{"abstract":"The decoded time state disagrees with the explicit regression oracle for after_remote.","category":"Time representation","checks":12,"contract":"A bounded hybrid logical timestamp has physical integer p and logical integer l, cap 255. On receive, p=max(local p,remote p,wall). Increment max logical when both timestamps share p, increment owning side when only one shares p, otherwise reset logical to zero. Carry logical overflow into physical. Return canonical pair, physical source mask, ordering versus inputs and wall-advance flag.","evaluation_group":"s3-time-hybrid_logical_receive","failed_approach":"The partial correction still substitutes normalized_l > r['remote_l'] at the same fault site.","family":"s3-time_representation-hybrid-logical-receive-after-remote","id":"FA-18086","implementations":{"attempt":{"sha256":"f2ff3b7ebb4f748427b6e435923392433f558824b1b2ccb5a5331394adff0dd6","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\nfrom fractions import Fraction\nN = 1\nobservations = []\ndef solve(r):\n    physical = max(r['local_p'],r['remote_p'],r['wall'])\n    local_owns = physical == r['local_p']\n    remote_owns = physical == r['remote_p']\n    logical = max(r['local_l'],r['remote_l']) + 1 if local_owns and remote_owns else (r['local_l'] + 1 if local_owns else (r['remote_l'] + 1 if remote_owns else 0))\n    carry = logical // 256\n    normalized_p = physical + carry\n    normalized_l = logical % 256\n    mask = int(local_owns) + 2 * int(remote_owns) + 4 * int(physical == r['wall'])\n    after_local = (normalized_p,normalized_l) > (r['local_p'],r['local_l'])\n    after_remote = normalized_l > r['remote_l']\n    return [[normalized_p,normalized_l],mask,after_local,after_remote,normalized_p > r['wall']]\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\ncheck('fixture 1', solve({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 9}), [[10, 5], 3, True, True, True])\ncheck('fixture 2', solve({'local_p': 10, 'local_l': 5, 'remote_p': 9, 'remote_l': 8, 'wall': 8}), [[10, 6], 1, True, True, True])\ncheck('fixture 3', solve({'local_p': 9, 'local_l': 7, 'remote_p': 10, 'remote_l': 2, 'wall': 8}), [[10, 3], 2, True, True, True])\ncheck('fixture 4', solve({'local_p': 10, 'local_l': 5, 'remote_p': 10, 'remote_l': 7, 'wall': 11}), [[11, 0], 4, True, True, False])\ncheck('fixture 5', solve({'local_p': 10, 'local_l': 255, 'remote_p': 10, 'remote_l': 2, 'wall': 10}), [[11, 0], 7, True, True, True])\ncheck('fixture 6', solve({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 255, 'wall': 9}), [[11, 0], 3, True, True, True])\ncheck('fixture 7', solve({'local_p': 10, 'local_l': 0, 'remote_p': 10, 'remote_l': 0, 'wall': 10}), [[10, 1], 7, True, True, False])\ncheck('fixture 8', solve({'local_p': 1, 'local_l': 200, 'remote_p': 2, 'remote_l': 0, 'wall': 1}), [[2, 1], 2, True, True, True])\ncheck('fixture 9', solve({'local_p': 2, 'local_l': 0, 'remote_p': 1, 'remote_l': 200, 'wall': 1}), [[2, 1], 1, True, True, True])\ncheck('fixture 10', solve({'local_p': 0, 'local_l': 0, 'remote_p': 0, 'remote_l': 0, 'wall': 1}), [[1, 0], 4, True, True, False])\ncheck('fixture 11', solve({'local_p': 10, 'local_l': 254, 'remote_p': 10, 'remote_l': 0, 'wall': 9}), [[10, 255], 3, True, True, True])\nvariant = [({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 10}, [[10, 5], 7, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 11}, [[11, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 