FA-31931 / Keyboard interactions / Open access
Release-completed dot chord keyboard: A completed dot chord leaks dot membership into the next chord · case 01
The event trace violates the clear committed rule and produces incorrect keyboard state or command output.
ROOT CAUSE
A completed dot chord leaks dot membership into the next chord.
THE FAILURE
A completed dot chord leaks dot membership into the next chord.
Unsuccessful approach: The partial repair changes this transition to chord={dot} elif kind=='up', which still violates the model contract on the explicit regression traces.
Case contract
Events [kind,dot]. Dot values 1..8. Down adds a dot to held and accumulated chord; repeated down does not add another dot. Up releases a held dot and commits sorted accumulated dots only when the final held dot is released. Cancel clears held/chord without output; separator commits pending chord then emits empty dot list and resets. Return committed dot lists, held and accumulated sets. Inputs are finite ordered event traces; return the stated deterministic state. Batch entries are independent. N varies the number of independent input transactions.
Why this case matters
Controlled keyboard event processing model for debugging application event logic.
1 / The failure
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(cases):
def run(c):
held=set(); chord=set(); out=[]; ignored=0
for kind,dot in c:
if kind in ('down','up') and not 1<=dot<=8:
ignored+=1
continue
if kind=='down':
held.add(dot)
chord.add(dot)
elif kind=='up' and dot in held:
held.discard(dot)
if not held and chord:
out.append(sorted(chord))
pass
elif kind=='up': ignored+=1
elif kind=='cancel':
held.clear(); chord.clear()
elif kind=='separator':
if chord: out.append(sorted(chord))
out.append([])
held.clear(); chord.clear()
return [out,sorted(held),sorted(chord),ignored]
return [run(c) for c in cases]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
check('braille-chord scenario 0', solve([[]] * N), [[[], [], [], 0]] * N)
check('braille-chord scenario 1', solve([[['down', 1], ['down', 2]]] * N), [[[], [1, 2], [1, 2], 0]] * N)
check('braille-chord scenario 2', solve([[['down', 1], ['down', 8], ['up', 1], ['up', 8]]] * N), [[[[1, 8]], [], [], 0]] * N)
check('braille-chord scenario 3', solve([[['down', 2], ['down', 2], ['up', 2]]] * N), [[[[2]], [], [], 0]] * N)
check('braille-chord scenario 4', solve([[['down', 1], ['down', 2], ['up', 1]]] * N), [[[], [2], [1, 2], 0]] * N)
check('braille-chord scenario 5', solve([[['down', 1], ['up', 1], ['down', 2], ['up', 2]]] * N), [[[[1], [2]], [], [], 0]] * N)
check('braille-chord scenario 6', solve([[['down', 2], ['up', 3]]] * N), [[[], [2], [2], 1]] * N)
check('braille-chord scenario 7', solve([[['down', 0], ['up', 0], ['down', 9]]] * N), [[[], [], [], 3]] * N)
check('braille-chord scenario 8', solve([[['down', 1], ['down', 2], ['separator', 0]]] * N), [[[[1, 2], []], [], [], 0]] * N)
check('braille-chord scenario 9', solve([[['separator', 0]]] * N), [[[[]], [], [], 0]] * N)
check('braille-chord scenario 10', solve([[['down', 1], ['cancel', 0], ['up', 1]]] * N), [[[], [], [], 1]] * N)
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 fixture | Actual | Expected | Outcome |
|---|---|---|---|
| braille-chord scenario 0 | [[[], [], [], 0]] | [[[], [], [], 0]] | Passed |
| braille-chord scenario 1 | [[[], [1, 2], [1, 2], 0]] | [[[], [1, 2], [1, 2], 0]] | Passed |
| braille-chord scenario 2 | [[[[1, 8]], [], [1, 8], 0]] | [[[[1, 8]], [], [], 0]] | Failed |
| braille-chord scenario 3 | [[[[2]], [], [2], 0]] | [[[[2]], [], [], 0]] | Failed |
| braille-chord scenario 4 | [[[], [2], [1, 2], 0]] | [[[], [2], [1, 2], 0]] | Passed |
| braille-chord scenario 5 | [[[[1], [1, 2]], [], [1, 2], 0]] | [[[[1], [2]], [], [], 0]] | Failed |
| braille-chord scenario 6 | [[[], [2], [2], 1]] | [[[], [2], [2], 1]] | Passed |
| braille-chord scenario 7 | [[[], [], [], 3]] | [[[], [], [], 3]] | Passed |
| braille-chord scenario 8 | [[[[1, 2], []], [], [], 0]] | [[[[1, 2], []], [], [], 0]] | Passed |
