{"abstract":"Profiles that already end at zero get a duplicate zero change point.","category":"EV charging session scheduling","checks":7,"contract":"plan holds [start, end, kw] charging intervals ([start, end), zero-length ignored). Build the site profile as change points [[t, total_kw]] over the interval breakpoints, merging equal consecutive levels, and close with [last breakpoint, 0] unless the profile already ends at 0. Also return the start points of segments whose total exceeds site_max. Return [profile, overloads].","evaluation_group":"w2-ev_charging_session_scheduling-plan-power-profile","failed_approach":"Closing one minute after the last breakpoint treats interval ends as inclusive.","family":"w2-ev_charging_session_scheduling-plan-power-profile-closing-zero-point","id":"FA-93336","implementations":{"attempt":{"sha256":"9896f077d402e33c47e74b613e1db492633631ff0f0823e954ab8ea9a19bc17e","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(plan, site_max):\n    pts = sorted({t for s, e, _ in plan for t in (s, e) if e > s})\n    out = []\n    over = []\n    for a, b in zip(pts, pts[1:]):\n        kw = sum(k for s, e, k in plan if s <= a and b <= e)\n        if out and out[-1][1] == kw:\n            continue\n        out.append([a, kw])\n        if kw > site_max:\n            over.append(a)\n    if pts:\n        if not out or out[-1][1] != 0:\n            out.append([pts[-1] + 1, 0])\n    return [out, over]\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[4, 14, 11], [0, 2, 0], [16, 18, 0]], 11],\n   [[[0, 0], [4, 11], [14, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[23, 28, 11], [8, 13, 0], [15, 20, 0], [24, 24, 4], [16, 16, 0]], 15],\n   [[[8, 0], [23, 11], [28, 0]], []]],\n  ['control 1', [[[23, 38, 0], [0, 5, 4], [18, 18, 11]], 15], [[[0, 4], [5, 0]], []]],\n  ['control 2', [[[6, 8, 7]], 22], [[[6, 7], [8, 0]], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[11, 13, 4], [13, 28, 0], [17, 22, 0], [9, 11, 4]], 22],\n   [[[9, 4], [13, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[11, 16, 0], [11, 16, 7], [19, 21, 11], [8, 18, 11], [16, 16, 0]], 15],\n   [[[8, 11], [11, 18], [16, 11], [18, 0], [19, 11], [21, 0]], [11]]],\n  ['control 1', [[[12, 12, 4], [7, 12, 11], [27, 37, 4]], 22],\n   [[[7, 11], [12, 0], [27, 4], [37, 0]], []]],\n  ['control 2', [[], 18], [[], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[9, 11, 0], [4, 4, 11]], 18], [[[9, 0]], []]],\n  ['regression: closing zero point (partial repair)', [[[2, 17, 7]], 11], [[[2, 7], [17, 0]], []]],\n  ['control 1', [[[21, 31, 11], [23, 33, 7], [0, 10, 7], [25, 25, 0], [28, 43, 7]], 15],\n   [[[0, 7], [10, 0], [21, 11], [23, 18], [28, 25], [31, 14], [33, 7], [43, 0]], [23, 28]]],\n  ['control 2', [[[17, 27, 11], [22, 37, 11], [10, 10, 7], [19, 29, 11]], 7],\n   [[[17, 11], [19, 22], [22, 33], [27, 22], [29, 11], [37, 0]], [17, 19, 22, 27, 29]]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[14, 14, 11], [25, 40, 0], [5, 20, 7]], 15],\n   [[[5, 7], [20, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[10, 12, 7], [3, 8, 0], [29, 39, 11], [6, 11, 7], [13, 23, 7]], 11],\n   [[[3, 0], [6, 7], [10, 14], [11, 7], [12, 0], [13, 7], [23, 0], [29, 11], [39, 0]], [10]]],\n  ['control 1', [[], 22], [[], []]], ['control 2', [[], 22], [[], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[30, 32, 0], [6, 16, 11], [18, 28, 7]], 11],\n   [[[6, 11], [16, 0], [18, 