12}, [[12, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 13}, [[13, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 14}, [[14, 0], 4, True, True, False])]\ncheck(\"variant capture\", solve(variant[N-1][0]), variant[N-1][1])\nprint(json.dumps({\"observations\": observations, \"passed\": all(x[\"passed\"] for x in observations)}, ensure_ascii=False))\nraise SystemExit(0 if all(x[\"passed\"] for x in observations) else 1)\n"},"broken":{"sha256":"691173ced1ecf7ef951922b6adb80ffaf662ba90761254ae5d81bb591cfcb8d4","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\nfrom fractions import Fraction\nN = 1\nobservations = []\ndef solve(r):\n    physical = max(r['local_p'],r['remote_p'],r['wall'])\n    local_owns = physical == r['local_p']\n    remote_owns = physical == r['remote_p']\n    logical = max(r['local_l'],r['remote_l']) + 1 if local_owns and remote_owns else (r['local_l'] + 1 if local_owns else (r['remote_l'] + 1 if remote_owns else 0))\n    carry = logical // 256\n    normalized_p = physical + carry\n    normalized_l = logical % 256\n    mask = int(local_owns) + 2 * int(remote_owns) + 4 * int(physical == r['wall'])\n    after_local = (normalized_p,normalized_l) > (r['local_p'],r['local_l'])\n    after_remote = normalized_p > r['remote_p']\n    return [[normalized_p,normalized_l],mask,after_local,after_remote,normalized_p > r['wall']]\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\ncheck('fixture 1', solve({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 9}), [[10, 5], 3, True, True, True])\ncheck('fixture 2', solve({'local_p': 10, 'local_l': 5, 'remote_p': 9, 'remote_l': 8, 'wall': 8}), [[10, 6], 1, True, True, True])\ncheck('fixture 3', solve({'local_p': 9, 'local_l': 7, 'remote_p': 10, 'remote_l': 2, 'wall': 8}), [[10, 3], 2, True, True, True])\ncheck('fixture 4', solve({'local_p': 10, 'local_l': 5, 'remote_p': 10, 'remote_l': 7, 'wall': 11}), [[11, 0], 4, True, True, False])\ncheck('fixture 5', solve({'local_p': 10, 'local_l': 255, 'remote_p': 10, 'remote_l': 2, 'wall': 10}), [[11, 0], 7, True, True, True])\ncheck('fixture 6', solve({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 255, 'wall': 9}), [[11, 0], 3, True, True, True])\ncheck('fixture 7', solve({'local_p': 10, 'local_l': 0, 'remote_p': 10, 'remote_l': 0, 'wall': 10}), [[10, 1], 7, True, True, False])\ncheck('fixture 8', solve({'local_p': 1, 'local_l': 200, 'remote_p': 2, 'remote_l': 0, 'wall': 1}), [[2, 1], 2, True, True, True])\ncheck('fixture 9', solve({'local_p': 2, 'local_l': 0, 'remote_p': 1, 'remote_l': 200, 'wall': 1}), [[2, 1], 1, True, True, True])\ncheck('fixture 10', solve({'local_p': 0, 'local_l': 0, 'remote_p': 0, 'remote_l': 0, 'wall': 1}), [[1, 0], 4, True, True, False])\ncheck('fixture 11', solve({'local_p': 10, 'local_l': 254, 'remote_p': 10, 'remote_l': 0, 'wall': 9}), [[10, 255], 3, True, True, True])\nvariant = [({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 10}, [[10, 5], 7, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 11}, [[11, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 12}, [[12, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 13}, [[13, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 14}, [[14, 0], 4, True, True, False])]\ncheck(\"variant capture\", solve(variant[N-1][0]), variant[N-1][1])\nprint(json.dumps({\"observations\": observations, \"passed\": all(x[\"passed\"] for x in observations)}, ensure_ascii=False))\nraise