FAILURE MAP
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FA-83516 / Card game rule engines / Open access

Reverse moves play in the old direction first · case 01

After a reverse the next player is the one in the old direction.

Verified by executionVariant 1 · 8 checks per implementationDownload source bundle ↓JSON ↗

ROOT CAUSE

The direction is flipped after computing the next player.

VERIFIED REPAIR

Flip direction before advancing.

Unsuccessful approach: Negating the step for every card inverts play direction for ordinary cards.

Case contract

Input [players, current, direction(+1/-1), card]. Reverse flips direction (with two players it acts as skip); skip jumps one player; draw2/wild4 make the next player draw 2/4 and lose their turn. Return [next_player, direction, draw_count, victim_or_None].

Why this case matters

Card-game engines, scoring apps and online tables apply this rule automatically on every hand.

1 / The failure

Exit 1
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(x):
    n, cur, direction, card = x
    step = 1
    victim = None
    draw = 0
    if card == 'reverse':
        if n == 2:
            step = 2
    elif card == 'skip':
        step = 2
    elif card in ('draw2', 'wild4'):
        victim = (cur + direction) % n
        draw = 2 if card == 'draw2' else 4
        step = 2
    nxt = (cur + direction * step) % n
    if card == 'reverse':
        direction = -direction
    return [nxt, direction, draw, victim]
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[[[2, 1, 1, 'wild'], [0, 1, 0, None]], [[2, 1, 1, 'wild4'], [1, 1, 4, 0]], [[2, 1, -1, 'skip'], [1, -1, 0, None]], [[2, 1, -1, 'wild'], [0, -1, 0, None]], [[3, 0, 1, 'draw2'], [2, 1, 2, 1]], [[3, 0, 1, 'wild'], [1, 1, 0, None]], [[3, 0, -1, 'reverse'], [1, 1, 0, None]], [[3, 0, -1, 'wild4'], [1, -1, 4, 2]]], [[[3, 0, -1, 'skip'], [1, -1, 0, None]], [[3, 0, -1, 'reverse'], [1, 1, 0, None]], [[3, 0, -1, 'wild'], [2, -1, 0, None]], [[3, 0, -1, 'wild4'], [1, -1, 4, 2]], [[3, 1, 1, 'num'], [2, 1, 0, None]], [[3, 1, 1, 'skip'], [0, 1, 0, None]], [[3, 1, -1, 'num'], [0, -1, 0, None]], [[4, 0, 1, 'reverse'], [3, -1, 0, None]]], [[[3, 1, 1, 'wild4'], [0, 1, 4, 2]], [[3, 1, -1, 'num'], [0, -1, 0, None]], [[3, 1, -1, 'skip'], [2, -1, 0, None]], [[3, 1, -1, 'reverse'], [2, 1, 0, None]], [[3, 1, -1, 'wild4'], [2, -1, 4, 0]], [[3, 2, 1, 'skip'], [1, 1, 0, None]], [[3, 2, 1, 'draw2'], [1, 1, 2, 0]], [[4, 3, 1, 'reverse'], [2, -1, 0, None]]], [[[3, 2, 1, 'wild4'], [1, 1, 4, 0]], [[3, 2, -1, 'skip'], [0, -1, 0, None]], [[3, 2, -1, 'reverse'], [0, 1, 0, None]], [[3, 2, -1, 'wild4'], [0, -1, 4, 1]], [[4, 0, 1, 'num'], [1, 1, 0, None]], [[4, 0, 1, 'skip'], [2, 1, 0, None]], [[4, 0, 1, 'reverse'], [3, -1, 0, None]], [[5, 2, 1, 'reverse'], [1, -1, 0, None]]], [[[4, 0, 1, 'wild'], [1, 1, 0, None]], [[4, 0, 1, 'wild4'], [2, 1, 4, 1]], [[4, 0, -1, 'num'], [3, -1, 0, None]], [[4, 0, -1, 'skip'], [2, -1, 0, None]], [[4, 0, -1, 'wild4'], [2, -1, 4, 3]], [[4, 1, 1, 'num'], [2, 1, 0, None]], [[4, 1, 1, 'reverse'], [0, -1, 0, None]], [[6, 0, 1, 'reverse'], [5, -1, 0, None]]]]
for i, (args, expected) in enumerate(fixtures[N-1]):
    check("turn case %d" % i, solve(args), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
Boundary fixtureActualExpectedOutcome
turn case 0[0, 1, 0, None][0, 1, 0, None]Passed
turn case 1[1, 1, 4, 0][1, 1, 4, 0]Passed
turn case 2[1, -1, 0, None][1, -1, 0, None]Passed
turn case 3[0, -1, 0, None][0, -1, 0, None]Passed
turn case 4[2, 1, 2, 1][2, 1, 2, 1]Passed
turn case 5[1, 1, 0, None][1, 1, 0, None]Passed
turn case 6[2, 1, 0, None][1, 1, 0, None]Failed
turn case 7[1, -1, 4, 2][1, -1, 4, 2]Passed