7], [28, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[15, 25, 11], [27, 27, 0], [26, 26, 11]], 22], [[[15, 11], [25, 0]], []]],\n  ['control 1', [[[8, 8, 11], [0, 0, 11], [7, 17, 7]], 7], [[[7, 7], [17, 0]], []]],\n  ['control 2', [[[22, 22, 11], [5, 5, 4], [10, 15, 11], [22, 32, 11], [14, 14, 0]], 11],\n   [[[10, 11], [15, 0], [22, 11], [32, 0]], []]]]]\nfor label, args, expected in fixtures[N-1]:\n    check(label, solve(*args), expected)\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":"09932fb04509b836cf2c47975f5158f104ce10a89c4cf92780177d260b6796f6","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(plan, site_max):\n    pts = sorted({t for s, e, _ in plan for t in (s, e) if e > s})\n    out = []\n    over = []\n    for a, b in zip(pts, pts[1:]):\n        kw = sum(k for s, e, k in plan if s <= a and b <= e)\n        if out and out[-1][1] == kw:\n            continue\n        out.append([a, kw])\n        if kw > site_max:\n            over.append(a)\n    if pts:\n        out.append([pts[-1], 0])\n    return [out, over]\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[4, 14, 11], [0, 2, 0], [16, 18, 0]], 11],\n   [[[0, 0], [4, 11], [14, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[23, 28, 11], [8, 13, 0], [15, 20, 0], [24, 24, 4], [16, 16, 0]], 15],\n   [[[8, 0], [23, 11], [28, 0]], []]],\n  ['control 1', [[[23, 38, 0], [0, 5, 4], [18, 18, 11]], 15], [[[0, 4], [5, 0]], []]],\n  ['control 2', [[[6, 8, 7]], 22], [[[6, 7], [8, 0]], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[11, 13, 4], [13, 28, 0], [17, 22, 0], [9, 11, 4]], 22],\n   [[[9, 4], [13, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[11, 16, 0], [11, 16, 7], [19, 21, 11], [8, 18, 11], [16, 16, 0]], 15],\n   [[[8, 11], [11, 18], [16, 11], [18, 0], [19, 11], [21, 0]], [11]]],\n  ['control 1', [[[12, 12, 4], [7, 12, 11], [27, 37, 4]], 22],\n   [[[7, 11], [12, 0], [27, 4], [37, 0]], []]],\n  ['control 2', [[], 18], [[], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[9, 11, 0], [4, 4, 11]], 18], [[[9, 0]], []]],\n  ['regression: closing zero point (partial repair)', [[[2, 17, 7]], 11], [[[2, 7], [17, 0]], []]],\n  ['control 1', [[[21, 31, 11], [23, 33, 7], [0, 10, 7], [25, 25, 0], [28, 43, 7]], 15],\n   [[[0, 7], [10, 0], [21, 11], [23, 18], [28, 25], [31, 14], [33, 7], [43, 0]], [23, 28]]],\n  ['control 2', [[[17, 27, 11], [22, 37, 11], [10, 10, 7], [19, 29, 11]], 7],\n   [[[17, 11], [19, 22], [22, 33], [27, 22], [29, 11], [37, 0]], [17, 19, 22, 27, 29]]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[14, 14, 11], [25, 40, 0], [5, 20, 7]], 15],\n   [[[5, 7], [20, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[10, 12, 7], [3, 8, 0], [29, 39, 11], [6, 11, 7], [13, 23, 7]], 11],\n   [[[3, 0], [6, 7], [10, 14], [11, 7], [12, 0], [13, 7], [23, 0], [29, 11], [39, 0]], [10]]],\n  ['control 1', [[], 22], [[], []]], ['control 2', [[], 22], [[], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[30, 32, 0], [6, 16, 11], [18, 28, 7]], 11],\n   [[[6, 11], [16, 0], [18, 7], [28, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[15, 25, 11], [27, 27, 0], [26, 26, 11]], 22], [[[15, 11], [25, 0]], []]],\n  ['control 1', [[[8, 8, 11], [0, 0, 11], [7, 17, 7]], 7], [[[7, 7], [17, 0]], []]],\n  ['control 2', [[[22, 22, 11], [5, 5, 4], [10, 15, 11], [22, 32, 11], [14, 14, 0]], 11],\n   [[[10, 11], [15, 0], [22, 11], [32, 0]], []]]]]\nfor label, args, expected