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station-master/test/mainline-cards.test.ts
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/**
* Mainline modifiers and Maneuver cards (implications.md §7).
*
* The 14 cards left after the Enhancements. These are NOT multiplayer-only: Brakeman, Airbrakes,
* Helpers and Realignment all change your own crossing times, and Red Flags prevents a rear-ender,
* which happens in solitaire too.
*
* Poling is deliberately absent — the recovered sheet records its effect as "TBD in the source", so
* there is nothing to implement and nothing to test.
*/
import { describe, it } from 'node:test';
import assert from 'node:assert/strict';
import { advance } from '../src/engine/advance.ts';
import { applyIntent, areaOf, check } from '../src/engine/apply.ts';
import {
MAINLINE_MODIFIER_CARDS,
MANEUVER_CARDS,
REALIGNMENTS,
crossingStages,
mainlineModifierRule,
} from '../src/engine/content.ts';
import { createGame } from '../src/engine/setup.ts';
import type { GameConfig, GameState, GridCoord, TrackCard } from '../src/engine/state.ts';
import { coordKey } from '../src/engine/state.ts';
const config: GameConfig = {
mode: 'solitaire',
victory: 'highestAfterDays',
length: 'standard',
optionalRules: { reducedVisibility: false, sisterTrains: false, employeeRotation: false, emergencyToolbox: false },
};
const game = (seed = 5): GameState => createGame({ id: 'g', seed, config, playerNames: ['p'] });
const at = (row: number, col: number): GridCoord => ({ row, col });
/** Puts a card of `kind`/`key` in hand and returns its id. */
function hand(s: GameState, kind: string, key: string): string {
for (const [id, card] of s.cards) {
const k = card.kind as { kind: string; key?: string };
if (k.kind === kind && k.key === key) {
s.decks.hands.set(0, [id]);
return id;
}
}
throw new Error(`no ${kind} card: ${key}`);
}
/** A Mainline node pinned to a known terrain, so deck composition cannot decide an outcome. */
function pinned(s: GameState, index: number, card: string) {
const node = s.division.nodes[index];
if (node?.kind !== 'mainline') throw new Error(`node ${index} is not a Mainline card`);
node.card = card as never;
node.transits = [];
return node;
}
/** Lets the player actually play a card this turn. */
function drawTurn(s: GameState): void {
s.clock.phase = 'localOps';
s.clock.currentActor = 0;
s.turn.option = 'draw';
s.turn.drawnThisTurn = true;
}
// ---------------------------------------------------------------------------
describe('grade modifiers change crossing time', () => {
it('a Heavy Grade takes two Stages bare', () => {
assert.equal(crossingStages('heavyGrade', 'fast', false), 2);
});
it('Brakeman speeds the descent but not the climb', () => {
// Q11 — the card prints "(Up)" and "Player sets orientation", so the last argument is which
// way is UPHILL. With up = east, a westbound train is descending.
assert.equal(crossingStages('heavyGrade', 'fast', false, ['brakeman'], 'west', 'east'), 1);
assert.equal(crossingStages('heavyGrade', 'fast', false, ['brakeman'], 'east', 'east'), 2);
});
it('follows the orientation the player chose, not a fixed compass direction', () => {
// The same train on the same card, with the card turned around: Brakeman helps a westbound
// train on an east-climbing grade, and an eastbound one when the grade climbs west.
assert.equal(crossingStages('heavyGrade', 'fast', false, ['brakeman'], 'east', 'west'), 1);
assert.equal(crossingStages('heavyGrade', 'fast', false, ['brakeman'], 'west', 'west'), 2);
assert.equal(crossingStages('heavyGrade', 'fast', false, ['helpers'], 'west', 'west'), 1);
assert.equal(crossingStages('heavyGrade', 'fast', false, ['helpers'], 'east', 'west'), 2);
});
it('Helpers speed the climb but not the descent', () => {
assert.equal(crossingStages('heavyGrade', 'fast', false, ['helpers'], 'east', 'east'), 1);
assert.equal(crossingStages('heavyGrade', 'fast', false, ['helpers'], 'west', 'east'), 2);
});
it('Airbrakes stack with Brakeman on a slow train', () => {
// A slow train pays 3 on a grade; Brakeman and Airbrakes take one Stage each.
