{"abstract":"A 6.2 inning start is credited with 19 outs instead of 20.","category":"Fantasy sports scoring","checks":7,"contract":"Score a pitching line in hundredths. Innings pitched use baseball notation: \"6.2\" means six innings and two outs; each out is worth 1 point. Strikeout +1, hit -1, walk -1, earned run -2, win +5, loss -3, save +5, hold +3 (ignored when the line also has a save), blown save -3, quality start (at least 18 outs and at most 3 earned runs) +3. Return outs and points.","contract_signature":"line","evaluation_group":"w2-fantasy-sports-scoring-pitcher-points","failed_approach":"Truncating the decimal product still reads .1 and .2 as tenths.","family":"w2-fantasy-sports-scoring-pitcher-points-innings-notation","id":"FA-85076","implementations":{"attempt":{"sha256":"8e352cb2d1dd0fc2ee104d22650c9a0bacc46484fb3d44ef356b435fc9a0f8d5","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(line):\n    whole, _, part = line['ip'].partition('.')\n    outs = int(float(line['ip']) * 3)\n    pts = outs * 100\n    pts += line['k'] * 100 - line['h'] * 100 - line['bb'] * 100 - line['er'] * 200\n    if line['w']:\n        pts += 500\n    if line['l']:\n        pts -= 300\n    if line['sv']:\n        pts += 500\n    elif line['hld']:\n        pts += 300\n    if line['bs']:\n        pts -= 300\n    if outs >= 18 and line['er'] <= 3:\n        pts += 300\n    return {'outs': outs, 'points': pts}\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[('regression: innings notation',\n   [{'bb': 0,\n     'bs': True,\n     'er': 5,\n     'h': 4,\n     'hld': False,\n     'ip': '5.2',\n     'k': 3,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 17, 'points': 300}),\n  ('partial repair probe: innings notation',\n   [{'bb': 4,\n     'bs': False,\n     'er': 2,\n     'h': 7,\n     'hld': False,\n     'ip': '0.1',\n     'k': 2,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 1, 'points': -1200}),\n  ('second regression',\n   [{'bb': 4,\n     'bs': False,\n     'er': 3,\n     'h': 9,\n     'hld': False,\n     'ip': '6.2',\n     'k': 6,\n     'l': True,\n     'sv': False,\n     'w': False}],\n   {'outs': 20, 'points': 700}),\n  ('normal control 1',\n   [{'bb': 0,\n     'bs': False,\n     'er': 2,\n     'h': 6,\n     'hld': False,\n     'ip': '7',\n     'k': 9,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 21, 'points': 2800}),\n  ('normal control 2',\n   [{'bb': 1,\n     'bs': True,\n     'er': 4,\n     'h': 8,\n     'hld': False,\n     'ip': '1.0',\n     'k': 9,\n     'l': True,\n     'sv': True,\n     'w': False}],\n   {'outs': 3, 'points': -600}),\n  ('normal control 3',\n   [{'bb': 4,\n     'bs': False,\n     'er': 4,\n     'h': 5,\n     'hld': True,\n     'ip': '1.0',\n     'k': 2,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': -900}),\n  ('normal control 4',\n   [{'bb': 2,\n     'bs': False,\n     'er': 2,\n     'h': 5,\n     'hld': False,\n     'ip': '7',\n     'k': 4,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 21, 'points': 2200})],\n [('regression: innings notation',\n   [{'bb': 2,\n     'bs': False,\n     'er': 4,\n     'h': 0,\n     'hld': False,\n     'ip': '0.1',\n     'k': 9,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 1, 'points': 0}),\n  ('partial repair probe: innings notation',\n   [{'bb': 1,\n     'bs': False,\n     'er': 3,\n     'h': 4,\n     'hld': True,\n     'ip': '5.2',\n     'k': 4,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 17, 'points': 1500}),\n  ('second regression',\n   [{'bb': 0,\n     'bs': True,\n     'er': 2,\n     'h': 9,\n     'hld': False,\n     'ip': '2.2',\n     'k': 6,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 8, 'points': -200}),\n  ('normal control 1',\n   [{'bb': 3,\n     