in fixtures[N-1]:\n    check(label, solve(*args), expected)\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":"613858e55e1dd090b281242bceb63151768046c8e82932dfca7d828f917bcea3","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(plan, site_max):\n    pts = sorted({t for s, e, _ in plan for t in (s, e) if e > s})\n    out = []\n    over = []\n    for a, b in zip(pts, pts[1:]):\n        kw = sum(k for s, e, k in plan if s <= a and b <= e)\n        if out and out[-1][1] == kw:\n            continue\n        out.append([a, kw])\n        if kw > site_max:\n            over.append(a)\n    if pts:\n        if not out or out[-1][1] != 0:\n            out.append([pts[-1], 0])\n    return [out, over]\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[4, 14, 11], [0, 2, 0], [16, 18, 0]], 11],\n   [[[0, 0], [4, 11], [14, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[23, 28, 11], [8, 13, 0], [15, 20, 0], [24, 24, 4], [16, 16, 0]], 15],\n   [[[8, 0], [23, 11], [28, 0]], []]],\n  ['control 1', [[[23, 38, 0], [0, 5, 4], [18, 18, 11]], 15], [[[0, 4], [5, 0]], []]],\n  ['control 2', [[[6, 8, 7]], 22], [[[6, 7], [8, 0]], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[11, 13, 4], [13, 28, 0], [17, 22, 0], [9, 11, 4]], 22],\n   [[[9, 4], [13, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[11, 16, 0], [11, 16, 7], [19, 21, 11], [8, 18, 11], [16, 16, 0]], 15],\n   [[[8, 11], [11, 18], [16, 11], [18, 0], [19, 11], [21, 0]], [11]]],\n  ['control 1', [[[12, 12, 4], [7, 12, 11], [27, 37, 4]], 22],\n   [[[7, 11], [12, 0], [27, 4], [37, 0]], []]],\n  ['control 2', [[], 18], [[], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[9, 11, 0], [4, 4, 11]], 18], [[[9, 0]], []]],\n  ['regression: closing zero point (partial repair)', [[[2, 17, 7]], 11], [[[2, 7], [17, 0]], []]],\n  ['control 1', [[[21, 31, 11], [23, 33, 7], [0, 10, 7], [25, 25, 0], [28, 43, 7]], 15],\n   [[[0, 7], [10, 0], [21, 11], [23, 18], [28, 25], [31, 14], [33, 7], [43, 0]], [23, 28]]],\n  ['control 2', [[[17, 27, 11], [22, 37, 11], [10, 10, 7], [19, 29, 11]], 7],\n   [[[17, 11], [19, 22], [22, 33], [27, 22], [29, 11], [37, 0]], [17, 19, 22, 27, 29]]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[14, 14, 11], [25, 40, 0], [5, 20, 7]], 15],\n   [[[5, 7], [20, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[10, 12, 7], [3, 8, 0], [29, 39, 11], [6, 11, 7], [13, 23, 7]], 11],\n   [[[3, 0], [6, 7], [10, 14], [11, 7], [12, 0], [13, 7], [23, 0], [29, 11], [39, 0]], [10]]],\n  ['control 1', [[], 22], [[], []]], ['control 2', [[], 22], [[], []]]],\n [['boundary: zero-length interval before plan', [[[5, 5, 7], [10, 20, 11]], 11],\n   [[[10, 11], [20, 0]], []]],\n  ['boundary: exact site limit', [[[0, 10, 7], [0, 10, 4]], 11], [[[0, 11], [10, 0]], []]],\n  ['boundary: empty plan', [[], 11], [[], []]],\n  ['regression: closing zero point', [[[30, 32, 0], [6, 16, 11], [18, 28, 7]], 11],\n   [[[6, 11], [16, 0], [18, 7], [28, 0]], []]],\n  ['regression: closing zero point (partial repair)',\n   [[[15, 25, 11], [27, 27, 0], [26, 26, 11]], 22], [[[15, 11], [25, 0]], []]],\n  ['control 1', [[[8, 8, 11], [0, 0, 11], [7, 17, 7]], 7], [[[7, 7], [17, 0]], []]],\n  ['control 2', [[[22, 22, 11], [5, 5, 4], [10, 15, 11], [22, 32, 11], [14, 14, 0]], 11],\n   [[[10, 11], [15, 0], [22, 11], [32, 0]], []]]]]\nfor label, args, expected in fixtures[N-1]:\n    check(label, solve(*args), expected)\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 stipulated toy contract for teaching; no claim of conformance with any standard, vendor protocol or production controller. 