assert.equal(crossingStages('heavyGrade', 'slow', false, [], 'west', 'east'), 3);
assert.equal(crossingStages('heavyGrade', 'slow', false, ['brakeman'], 'west', 'east'), 2);
assert.equal(
crossingStages('heavyGrade', 'slow', false, ['brakeman', 'airbrakes'], 'west', 'east'),
1,
);
});
it('never lets a train cross in no time', () => {
assert.equal(
crossingStages('heavyGrade', 'fast', false, ['brakeman', 'airbrakes'], 'west', 'east'),
1,
);
});
it('leaves non-grade cards alone', () => {
// Brakeman on Plains would be an illegal placement anyway; the maths must not move regardless.
assert.equal(crossingStages('plains', 'fast', false, ['brakeman'], 'west', 'east'), 1);
assert.equal(crossingStages('curves', 'fast', false, ['helpers'], 'east', 'east'), 2);
});
});
describe('placing a Mainline modifier', () => {
it('accepts Brakeman on a grade', () => {
const s = game();
pinned(s, 1, 'heavyGrade');
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'brakeman');
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 1 }), null);
});
it('rejects Brakeman on anything but a grade', () => {
const s = game();
pinned(s, 1, 'plains');
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'brakeman');
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 1 }), 'NOT_A_GRADE');
});
it('requires Brakeman before Airbrakes', () => {
const s = game();
const node = pinned(s, 1, 'heavyGrade');
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'airbrakes');
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 1 }), 'NOT_CONNECTED');
node.modifiers = ['brakeman'];
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 1 }), null);
});
it('will not modify a card with a train on it', () => {
const s = game();
const node = pinned(s, 1, 'heavyGrade');
node.transits.push({ tray: 'someone', stagesRemaining: 1, direction: 'east' });
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'brakeman');
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 1 }), 'TRAIN_ON_CARD');
});
it('rejects a Mainline node that is not a Mainline card', () => {
const s = game();
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'brakeman');
// Node 0 is the western Division Point.
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 0 }), 'NO_PLACEMENT');
});
it('lays the modifier and spends the card', () => {
const s = game();
const node = pinned(s, 1, 'heavyGrade');
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'brakeman');
const r = applyIntent(s, 0, { type: 'mainline.modify', cardId, node: 1 });
assert.ok(r.ok, 'placement should be accepted');
assert.deepEqual(node.modifiers, ['brakeman']);
assert.ok(!(s.decks.hands.get(0) ?? []).includes(cardId), 'card should leave the hand');
assert.ok(s.decks.salvageYard.includes(cardId), 'card should reach the Salvage Yard');
});
});
describe('Realignment converts one Mainline type to another', () => {
it('converts according to the table', () => {
const s = game();
const node = pinned(s, 1, 'curves');
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'realignment');
const r = applyIntent(s, 0, { type: 'mainline.modify', cardId, node: 1 });
assert.ok(r.ok);
assert.equal(node.card, 'plains', 'Curves realigns to Plains');
// The point of the card: Curves is a 30 (two Stages), Plains a 60 (one).
assert.equal(crossingStages(node.card, 'fast', false), 1);
});
it('refuses a card with no conversion listed', () => {
const s = game();
// Tunnel is not a `from` in REALIGNMENTS.