'bs': False,\n     'er': 3,\n     'h': 1,\n     'hld': False,\n     'ip': '7',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 21, 'points': 1400}),\n  ('normal control 2',\n   [{'bb': 4,\n     'bs': False,\n     'er': 5,\n     'h': 1,\n     'hld': False,\n     'ip': '6.0',\n     'k': 0,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 18, 'points': 800}),\n  ('normal control 3',\n   [{'bb': 0,\n     'bs': True,\n     'er': 0,\n     'h': 2,\n     'hld': True,\n     'ip': '7',\n     'k': 11,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 21, 'points': 3800}),\n  ('normal control 4',\n   [{'bb': 3,\n     'bs': False,\n     'er': 0,\n     'h': 6,\n     'hld': True,\n     'ip': '6.0',\n     'k': 8,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 18, 'points': 2300})],\n [('regression: innings notation',\n   [{'bb': 4,\n     'bs': False,\n     'er': 3,\n     'h': 3,\n     'hld': False,\n     'ip': '2.2',\n     'k': 9,\n     'l': True,\n     'sv': False,\n     'w': True}],\n   {'outs': 8, 'points': 600}),\n  ('partial repair probe: innings notation',\n   [{'bb': 3,\n     'bs': False,\n     'er': 3,\n     'h': 5,\n     'hld': False,\n     'ip': '5.2',\n     'k': 10,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 17, 'points': 1800}),\n  ('second regression',\n   [{'bb': 2,\n     'bs': False,\n     'er': 4,\n     'h': 5,\n     'hld': True,\n     'ip': '6.1',\n     'k': 8,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 19, 'points': 1500}),\n  ('normal control 1',\n   [{'bb': 1,\n     'bs': False,\n     'er': 4,\n     'h': 2,\n     'hld': False,\n     'ip': '1.0',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 3, 'points': -300}),\n  ('normal control 2',\n   [{'bb': 4,\n     'bs': True,\n     'er': 5,\n     'h': 1,\n     'hld': False,\n     'ip': '6.0',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 18, 'points': 500}),\n  ('normal control 3',\n   [{'bb': 2,\n     'bs': False,\n     'er': 4,\n     'h': 7,\n     'hld': False,\n     'ip': '6.0',\n     'k': 5,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 18, 'points': 600}),\n  ('normal control 4',\n   [{'bb': 1,\n     'bs': False,\n     'er': 5,\n     'h': 7,\n     'hld': True,\n     'ip': '1.0',\n     'k': 3,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': -900})],\n [('regression: innings notation',\n   [{'bb': 2,\n     'bs': False,\n     'er': 2,\n     'h': 6,\n     'hld': True,\n     'ip': '6.2',\n     'k': 4,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 20, 'points': 2300}),\n  ('partial repair probe: innings notation',\n   [{'bb': 4,\n     'bs': False,\n     'er': 2,\n     'h': 0,\n     'hld': True,\n     'ip': '5.2',\n     'k': 6,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 17, 'points': 1800}),\n  ('second regression',\n   [{'bb': 1,\n     'bs': True,\n     'er': 3,\n     'h': 9,\n     'hld': False,\n     'ip': '8.1',\n     'k': 2,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 25, 'points': 1600}),\n  ('normal control 1',\n   [{'bb': 0,\n     'bs': False,\n     'er': 5,\n     'h': 9,\n     'hld': True,\n     'ip': '1.0',\n     'k': 11,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': -200}),\n  ('normal control 2',\n   [{'bb': 2,\n     'bs': False,\n     'er': 3,\n     'h': 3,\n     'hld': False,\n     'ip': '5.0',\n     'k': 10,\n     'l': True,\n     'sv': False,\n     'w': False}],\n   {'outs': 15, 'points': 1100}),\n  ('normal control 3',\n   [{'bb': 2,\n     'bs': False,\n     'er': 0,\n     'h': 3,\n     'hld': False,\n     'ip': '7',\n     'k': 7,\n     'l': False,\n     'sv': True,\n     'w': True}],\n   {'outs': 21, 'points': 3600}),\n  ('normal control 4',\n   [{'bb': 1,\n     'bs': False,\n     'er': 5,\n     'h': 8,\n     