SystemExit(0 if all(x[\"passed\"] for x in observations) else 1)\n"},"fixed":{"sha256":"cd4d4744632e99dd36ab227866c5362b6e92d6517fb14b53867ac83003e5f4a1","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\nfrom fractions import Fraction\nN = 1\nobservations = []\ndef solve(r):\n    physical = max(r['local_p'],r['remote_p'],r['wall'])\n    local_owns = physical == r['local_p']\n    remote_owns = physical == r['remote_p']\n    logical = max(r['local_l'],r['remote_l']) + 1 if local_owns and remote_owns else (r['local_l'] + 1 if local_owns else (r['remote_l'] + 1 if remote_owns else 0))\n    carry = logical // 256\n    normalized_p = physical + carry\n    normalized_l = logical % 256\n    mask = int(local_owns) + 2 * int(remote_owns) + 4 * int(physical == r['wall'])\n    after_local = (normalized_p,normalized_l) > (r['local_p'],r['local_l'])\n    after_remote = (normalized_p,normalized_l) > (r['remote_p'],r['remote_l'])\n    return [[normalized_p,normalized_l],mask,after_local,after_remote,normalized_p > r['wall']]\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\ncheck('fixture 1', solve({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 9}), [[10, 5], 3, True, True, True])\ncheck('fixture 2', solve({'local_p': 10, 'local_l': 5, 'remote_p': 9, 'remote_l': 8, 'wall': 8}), [[10, 6], 1, True, True, True])\ncheck('fixture 3', solve({'local_p': 9, 'local_l': 7, 'remote_p': 10, 'remote_l': 2, 'wall': 8}), [[10, 3], 2, True, True, True])\ncheck('fixture 4', solve({'local_p': 10, 'local_l': 5, 'remote_p': 10, 'remote_l': 7, 'wall': 11}), [[11, 0], 4, True, True, False])\ncheck('fixture 5', solve({'local_p': 10, 'local_l': 255, 'remote_p': 10, 'remote_l': 2, 'wall': 10}), [[11, 0], 7, True, True, True])\ncheck('fixture 6', solve({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 255, 'wall': 9}), [[11, 0], 3, True, True, True])\ncheck('fixture 7', solve({'local_p': 10, 'local_l': 0, 'remote_p': 10, 'remote_l': 0, 'wall': 10}), [[10, 1], 7, True, True, False])\ncheck('fixture 8', solve({'local_p': 1, 'local_l': 200, 'remote_p': 2, 'remote_l': 0, 'wall': 1}), [[2, 1], 2, True, True, True])\ncheck('fixture 9', solve({'local_p': 2, 'local_l': 0, 'remote_p': 1, 'remote_l': 200, 'wall': 1}), [[2, 1], 1, True, True, True])\ncheck('fixture 10', solve({'local_p': 0, 'local_l': 0, 'remote_p': 0, 'remote_l': 0, 'wall': 1}), [[1, 0], 4, True, True, False])\ncheck('fixture 11', solve({'local_p': 10, 'local_l': 254, 'remote_p': 10, 'remote_l': 0, 'wall': 9}), [[10, 255], 3, True, True, True])\nvariant = [({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 10}, [[10, 5], 7, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 11}, [[11, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 12}, [[12, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 13}, [[13, 0], 4, True, True, False]), ({'local_p': 10, 'local_l': 2, 'remote_p': 10, 'remote_l': 4, 'wall': 14}, [[14, 0], 4, True, True, False])]\ncheck(\"variant capture\", solve(variant[N-1][0]), variant[N-1][1])\nprint(json.dumps({\"observations\": observations, \"passed\": all(x[\"passed\"] for x in observations)}, ensure_ascii=False))\nraise SystemExit(0 if all(x[\"passed\"] for x in observations) else 1)\n"}},"limitations":"Deterministic integer reference model with stipulated units and policies; not a complete clock, wire standard or platform implementation. 