assert.ok(!REALIGNMENTS.some((r) => r.from === 'tunnel'));
pinned(s, 1, 'tunnel');
drawTurn(s);
const cardId = hand(s, 'mainlineModifier', 'realignment');
assert.equal(check(s, 0, { type: 'mainline.modify', cardId, node: 1 }), 'NO_PLACEMENT');
});
it('applies to any Mainline card, not only grades', () => {
assert.equal(mainlineModifierRule('realignment')?.gradeOnly, false);
});
});
describe('Red Flags protect a stopped train', () => {
/** A slow train `behind` closing on a stopped train `ahead`, both eastbound on node 1. */
function rearEnder(s: GameState) {
const node = pinned(s, 1, 'plains');
node.transits.push({ tray: 'ahead', stagesRemaining: 2, direction: 'east' });
s.trays.set('ahead', {
id: 'ahead', trainNumber: 4, trainIsExtra: false, engineFront: true,
consist: [], direction: 'east', position: { at: 'mainline', index: 1 }, movesUsed: 0,
});
s.trays.set('behind', {
id: 'behind', trainNumber: 2, trainIsExtra: false, engineFront: true,
consist: [], direction: 'east', position: { at: 'divisionPoint', side: 'west' }, movesUsed: 0,
});
const dp = s.division.nodes[0];
if (dp?.kind === 'divisionPoint') dp.holding.push('behind');
s.clock.phase = 'mainline';
s.movedThisPhase = new Set();
return node;
}
it('holds the approaching train instead of letting it close', () => {
const s = game();
const node = rearEnder(s);
node.redFlagged = ['ahead'];
advance(s);
assert.deepEqual(
s.trays.get('behind')!.position,
{ at: 'divisionPoint', side: 'west' },
'the flagged train must not be approached',
);
});
it('comes in when the protected train rolls', () => {
const s = game();
const node = rearEnder(s);
node.redFlagged = ['ahead'];
// Bring the protected train to the end of its crossing so it leaves the card.
node.transits[0]!.stagesRemaining = 1;
for (let i = 0; i < 12 && (node.redFlagged?.length ?? 0) > 0; i++) advance(s);
assert.deepEqual(node.redFlagged, [], 'flags come in once the train moves off');
});
it('only protects a train out on the Mainline', () => {
const s = game();
rearEnder(s);
s.clock.phase = 'localOps';
s.clock.currentActor = 0;
const cardId = hand(s, 'maneuver', 'redFlags');
assert.equal(
check(s, 0, { type: 'maneuver.redFlags', cardId, trayId: 'behind' }),
'NO_PLACEMENT',
'a train sitting at a Division Point cannot be rear-ended',
);
assert.equal(check(s, 0, { type: 'maneuver.redFlags', cardId, trayId: 'ahead' }), null);
});
it('will not double-flag the same train', () => {
const s = game();
const node = rearEnder(s);
s.clock.phase = 'localOps';
s.clock.currentActor = 0;
const cardId = hand(s, 'maneuver', 'redFlags');
node.redFlagged = ['ahead'];
assert.equal(
check(s, 0, { type: 'maneuver.redFlags', cardId, trayId: 'ahead' }),
'OPTION_ALREADY_CHOSEN',
);
});
});
describe('Flying Switch rolls a cut into an industry', () => {
/** A crew on a straight with a facility next door, mid-switch. */
function setup(s: GameState) {
const area = areaOf(s, 0);
// A flying switch rolls the cut ALONG THE TRACK, so the spur and the industry must be joined
// north-south. Built east-west, they are two unconnected cards that merely look adjacent.
const spur: TrackCard = {
geometry: { kind: 'track', geometry: 'straight', axis: 'ns' },
baseOperationalRail: true,
standing: [],
facility: null,
modifiers: [],
enhancements: [],
};
area.grid.set(coordKey(at(-1, 0)), spur);
const industry: TrackCard = {
geometry: { kind: 'track', geometry: 'straight', axis: 'ns' },
baseOperationalRail: true,
standing: [],
facility: {
kind: 'freight', subtype: 'mineTipple',
allows: { outbound: true, inbound: false },
outboundBox: [], inboundBox: [],
capacity: { outbound: 1, inbound: 0 },
menAtWork: [null, null, null],
industryTrack: { length: 2, cars: [] },
laborers: 1, porters: 0,
usedThisStage: { laborers: 0, porters: 0 },
},
modifiers: [],
enhancements: [],
};
area.grid.set(coordKey(at(-2, 0)), industry);
s.trays.set('crew', {
id: 'crew', trainNumber: 1, trainIsExtra: false, engineFront: true,
consist: [{ type: 'hopper', loaded: false }, { type: 'boxcar', loaded: false }],
// Facing SOUTH, down the spur. `direction` only carries east/west, so a crew on north-south
// track needs its actual port — without it the engine looks for an east exit the card has not
// got, and the crew has no legal moves at all.