'hld': True,\n     'ip': '6.0',\n     'k': 8,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 18, 'points': 1000})],\n [('regression: innings notation',\n   [{'bb': 2,\n     'bs': False,\n     'er': 2,\n     'h': 8,\n     'hld': False,\n     'ip': '0.1',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 1, 'points': -800}),\n  ('partial repair probe: innings notation',\n   [{'bb': 0,\n     'bs': True,\n     'er': 3,\n     'h': 9,\n     'hld': False,\n     'ip': '8.1',\n     'k': 2,\n     'l': True,\n     'sv': True,\n     'w': True}],\n   {'outs': 25, 'points': 1900}),\n  ('second regression',\n   [{'bb': 4,\n     'bs': False,\n     'er': 5,\n     'h': 6,\n     'hld': True,\n     'ip': '6.1',\n     'k': 8,\n     'l': True,\n     'sv': True,\n     'w': False}],\n   {'outs': 19, 'points': 900}),\n  ('normal control 1',\n   [{'bb': 1,\n     'bs': False,\n     'er': 2,\n     'h': 5,\n     'hld': False,\n     'ip': '1.0',\n     'k': 3,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 3, 'points': 100}),\n  ('normal control 2',\n   [{'bb': 2,\n     'bs': False,\n     'er': 3,\n     'h': 7,\n     'hld': True,\n     'ip': '1.0',\n     'k': 11,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 3, 'points': 400}),\n  ('normal control 3',\n   [{'bb': 0,\n     'bs': False,\n     'er': 3,\n     'h': 6,\n     'hld': True,\n     'ip': '1.0',\n     'k': 11,\n     'l': True,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': 200}),\n  ('normal control 4',\n   [{'bb': 3,\n     'bs': False,\n     'er': 4,\n     'h': 5,\n     'hld': True,\n     'ip': '7',\n     'k': 9,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 21, 'points': 1700})]]\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":"d5f53e1b4643bccb446f586a5a2af43b4e0873d02c6ce70d6e5fa905eb3fa90f","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(line):\n    whole, _, part = line['ip'].partition('.')\n    outs = round(float(line['ip']) * 3)\n    pts = outs * 100\n    pts += line['k'] * 100 - line['h'] * 100 - line['bb'] * 100 - line['er'] * 200\n    if line['w']:\n        pts += 500\n    if line['l']:\n        pts -= 300\n    if line['sv']:\n        pts += 500\n    elif line['hld']:\n        pts += 300\n    if line['bs']:\n        pts -= 300\n    if outs >= 18 and line['er'] <= 3:\n        pts += 300\n    return {'outs': outs, 'points': pts}\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[('regression: innings notation',\n   [{'bb': 0,\n     'bs': True,\n     'er': 5,\n     'h': 4,\n     'hld': False,\n     'ip': '5.2',\n     'k': 3,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 17, 'points': 300}),\n  ('partial repair probe: innings notation',\n   [{'bb': 4,\n     'bs': False,\n     'er': 2,\n     'h': 7,\n     'hld': False,\n     'ip': '0.1',\n     'k': 2,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 1, 'points': -1200}),\n  ('second regression',\n   [{'bb': 4,\n     'bs': False,\n     'er': 3,\n     'h': 9,\n     'hld': False,\n     'ip': '6.2',\n     'k': 6,\n     'l': True,\n     'sv': False,\n     'w': False}],\n   {'outs': 20, 'points': 700}),\n  ('normal control 1',\n   [{'bb': 0,\n     'bs': False,\n     'er': 2,\n     'h': 6,\n     'hld': False,\n     'ip': '7',\n     'k': 9,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 21, 'points': 2800}),\n  ('normal control 2',\n   [{'bb': 1,\n     'bs': True,\n     'er': 4,\n     'h': 8,\n     'hld': False,\n     'ip': '1.0',\n     'k': 9,\n     'l': True,\n     'sv': True,\n     'w': False}],\n   {'outs': 3, 'points': -600}),\n  ('normal control 3',\n   [{'bb': 4,\n     'bs': False,\n     'er': 4,\n     'h': 5,\n     'hld': True,\n     'ip': '1.0',\n     'k': 2,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': -900}),\n  ('normal control 4',\n   [{'bb': 2,\n     'bs': False,\n     'er': 2,\n     'h': 5,\n     'hld': False,\n     'ip': '7',\n     'k': 4,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 21, 'points': 2200})],\n [('regression: innings notation',\n   [{'bb': 2,\n     'bs': False,\n     'er': 4,\n     'h': 0,\n     'hld': False,\n     'ip': '0.1',\n     'k': 9,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 1, 'points': 0}),\n  ('partial repair probe: innings notation',\n   [{'bb': 1,\n     'bs': False,\n     'er': 3,\n     'h': 4,\n     'hld': True,\n     'ip': '5.2',\n     'k': 4,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 17, 'points': 1500}),\n  ('second regression',\n   [{'bb': 0,\n     'bs': True,\n     'er': 2,\n     'h': 9,\n     'hld': False,\n     'ip': '2.2',\n     'k': 6,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 8, 'points': -200}),\n  ('normal control 1',\n   [{'bb': 3,\n     'bs': False,\n     'er': 3,\n     'h': 1,\n     'hld': False,\n     'ip': '7',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 21, 'points': 1400}),\n  ('normal control 2',\n   [{'bb': 4,\n     'bs': False,\n     'er': 5,\n     'h': 1,\n     'hld': False,\n     'ip': '6.0',\n     'k': 0,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 18, 'points': 800}),\n  ('normal control 3',\n   [{'bb': 0,\n     'bs': True,\n     'er': 0,\n     'h': 2,\n     'hld': True,\n     'ip': '7',\n     'k': 11,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 21, 'points': 3800}),\n  ('normal control 4',\n   [{'bb': 3,\n     'bs': False,\n     'er': 0,\n     'h': 6,\n     'hld': True,\n     'ip': '6.0',\n     'k': 8,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 18, 'points': 2300})],\n [('regression: innings notation',\n   [{'bb': 4,\n     'bs': False,\n     'er': 3,\n     'h': 3,\n     'hld': False,\n     'ip': '2.2',\n     'k': 9,\n     'l': True,\n     'sv': False,\n     'w': True}],\n   {'outs': 8, 'points': 600}),\n  ('partial repair probe: innings notation',\n   [{'bb': 3,\n     'bs': False,\n     'er': 3,\n     'h': 5,\n     'hld': False,\n     'ip': '5.2',\n     'k': 10,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 17, 'points': 1800}),\n  ('second regression',\n   [{'bb': 2,\n     'bs': False,\n     'er': 4,\n     'h': 5,\n     'hld': True,\n     'ip': '6.1',\n     'k': 8,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 19, 'points': 1500}),\n  ('normal control 1',\n   [{'bb': 1,\n     'bs': False,\n     'er': 4,\n     'h': 2,\n     'hld': False,\n     'ip': '1.0',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 3, 'points': -300}),\n  ('normal control 2',\n   [{'bb': 4,\n     'bs': True,\n     'er': 5,\n     'h': 1,\n     'hld': False,\n     'ip': '6.0',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 18, 'points': 500}),\n  ('normal control 3',\n   [{'bb': 2,\n     'bs': False,\n     'er': 4,\n     'h': 7,\n     'hld': False,\n     'ip': '6.0',\n     'k': 5,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 18, 'points': 600}),\n  ('normal control 4',\n   [{'bb': 1,\n     'bs': False,\n     'er': 5,\n     'h': 7,\n     'hld': True,\n     'ip': '1.0',\n     'k': 3,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': -900})],\n [('regression: innings notation',\n   [{'bb': 2,\n     'bs': False,\n     'er': 2,\n     'h': 6,\n     'hld': True,\n     'ip': '6.2',\n     'k': 4,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 20, 'points': 2300}),\n  ('partial repair probe: innings notation',\n   [{'bb': 4,\n     'bs': False,\n     'er': 2,\n     'h': 0,\n     'hld': True,\n     'ip': '5.2',\n     'k': 6,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 17, 'points': 1800}),\n  ('second regression',\n   [{'bb': 1,\n     