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.","method":"Deterministic executable model with adversarial boundary fixtures.","provenance":{"created_by":"Failure Map","dependencies":"Python standard library","family":"s3-time_representation-hybrid-logical-receive-after-remote","generated_at":"2026-09-29T14:39:54.020599+00:00","license":"CC0-1.0","python":"3.12.14","seed":1,"split":"open-access"},"relevance":"Clock transfer and timestamp consumers require preserved coordinate, phase, validity and elapsed-time semantics.","repair":"Preserve the declared coordinate and state contract at after_remote: after_remote = (normalized_p,normalized_l) > (r['remote_p'],r['remote_l']).","root_cause":"Remote hybrid ordering discards lexicographic physical precedence.","sha256":"533d336e79b6c97205130ccb950c9a2828aabb389a9c24a3f94091fd4a75bddf","title":"Remote hybrid ordering discards lexicographic physical precedence · case 01","variant":1,"variant_policy":"Five numbered records share a model and may reuse boundary fixtures.","verification":{"attempt":{"elapsed_ms":42.704,"exit_code":1,"observations":[{"actual":[[10,5],3,true,true,true],"check":"fixture 1","expected":[[10,5],3,true,true,true],"passed":true},{"actual":[[10,6],1,true,false,true],"check":"fixture 2","expected":[[10,6],1,true,true,true],"passed":false},{"actual":[[10,3],2,true,true,true],"check":"fixture 3","expected":[[10,3],2,true,true,true],"passed":true},{"actual":[[11,0],4,true,false,false],"check":"fixture 4","expected":[[11,0],4,true,true,false],"passed":false},{"actual":[[11,0],7,true,false,true],"check":"fixture 5","expected":[[11,0],7,true,true,true],"passed":false},{"actual":[[11,0],3,true,false,true],"check":"fixture 6","expected":[[11,0],3,true,true,true],"passed":false},{"actual":[[10,1],7,true,true,false],"check":"fixture 7","expected":[[10,1],7,true,true,false],"passed":true},{"actual":[[2,1],2,true,true,true],"check":"fixture 8","expected":[[2,1],2,true,true,true],"passed":true},{"actual":[[2,1],1,true,false,true],"check":"fixture 9","expected":[[2,1],1,true,true,true],"passed":false},{"actual":[[1,0],4,true,false,false],"check":"fixture 10","expected":[[1,0],4,true,true,false],"passed":false},{"actual":[[10,255],3,true,true,true],"check":"fixture 11","expected":[[10,255],3,true,true,true],"passed":true},{"actual":[[10,5],7,true,true,false],"check":"variant capture","expected":[[10,5],7,true,true,false],"passed":true}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"fixture 1\", \"actual\": [[10, 5], 3, true, true, true], \"expected\": [[10, 5], 3, true, true, true], \"passed\": true}, {\"check\": \"fixture 2\", \"actual\": [[10, 6], 1, true, false, true], \"expected\": [[10, 6], 1, true, true, true], \"passed\": false}, {\"check\": \"fixture 3\", \"actual\": [[10, 3], 2, true, true, true], \"expected\": [[10, 3], 2, true, true, true], \"passed\": true}, {\"check\": \"fixture 4\", \"actual\": [[11, 0], 4, true, false, false], \"expected\": [[11, 0], 4, true, true, false], \"passed\": false}, {\"check\": \"fixture 5\", \"actual\": [[11, 0], 7, true, false, true], \"expected\": [[11, 0], 7, true, true, true], \"passed\": false}, {\"check\": \"fixture 6\", \"actual\": [[11, 0], 3, true, false, true], \"expected\": [[11, 0], 3, true, true, true], \"passed\": false}, {\"check\": \"fixture 7\", \"actual\": [[10, 1], 7, true, true, false], \"expected\": [[10, 1], 7, true, true, false], \"passed\": true}, {\"check\": \"fixture 8\", \"actual\": [[2, 1], 2, true, true, true], \"expected\": [[2, 