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":"w2-ev_charging_session_scheduling-plan-power-profile-closing-zero-point","generated_at":"2026-09-29T14:51:54.263396+00:00","license":"CC0-1.0","python":"3.12.14","seed":1,"split":"open-access"},"relevance":"Depot, workplace and public EV chargers schedule sessions against prices, circuit limits and departure deadlines; a wrong decision silently strands a driver or overloads a feeder.","repair":"Append the closing zero only when the last level is not already zero.","root_cause":"The closing zero is appended unconditionally.","sha256":"97d6f302e715a2ac919c23a0dd66f41060fbba80fd98b5a32d9379406700cb82","title":"Site power profile from charge plans: closing zero point · case 01","variant":1,"variant_policy":"Five numbered records share a model and may reuse boundary fixtures.","verification":{"attempt":{"elapsed_ms":40.823,"exit_code":1,"observations":[{"actual":[[[10,11],[21,0]],[]],"check":"boundary: zero-length interval before plan","expected":[[[10,11],[20,0]],[]],"passed":false},{"actual":[[[0,11],[11,0]],[]],"check":"boundary: exact site limit","expected":[[[0,11],[10,0]],[]],"passed":false},{"actual":[[],[]],"check":"boundary: empty plan","expected":[[],[]],"passed":true},{"actual":[[[0,0],[4,11],[14,0]],[]],"check":"regression: closing zero point","expected":[[[0,0],[4,11],[14,0]],[]],"passed":true},{"actual":[[[8,0],[23,11],[29,0]],[]],"check":"regression: closing zero point (partial repair)","expected":[[[8,0],[23,11],[28,0]],[]],"passed":false},{"actual":[[[0,4],[5,0]],[]],"check":"control 1","expected":[[[0,4],[5,0]],[]],"passed":true},{"actual":[[[6,7],[9,0]],[]],"check":"control 2","expected":[[[6,7],[8,0]],[]],"passed":false}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"boundary: zero-length interval before plan\", \"actual\": [[[10, 11], [21, 0]], []], \"expected\": [[[10, 11], [20, 0]], []], \"passed\": false}, {\"check\": \"boundary: exact site limit\", \"actual\": [[[0, 11], [11, 0]], []], \"expected\": [[[0, 11], [10, 0]], []], \"passed\": false}, {\"check\": \"boundary: empty plan\", \"actual\": [[], []], \"expected\": [[], []], \"passed\": true}, {\"check\": \"regression: closing zero point\", \"actual\": [[[0, 0], [4, 11], [14, 0]], []], \"expected\": [[[0, 0], [4, 11], [14, 0]], []], \"passed\": true}, {\"check\": \"regression: closing zero point (partial repair)\", \"actual\": [[[8, 0], [23, 11], [29, 0]], []], \"expected\": [[[8, 0], [23, 11], [28, 0]], []], \"passed\": false}, {\"check\": \"control 1\", \"actual\": [[[0, 4], [5, 0]], []], \"expected\": [[[0, 4], [5, 0]], []], \"passed\": true}, {\"check\": \"control 2\", \"actual\": [[[6, 7], [9, 0]], []], \"expected\": [[[6, 7], [8, 0]], []], \"passed\": false}], \"passed\": false}\n"},"broken":{"elapsed_ms":42.632,"exit_code":1,"observations":[{"actual":[[[10,11],[20,0]],[]],"check":"boundary: zero-length interval before plan","expected":[[[10,11],[20,0]],[]],"passed":true},{"actual":[[[0,11],[10,0]],[]],"check":"boundary: exact site limit","expected":[[[0,11],[10,0]],[]],"passed":true},{"actual":[[],[]],"check":"boundary: empty plan","expected":[[],[]],"passed":true},{"actual":[[[0,0],[4,11],[14,0],[18,0]],[]],"check":"regression: closing zero