| braille-chord scenario 9 | [[[[]], [], [], 0]] | [[[[]], [], [], 0]] | Passed |
| braille-chord scenario 10 | [[[], [], [], 1]] | [[[], [], [], 1]] | Passed |
SHA-256 / 949056a64cda0bd4798cf677f05a929555aa87c43eb4c3f3d72d37e2c9a0b715
2 / The unsuccessful fix
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(cases):
def run(c):
held=set(); chord=set(); out=[]; ignored=0
for kind,dot in c:
if kind in ('down','up') and not 1<=dot<=8:
ignored+=1
continue
if kind=='down':
held.add(dot)
chord.add(dot)
elif kind=='up' and dot in held:
held.discard(dot)
if not held and chord:
out.append(sorted(chord))
chord={dot}
elif kind=='up': ignored+=1
elif kind=='cancel':
held.clear(); chord.clear()
elif kind=='separator':
if chord: out.append(sorted(chord))
out.append([])
held.clear(); chord.clear()
return [out,sorted(held),sorted(chord),ignored]
return [run(c) for c in cases]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
check('braille-chord scenario 0', solve([[]] * N), [[[], [], [], 0]] * N)
check('braille-chord scenario 1', solve([[['down', 1], ['down', 2]]] * N), [[[], [1, 2], [1, 2], 0]] * N)
check('braille-chord scenario 2', solve([[['down', 1], ['down', 8], ['up', 1], ['up', 8]]] * N), [[[[1, 8]], [], [], 0]] * N)
check('braille-chord scenario 3', solve([[['down', 2], ['down', 2], ['up', 2]]] * N), [[[[2]], [], [], 0]] * N)
check('braille-chord scenario 4', solve([[['down', 1], ['down', 2], ['up', 1]]] * N), [[[], [2], [1, 2], 0]] * N)
check('braille-chord scenario 5', solve([[['down', 1], ['up', 1], ['down', 2], ['up', 2]]] * N), [[[[1], [2]], [], [], 0]] * N)
check('braille-chord scenario 6', solve([[['down', 2], ['up', 3]]] * N), [[[], [2], [2], 1]] * N)
check('braille-chord scenario 7', solve([[['down', 0], ['up', 0], ['down', 9]]] * N), [[[], [], [], 3]] * N)
check('braille-chord scenario 8', solve([[['down', 1], ['down', 2], ['separator', 0]]] * N), [[[[1, 2], []], [], [], 0]] * N)
check('braille-chord scenario 9', solve([[['separator', 0]]] * N), [[[[]], [], [], 0]] * N)
check('braille-chord scenario 10', solve([[['down', 1], ['cancel', 0], ['up', 1]]] * N), [[[], [], [], 1]] * N)
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 fixture | Actual | Expected | Outcome |
|---|---|---|---|
| braille-chord scenario 0 | [[[], [], [], 0]] | [[[], [], [], 0]] | Passed |
| braille-chord scenario 1 | [[[], [1, 2], [1, 2], 0]] | [[[], [1, 2], [1, 2], 0]] | Passed |
| braille-chord scenario 2 | [[[[1, 8]], [], [8], 0]] | [[[[1, 8]], [], [], 0]] | Failed |
| braille-chord scenario 3 | [[[[2]], [], [2], 0]] | [[[[2]], [], [], 0]] | Failed |
| braille-chord scenario 4 | [[[], [2], [1, 2], 0]] | [[[], [2], [1, 2], 0]] | Passed |
| braille-chord scenario 5 | [[[[1], [1, 2]], [], [2], 0]] | [[[[1], [2]], [], [], 0]] | Failed |
| braille-chord scenario 6 | [[[], [2], [2], 1]] | [[[], [2], [2], 1]] | Passed |
| braille-chord scenario 7 | [[[], [], [], 3]] | [[[], [], [], 3]] | Passed |
| braille-chord scenario 8 | [[[[1, 2], []], [], [], 0]] | [[[[1, 2], []], [], [], 0]] | Passed |
| braille-chord scenario 9 | [[[[]], [], [], 0]] | [[[[]], [], [], 0]] | Passed |
| braille-chord scenario 10 | [[[], [], [], 1]] | [[[], [], [], 1]] | Passed |
SHA-256 / c9d2e4d7ba020ee884cca807f4b5d37447c7002afe7bcf9d2a2033a66b6da943
HELD IN THE MEMBER ARCHIVE
The verified repair and its recorded checks are member-only.
This mechanism has 11 recorded checks per implementation. The open-access tier publishes the failure and the unsuccessful fix; the repaired source that passes every check, and the observations that prove it, are available to members.
Every case sharing this mechanism uses the same contract and the same repair, so this one record is held back for all of them.
Member access is invitation-based. Sign in with your invited account to inspect the repair.
Sign in to the archive ↗Verification & scope
Offline stipulated event model, not a browser implementation or web standard conformance claim. 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 2026-09-29T14:42:07.070069+00:00.
Case digest / f0a957a62ce09a600700c2fe480d0b58f833f4b033649191406c79e8a0ef0dd8