SHA-256 / 79583007159cab66a34d1c8b4b718fbb6f4a4abf38d69ae754322921fa390866

2 / The unsuccessful fix

Exit 1
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(x):
    n, cur, direction, card = x
    step = 1
    victim = None
    draw = 0
    if card == 'reverse':
        direction = -direction
        if n == 2:
            step = 2
    elif card == 'skip':
        step = 2
    elif card in ('draw2', 'wild4'):
        victim = (cur + direction) % n
        draw = 2 if card == 'draw2' else 4
        step = 2
    nxt = (cur - direction * step) % n
    return [nxt, direction, draw, victim]
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[[[2, 1, 1, 'wild'], [0, 1, 0, None]], [[2, 1, 1, 'wild4'], [1, 1, 4, 0]], [[2, 1, -1, 'skip'], [1, -1, 0, None]], [[2, 1, -1, 'wild'], [0, -1, 0, None]], [[3, 0, 1, 'draw2'], [2, 1, 2, 1]], [[3, 0, 1, 'wild'], [1, 1, 0, None]], [[3, 0, -1, 'reverse'], [1, 1, 0, None]], [[3, 0, -1, 'wild4'], [1, -1, 4, 2]]], [[[3, 0, -1, 'skip'], [1, -1, 0, None]], [[3, 0, -1, 'reverse'], [1, 1, 0, None]], [[3, 0, -1, 'wild'], [2, -1, 0, None]], [[3, 0, -1, 'wild4'], [1, -1, 4, 2]], [[3, 1, 1, 'num'], [2, 1, 0, None]], [[3, 1, 1, 'skip'], [0, 1, 0, None]], [[3, 1, -1, 'num'], [0, -1, 0, None]], [[4, 0, 1, 'reverse'], [3, -1, 0, None]]], [[[3, 1, 1, 'wild4'], [0, 1, 4, 2]], [[3, 1, -1, 'num'], [0, -1, 0, None]], [[3, 1, -1, 'skip'], [2, -1, 0, None]], [[3, 1, -1, 'reverse'], [2, 1, 0, None]], [[3, 1, -1, 'wild4'], [2, -1, 4, 0]], [[3, 2, 1, 'skip'], [1, 1, 0, None]], [[3, 2, 1, 'draw2'], [1, 1, 2, 0]], [[4, 3, 1, 'reverse'], [2, -1, 0, None]]], [[[3, 2, 1, 'wild4'], [1, 1, 4, 0]], [[3, 2, -1, 'skip'], [0, -1, 0, None]], [[3, 2, -1, 'reverse'], [0, 1, 0, None]], [[3, 2, -1, 'wild4'], [0, -1, 4, 1]], [[4, 0, 1, 'num'], [1, 1, 0, None]], [[4, 0, 1, 'skip'], [2, 1, 0, None]], [[4, 0, 1, 'reverse'], [3, -1, 0, None]], [[5, 2, 1, 'reverse'], [1, -1, 0, None]]], [[[4, 0, 1, 'wild'], [1, 1, 0, None]], [[4, 0, 1, 'wild4'], [2, 1, 4, 1]], [[4, 0, -1, 'num'], [3, -1, 0, None]], [[4, 0, -1, 'skip'], [2, -1, 0, None]], [[4, 0, -1, 'wild4'], [2, -1, 4, 3]], [[4, 1, 1, 'num'], [2, 1, 0, None]], [[4, 1, 1, 'reverse'], [0, -1, 0, None]], [[6, 0, 1, 'reverse'], [5, -1, 0, None]]]]
for i, (args, expected) in enumerate(fixtures[N-1]):
    check("turn case %d" % i, solve(args), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
Boundary fixtureActualExpectedOutcome
turn case 0[0, 1, 0, None][0, 1, 0, None]Passed
turn case 1[1, 1, 4, 0][1, 1, 4, 0]Passed
turn case 2[1, -1, 0, None][1, -1, 0, None]Passed
turn case 3[0, -1, 0, None][0, -1, 0, None]Passed
turn case 4[1, 1, 2, 1][2, 1, 2, 1]Failed
turn case 5[2, 1, 0, None][1, 1, 0, None]Failed
turn case 6[2, 1, 0, None][1, 1, 0, None]Failed
turn case 7[2, -1, 4, 2][1, -1, 4, 2]Failed