point","expected":[[[0,0],[4,11],[14,0]],[]],"passed":false},{"actual":[[[8,0],[23,11],[28,0]],[]],"check":"regression: closing zero point (partial repair)","expected":[[[8,0],[23,11],[28,0]],[]],"passed":true},{"actual":[[[0,4],[5,0],[38,0]],[]],"check":"control 1","expected":[[[0,4],[5,0]],[]],"passed":false},{"actual":[[[6,7],[8,0]],[]],"check":"control 2","expected":[[[6,7],[8,0]],[]],"passed":true}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"boundary: zero-length interval before plan\", \"actual\": [[[10, 11], [20, 0]], []], \"expected\": [[[10, 11], [20, 0]], []], \"passed\": true}, {\"check\": \"boundary: exact site limit\", \"actual\": [[[0, 11], [10, 0]], []], \"expected\": [[[0, 11], [10, 0]], []], \"passed\": true}, {\"check\": \"boundary: empty plan\", \"actual\": [[], []], \"expected\": [[], []], \"passed\": true}, {\"check\": \"regression: closing zero point\", \"actual\": [[[0, 0], [4, 11], [14, 0], [18, 0]], []], \"expected\": [[[0, 0], [4, 11], [14, 0]], []], \"passed\": false}, {\"check\": \"regression: closing zero point (partial repair)\", \"actual\": [[[8, 0], [23, 11], [28, 0]], []], \"expected\": [[[8, 0], [23, 11], [28, 0]], []], \"passed\": true}, {\"check\": \"control 1\", \"actual\": [[[0, 4], [5, 0], [38, 0]], []], \"expected\": [[[0, 4], [5, 0]], []], \"passed\": false}, {\"check\": \"control 2\", \"actual\": [[[6, 7], [8, 0]], []], \"expected\": [[[6, 7], [8, 0]], []], \"passed\": true}], \"passed\": false}\n"},"fixed":{"elapsed_ms":40.064,"exit_code":0,"observations":[{"actual":[[[10,11],[20,0]],[]],"check":"boundary: zero-length interval before plan","expected":[[[10,11],[20,0]],[]],"passed":true},{"actual":[[[0,11],[10,0]],[]],"check":"boundary: exact site limit","expected":[[[0,11],[10,0]],[]],"passed":true},{"actual":[[],[]],"check":"boundary: empty plan","expected":[[],[]],"passed":true},{"actual":[[[0,0],[4,11],[14,0]],[]],"check":"regression: closing zero point","expected":[[[0,0],[4,11],[14,0]],[]],"passed":true},{"actual":[[[8,0],[23,11],[28,0]],[]],"check":"regression: closing zero point (partial repair)","expected":[[[8,0],[23,11],[28,0]],[]],"passed":true},{"actual":[[[0,4],[5,0]],[]],"check":"control 1","expected":[[[0,4],[5,0]],[]],"passed":true},{"actual":[[[6,7],[8,0]],[]],"check":"control 2","expected":[[[6,7],[8,0]],[]],"passed":true}],"passed":true,"stderr":"","stdout":"{\"observations\": [{\"check\": \"boundary: zero-length interval before plan\", \"actual\": [[[10, 11], [20, 0]], []], \"expected\": [[[10, 11], [20, 0]], []], \"passed\": true}, {\"check\": \"boundary: exact site limit\", \"actual\": [[[0, 11], [10, 0]], []], \"expected\": [[[0, 11], [10, 0]], []], \"passed\": true}, {\"check\": \"boundary: empty plan\", \"actual\": [[], []], \"expected\": [[], []], \"passed\": true}, {\"check\": \"regression: closing zero point\", \"actual\": [[[0, 0], [4, 11], [14, 0]], []], \"expected\": [[[0, 0], [4, 11], [14, 0]], []], \"passed\": true}, {\"check\": \"regression: closing zero point (partial repair)\", \"actual\": [[[8, 0], [23, 11], [28, 0]], []], \"expected\": [[[8, 0], [23, 11], [28, 0]], []], \"passed\": true}, {\"check\": \"control 1\", \"actual\": [[[0, 4], [5, 0]], []], \"expected\": [[[0, 4], [5, 0]], []], \"passed\": true}, {\"check\": \"control 2\", \"actual\": [[[6, 7], [8, 0]], []], \"expected\": [[[6, 7], [8, 0]], []], \"passed\": true}], \"passed\": true}\n"}},"verified":true,"visibility":"public"}