1], 2, true, true, true], \"passed\": true}, {\"check\": \"fixture 9\", \"actual\": [[2, 1], 1, true, false, true], \"expected\": [[2, 1], 1, true, true, true], \"passed\": false}, {\"check\": \"fixture 10\", \"actual\": [[1, 0], 4, true, false, false], \"expected\": [[1, 0], 4, true, true, false], \"passed\": false}, {\"check\": \"fixture 11\", \"actual\": [[10, 255], 3, true, true, true], \"expected\": [[10, 255], 3, true, true, true], \"passed\": true}, {\"check\": \"variant capture\", \"actual\": [[10, 5], 7, true, true, false], \"expected\": [[10, 5], 7, true, true, false], \"passed\": true}], \"passed\": false}\n"},"broken":{"elapsed_ms":44.209,"exit_code":1,"observations":[{"actual":[[10,5],3,true,false,true],"check":"fixture 1","expected":[[10,5],3,true,true,true],"passed":false},{"actual":[[10,6],1,true,true,true],"check":"fixture 2","expected":[[10,6],1,true,true,true],"passed":true},{"actual":[[10,3],2,true,false,true],"check":"fixture 3","expected":[[10,3],2,true,true,true],"passed":false},{"actual":[[11,0],4,true,true,false],"check":"fixture 4","expected":[[11,0],4,true,true,false],"passed":true},{"actual":[[11,0],7,true,true,true],"check":"fixture 5","expected":[[11,0],7,true,true,true],"passed":true},{"actual":[[11,0],3,true,true,true],"check":"fixture 6","expected":[[11,0],3,true,true,true],"passed":true},{"actual":[[10,1],7,true,false,false],"check":"fixture 7","expected":[[10,1],7,true,true,false],"passed":false},{"actual":[[2,1],2,true,false,true],"check":"fixture 8","expected":[[2,1],2,true,true,true],"passed":false},{"actual":[[2,1],1,true,true,true],"check":"fixture 9","expected":[[2,1],1,true,true,true],"passed":true},{"actual":[[1,0],4,true,true,false],"check":"fixture 10","expected":[[1,0],4,true,true,false],"passed":true},{"actual":[[10,255],3,true,false,true],"check":"fixture 11","expected":[[10,255],3,true,true,true],"passed":false},{"actual":[[10,5],7,true,false,false],"check":"variant capture","expected":[[10,5],7,true,true,false],"passed":false}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"fixture 1\", \"actual\": [[10, 5], 3, true, false, true], \"expected\": [[10, 5], 3, true, true, true], \"passed\": false}, {\"check\": \"fixture 2\", \"actual\": [[10, 6], 1, true, true, true], \"expected\": [[10, 6], 1, true, true, true], \"passed\": true}, {\"check\": \"fixture 3\", \"actual\": [[10, 3], 2, true, false, true], \"expected\": [[10, 3], 2, true, true, true], \"passed\": false}, {\"check\": \"fixture 4\", \"actual\": [[11, 0], 4, true, true, false], \"expected\": [[11, 0], 4, true, true, false], \"passed\": true}, {\"check\": \"fixture 5\", \"actual\": [[11, 0], 7, true, true, true], \"expected\": [[11, 0], 7, true, true, true], \"passed\": true}, {\"check\": \"fixture 6\", \"actual\": [[11, 0], 3, true, true, true], \"expected\": [[11, 0], 3, true, true, true], \"passed\": true}, {\"check\": \"fixture 7\", \"actual\": [[10, 1], 7, true, false, false], \"expected\": [[10, 1], 7, true, true, false], \"passed\": false}, {\"check\": \"fixture 8\", \"actual\": [[2, 1], 2, true, false, true], \"expected\": [[2, 1], 2, true, true, true], \"passed\": false}, {\"check\": \"fixture 9\", \"actual\": [[2, 1], 1, true, true, true], \"expected\": [[2, 1], 1, true, true, true], \"passed\": true}, {\"check\": \"fixture 10\", \"actual\": [[1, 0], 4, true, true, false], \"expected\": [[1, 0], 4, true, true, false], \"passed\": true}, {\"check\": \"fixture 