityUtils";
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// add "wild" provinces if some cells don't have a province assigned
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export function generateWildProvinces(
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states: TStates,
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burgs: TBurgs,
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cultures: TCultures,
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coreProvinces: IProvince[],
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provinceIds: Uint16Array,
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cells: Pick<IPack["cells"], "i" | "state" | "burg">
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) {
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const stateProvincesMap = group(coreProvinces, (province: IProvince) => province.state);
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const noProvinceCells = Array.from(cells.i.filter(i => cells.state[i] && !provinceIds[i]));
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const wildProvinces = [] as IProvince[];
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for (const {i: stateId, name: stateName} of states) {
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const stateProvinces = stateProvincesMap.get(stateId);
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if (!stateProvinces || !stateProvinces.length) continue;
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const coreProvinceNames = stateProvinces.map(({name}) => name);
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const colonyNamePool = [stateName, ...coreProvinceNames].filter(name => name && !/new/i.test(name));
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const getColonyName = () => {
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if (colonyNamePool.length < 1) return null;
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const index = rand(colonyNamePool.length - 1);
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const spliced = colonyNamePool.splice(index, 1);
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return spliced[0] ? `New ${spliced[0]}` : null;
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};
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let noProvinceCellsInState = noProvinceCells.filter(i => cells.state[i] === stateId);
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while (noProvinceCellsInState.length) {
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// add new province
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const provinceId = coreProvinces.length + wildProvinces.length;
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const burgCell = noProvinceCellsInState.find(i => cells.burg[i]);
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const center = burgCell || noProvinceCellsInState[0];
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const burg = burgCell ? cells.burg[burgCell] : 0;
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provinceIds[center] = provinceId;
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// expand province
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const costs = [];
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costs[center] = 1;
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queue.push(center, 0);
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while (queue.length) {
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const priority = queue.peekValue();
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const next = queue.pop();
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cells.c[next].forEach(neibCellId => {
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if (cells.province[neibCellId]) return;
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const land = cells.h[neibCellId] >= 20;
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if (cells.state[neibCellId] && cells.state[neibCellId] !== s.i) return;
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const cost = land ? (cells.state[neibCellId] === s.i ? 3 : 20) : cells.t[neibCellId] ? 10 : 30;
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const totalCost = priority + cost;
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if (totalCost > max) return;
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if (!costs[neibCellId] || totalCost < costs[neibCellId]) {
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if (land && cells.state[neibCellId] === s.i) cells.province[neibCellId] = provinceId; // assign province to a cell
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costs[neibCellId] = totalCost;
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queue.push(neibCellId, totalCost);
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}
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});
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}
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// generate "wild" province name
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const cultureId = cells.culture[center];
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const f = pack.features[cells.f[center]];
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const color = brighter(getMixedColor(s.color, 0.2), 0.3);
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const provCells = noProvinceCellsInState.filter(i => cells.province[i] === provinceId);
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const singleIsle = provCells.length === f.cells && !provCells.find(i => cells.f[i] !== f.i);
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const isleGroup = !singleIsle && !provCells.find(i => pack.features[cells.f[i]].group !== "isle");
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const colony = !singleIsle && !isleGroup && P(0.5) && !isPassable(s.center, center);
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const name = (function () {
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const colonyName = colony && P(0.8) && getColonyName();
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if (colonyName) return colonyName;
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if (burgCell && P(0.5)) return burgs[burg].name;
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const base = pack.cultures[cultureId].base;
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return Names.getState(Names.getBaseShort(base), base);
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})();
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const formName = (function () {
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if (singleIsle) return "Island";
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if (isleGroup) return "Islands";
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if (colony) return "Colony";
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return rw(forms["Wild"]);
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})();
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const fullName = name + " " + formName;
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const dominion = colony ? P(0.95) : singleIsle || isleGroup ? P(0.7) : P(0.3);
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const kinship = dominion ? 0 : 0.4;
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const type = getType(center, burgs[burg]?.port);
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const coa = COA.generate(s.coa, kinship, dominion, type);
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coa.shield = COA.getPackShield(cultureId, s.i);
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provinces.push({i: provinceId, state: s.i, center, burg, name, formName, fullName, color, coa});
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s.provinces.push(provinceId);
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// check if there is a land way within the same state between two cells
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function isPassable(from, to) {
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if (cells.f[from] !== cells.f[to]) return false; // on different islands
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const queue = [from];
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const used = new Uint8Array(cells.i.length);
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const state = cells.state[from];
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while (queue.length) {
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const current = queue.pop();
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if (current === to) return true; // way is found
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cells.c[current].forEach(c => {
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if (used[c] || cells.h[c] < 20 || cells.state[c] !== state) return;
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queue.push(c);
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used[c] = 1;
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});
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}
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return false; // way is not found
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}
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// re-check
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noProvinceCellsInState = noProvinceCells.filter(i => cells.state[i] === stateId && !provinceIds[i]);
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}
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}
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}
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