SHA-256 / b9c3d1509b9c50fa17fa639697fdccaf7f018abdd46b2abbcd0d57a1c2b31ac9

3 / The verified repair

Exit 0
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(x):
    n, cur, direction, card = x
    step = 1
    victim = None
    draw = 0
    if card == 'reverse':
        direction = -direction
        if n == 2:
            step = 2
    elif card == 'skip':
        step = 2
    elif card in ('draw2', 'wild4'):
        victim = (cur + direction) % n
        draw = 2 if card == 'draw2' else 4
        step = 2
    nxt = (cur + direction * step) % n
    return [nxt, direction, draw, victim]
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[[[2, 1, 1, 'wild'], [0, 1, 0, None]], [[2, 1, 1, 'wild4'], [1, 1, 4, 0]], [[2, 1, -1, 'skip'], [1, -1, 0, None]], [[2, 1, -1, 'wild'], [0, -1, 0, None]], [[3, 0, 1, 'draw2'], [2, 1, 2, 1]], [[3, 0, 1, 'wild'], [1, 1, 0, None]], [[3, 0, -1, 'reverse'], [1, 1, 0, None]], [[3, 0, -1, 'wild4'], [1, -1, 4, 2]]], [[[3, 0, -1, 'skip'], [1, -1, 0, None]], [[3, 0, -1, 'reverse'], [1, 1, 0, None]], [[3, 0, -1, 'wild'], [2, -1, 0, None]], [[3, 0, -1, 'wild4'], [1, -1, 4, 2]], [[3, 1, 1, 'num'], [2, 1, 0, None]], [[3, 1, 1, 'skip'], [0, 1, 0, None]], [[3, 1, -1, 'num'], [0, -1, 0, None]], [[4, 0, 1, 'reverse'], [3, -1, 0, None]]], [[[3, 1, 1, 'wild4'], [0, 1, 4, 2]], [[3, 1, -1, 'num'], [0, -1, 0, None]], [[3, 1, -1, 'skip'], [2, -1, 0, None]], [[3, 1, -1, 'reverse'], [2, 1, 0, None]], [[3, 1, -1, 'wild4'], [2, -1, 4, 0]], [[3, 2, 1, 'skip'], [1, 1, 0, None]], [[3, 2, 1, 'draw2'], [1, 1, 2, 0]], [[4, 3, 1, 'reverse'], [2, -1, 0, None]]], [[[3, 2, 1, 'wild4'], [1, 1, 4, 0]], [[3, 2, -1, 'skip'], [0, -1, 0, None]], [[3, 2, -1, 'reverse'], [0, 1, 0, None]], [[3, 2, -1, 'wild4'], [0, -1, 4, 1]], [[4, 0, 1, 'num'], [1, 1, 0, None]], [[4, 0, 1, 'skip'], [2, 1, 0, None]], [[4, 0, 1, 'reverse'], [3, -1, 0, None]], [[5, 2, 1, 'reverse'], [1, -1, 0, None]]], [[[4, 0, 1, 'wild'], [1, 1, 0, None]], [[4, 0, 1, 'wild4'], [2, 1, 4, 1]], [[4, 0, -1, 'num'], [3, -1, 0, None]], [[4, 0, -1, 'skip'], [2, -1, 0, None]], [[4, 0, -1, 'wild4'], [2, -1, 4, 3]], [[4, 1, 1, 'num'], [2, 1, 0, None]], [[4, 1, 1, 'reverse'], [0, -1, 0, None]], [[6, 0, 1, 'reverse'], [5, -1, 0, None]]]]
for i, (args, expected) in enumerate(fixtures[N-1]):
    check("turn case %d" % i, solve(args), expected)
print(json.dumps({"observations": observations, "passed": all(x["passed"] for x in observations)}, ensure_ascii=False))
raise SystemExit(0 if all(x["passed"] for x in observations) else 1)
Boundary fixtureActualExpectedOutcome
turn case 0[0, 1, 0, None][0, 1, 0, None]Passed
turn case 1[1, 1, 4, 0][1, 1, 4, 0]Passed
turn case 2[1, -1, 0, None][1, -1, 0, None]Passed
turn case 3[0, -1, 0, None][0, -1, 0, None]Passed
turn case 4[2, 1, 2, 1][2, 1, 2, 1]Passed
turn case 5[1, 1, 0, None][1, 1, 0, None]Passed
turn case 6[1, 1, 0, None][1, 1, 0, None]Passed
turn case 7[1, -1, 4, 2][1, -1, 4, 2]Passed

SHA-256 / 5d4362ec041e79520cfe26b96145a947ce647208308f8fc914db2cd9749521cf

Verification & scope

A bounded toy rule contract stated explicitly in the contract field; cards are two-character codes (rank, suit). Not a complete implementation of any published rulebook or casino table rules. This reproducer isolates one failure mechanism. Results cover the supplied fixtures. Variants within a family share a test contract and should remain grouped when constructing evaluation splits. Related mechanisms with a shared evaluation_group must also remain together; these controlled models are not independent production incidents.

Observations recorded using Python 3.12.14 at 2026-09-29T14:50:22.295797+00:00.

Case digest / e660f9404d8184e8c907f36f63ce6441922343f8e47dc23888f2654a8e14cc81