11\", \"actual\": [[10, 255], 3, true, false, true], \"expected\": [[10, 255], 3, true, true, true], \"passed\": false}, {\"check\": \"variant capture\", \"actual\": [[10, 5], 7, true, false, false], \"expected\": [[10, 5], 7, true, true, false], \"passed\": false}], \"passed\": false}\n"},"fixed":{"elapsed_ms":44.609,"exit_code":0,"observations":[{"actual":[[10,5],3,true,true,true],"check":"fixture 1","expected":[[10,5],3,true,true,true],"passed":true},{"actual":[[10,6],1,true,true,true],"check":"fixture 2","expected":[[10,6],1,true,true,true],"passed":true},{"actual":[[10,3],2,true,true,true],"check":"fixture 3","expected":[[10,3],2,true,true,true],"passed":true},{"actual":[[11,0],4,true,true,false],"check":"fixture 4","expected":[[11,0],4,true,true,false],"passed":true},{"actual":[[11,0],7,true,true,true],"check":"fixture 5","expected":[[11,0],7,true,true,true],"passed":true},{"actual":[[11,0],3,true,true,true],"check":"fixture 6","expected":[[11,0],3,true,true,true],"passed":true},{"actual":[[10,1],7,true,true,false],"check":"fixture 7","expected":[[10,1],7,true,true,false],"passed":true},{"actual":[[2,1],2,true,true,true],"check":"fixture 8","expected":[[2,1],2,true,true,true],"passed":true},{"actual":[[2,1],1,true,true,true],"check":"fixture 9","expected":[[2,1],1,true,true,true],"passed":true},{"actual":[[1,0],4,true,true,false],"check":"fixture 10","expected":[[1,0],4,true,true,false],"passed":true},{"actual":[[10,255],3,true,true,true],"check":"fixture 11","expected":[[10,255],3,true,true,true],"passed":true},{"actual":[[10,5],7,true,true,false],"check":"variant capture","expected":[[10,5],7,true,true,false],"passed":true}],"passed":true,"stderr":"","stdout":"{\"observations\": [{\"check\": \"fixture 1\", \"actual\": [[10, 5], 3, true, true, true], \"expected\": [[10, 5], 3, true, true, true], \"passed\": true}, {\"check\": \"fixture 2\", \"actual\": [[10, 6], 1, true, true, true], \"expected\": [[10, 6], 1, true, true, true], \"passed\": true}, {\"check\": \"fixture 3\", \"actual\": [[10, 3], 2, true, true, true], \"expected\": [[10, 3], 2, true, true, true], \"passed\": true}, {\"check\": \"fixture 4\", \"actual\": [[11, 0], 4, true, true, false], \"expected\": [[11, 0], 4, true, true, false], \"passed\": true}, {\"check\": \"fixture 5\", \"actual\": [[11, 0], 7, true, true, true], \"expected\": [[11, 0], 7, true, true, true], \"passed\": true}, {\"check\": \"fixture 6\", \"actual\": [[11, 0], 3, true, true, true], \"expected\": [[11, 0], 3, true, true, true], \"passed\": true}, {\"check\": \"fixture 7\", \"actual\": [[10, 1], 7, true, true, false], \"expected\": [[10, 1], 7, true, true, false], \"passed\": true}, {\"check\": \"fixture 8\", \"actual\": [[2, 1], 2, true, true, true], \"expected\": [[2, 1], 2, true, true, true], \"passed\": true}, {\"check\": \"fixture 9\", \"actual\": [[2, 1], 1, true, true, true], \"expected\": [[2, 1], 1, true, true, true], \"passed\": true}, {\"check\": \"fixture 10\", \"actual\": [[1, 0], 4, true, true, false], \"expected\": [[1, 0], 4, true, true, false], \"passed\": true}, {\"check\": \"fixture 11\", \"actual\": [[10, 255], 3, true, true, true], \"expected\": [[10, 255], 3, true, true, true], \"passed\": true}, {\"check\": \"variant capture\", \"actual\": [[10, 5], 7, true, true, false], \"expected\": [[10, 5], 7, true, true, false], \"passed\": true}], \"passed\": true}\n"}},"verified":true,"visibility":"public"}