direction: 'east', facing: 's',
position: { at: 'grid', owner: 0, coord: at(-1, 0) }, movesUsed: 0,
});
s.clock.phase = 'localOps';
s.clock.currentActor = 0;
s.turn.option = 'switch';
s.turn.movesRemaining = 6;
return industry;
}
it('drops the cut onto the industry track without moving the engine', () => {
const s = game();
const industry = setup(s);
const cardId = hand(s, 'maneuver', 'flyingSwitch');
const r = applyIntent(s, 0, {
type: 'maneuver.flyingSwitch', cardId, trayId: 'crew', count: 1, to: at(-2, 0),
});
assert.ok(r.ok, 'the flying switch should be accepted');
assert.equal(industry.facility!.industryTrack.cars.length, 1, 'car reaches the industry track');
assert.equal(industry.facility!.industryTrack.cars[0]!.type, 'boxcar', '§A.3 — the back car');
assert.equal(s.trays.get('crew')!.consist.length, 1, 'the cut leaves the consist');
assert.deepEqual(
s.trays.get('crew')!.position,
{ at: 'grid', owner: 0, coord: at(-1, 0) },
'the engine never enters the industry',
);
assert.equal(s.turn.movesRemaining, 5, 'the manoeuvre costs a Move');
});
it('only reaches an adjacent card', () => {
const s = game();
setup(s);
const cardId = hand(s, 'maneuver', 'flyingSwitch');
assert.equal(
check(s, 0, { type: 'maneuver.flyingSwitch', cardId, trayId: 'crew', count: 1, to: at(-4, 0) }),
'NOT_CONNECTED',
);
});
it('rolls into an industry, not onto plain track', () => {
const s = game();
setup(s);
const cardId = hand(s, 'maneuver', 'flyingSwitch');
// (0,0) is the Office — track-connected to the crew, but not a freight industry.
assert.equal(
check(s, 0, { type: 'maneuver.flyingSwitch', cardId, trayId: 'crew', count: 1, to: at(0, 0) }),
'CANNOT_DROP_HERE',
);
});
it('will not roll onto a card with no track connection', () => {
const s = game();
setup(s);
const area = areaOf(s, 0);
// An industry sitting beside the crew, but joined east-west while the spur runs north-south.
const stranded = { ...area.grid.get(coordKey(at(-2, 0)))! };
stranded.geometry = { kind: 'track', geometry: 'straight', axis: 'ew' };
area.grid.set(coordKey(at(-1, 1)), stranded);
const cardId = hand(s, 'maneuver', 'flyingSwitch');
assert.equal(
check(s, 0, { type: 'maneuver.flyingSwitch', cardId, trayId: 'crew', count: 1, to: at(-1, 1) }),
'NOT_CONNECTED',
);
});
it('cannot cut more cars than it is hauling', () => {
const s = game();
setup(s);
const cardId = hand(s, 'maneuver', 'flyingSwitch');
assert.equal(
check(s, 0, { type: 'maneuver.flyingSwitch', cardId, trayId: 'crew', count: 5, to: at(-2, 0) }),
'CONSIST_EMPTY',
);
});
});
describe('card coverage', () => {
it('every Mainline modifier is either implemented or a known duplicate', () => {
for (const card of MAINLINE_MODIFIER_CARDS) {
const known =
mainlineModifierRule(card.key) !== null || card.key === 'facingPointLocksMainline';
assert.ok(known, `${card.key} has no rule and is not the Facing Point Locks duplicate`);
}
});
it('Poling remains unimplemented, deliberately', () => {
// Guard against someone "fixing" this by inventing an effect. The sheet says TBD; until the
// source says otherwise, a silent no-op would be worse than a rejection.
const poling = MANEUVER_CARDS.find((c) => c.key === 'poling');
assert.ok(poling, 'Poling should still be in the deck');
assert.match(poling!.effect, /TBD/i);
});
});