'bs': True,\n     'er': 3,\n     'h': 9,\n     'hld': False,\n     'ip': '8.1',\n     'k': 2,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 25, 'points': 1600}),\n  ('normal control 1',\n   [{'bb': 0,\n     'bs': False,\n     'er': 5,\n     'h': 9,\n     'hld': True,\n     'ip': '1.0',\n     'k': 11,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': -200}),\n  ('normal control 2',\n   [{'bb': 2,\n     'bs': False,\n     'er': 3,\n     'h': 3,\n     'hld': False,\n     'ip': '5.0',\n     'k': 10,\n     'l': True,\n     'sv': False,\n     'w': False}],\n   {'outs': 15, 'points': 1100}),\n  ('normal control 3',\n   [{'bb': 2,\n     'bs': False,\n     'er': 0,\n     'h': 3,\n     'hld': False,\n     'ip': '7',\n     'k': 7,\n     'l': False,\n     'sv': True,\n     'w': True}],\n   {'outs': 21, 'points': 3600}),\n  ('normal control 4',\n   [{'bb': 1,\n     'bs': False,\n     'er': 5,\n     'h': 8,\n     'hld': True,\n     'ip': '6.0',\n     'k': 8,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 18, 'points': 1000})],\n [('regression: innings notation',\n   [{'bb': 2,\n     'bs': False,\n     'er': 2,\n     'h': 8,\n     'hld': False,\n     'ip': '0.1',\n     'k': 0,\n     'l': False,\n     'sv': False,\n     'w': True}],\n   {'outs': 1, 'points': -800}),\n  ('partial repair probe: innings notation',\n   [{'bb': 0,\n     'bs': True,\n     'er': 3,\n     'h': 9,\n     'hld': False,\n     'ip': '8.1',\n     'k': 2,\n     'l': True,\n     'sv': True,\n     'w': True}],\n   {'outs': 25, 'points': 1900}),\n  ('second regression',\n   [{'bb': 4,\n     'bs': False,\n     'er': 5,\n     'h': 6,\n     'hld': True,\n     'ip': '6.1',\n     'k': 8,\n     'l': True,\n     'sv': True,\n     'w': False}],\n   {'outs': 19, 'points': 900}),\n  ('normal control 1',\n   [{'bb': 1,\n     'bs': False,\n     'er': 2,\n     'h': 5,\n     'hld': False,\n     'ip': '1.0',\n     'k': 3,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 3, 'points': 100}),\n  ('normal control 2',\n   [{'bb': 2,\n     'bs': False,\n     'er': 3,\n     'h': 7,\n     'hld': True,\n     'ip': '1.0',\n     'k': 11,\n     'l': False,\n     'sv': True,\n     'w': False}],\n   {'outs': 3, 'points': 400}),\n  ('normal control 3',\n   [{'bb': 0,\n     'bs': False,\n     'er': 3,\n     'h': 6,\n     'hld': True,\n     'ip': '1.0',\n     'k': 11,\n     'l': True,\n     'sv': False,\n     'w': False}],\n   {'outs': 3, 'points': 200}),\n  ('normal control 4',\n   [{'bb': 3,\n     'bs': False,\n     'er': 4,\n     'h': 5,\n     'hld': True,\n     'ip': '7',\n     'k': 9,\n     'l': False,\n     'sv': False,\n     'w': False}],\n   {'outs': 21, 'points': 1700})]]\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":"A deterministic toy scoring contract stipulated for this example; it is not the rulebook of any real fantasy platform. 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-fantasy-sports-scoring-pitcher-points-innings-notation","generated_at":"2026-09-29T14:50:37.096480+00:00","license":"CC0-1.0","python":"3.12.14","seed":1,"split":"open-access"},"relevance":"Innings-pitched notation and quality-start edges are recurring baseball fantasy scoring bugs.","root_cause":"The .1/.2 out notation is read as tenths of an inning.","sha256":"bde3ce91478b7bdd4a605f744035dbefe3623bf6fa746f43956696b6f0118863","title":"Innings pitched parsed as a decimal number · case 01","variant":1,"variant_policy":"Five numbered records share a model and may reuse boundary fixtures.","verified":true,"visibility":"public","verification":{"attempt":{"elapsed_ms":38.494,"exit_code":1,"observations":[{"actual":{"outs":15,"points":100},"check":"regression: innings notation","expected":{"outs":17,"points":300},"passed":false},{"actual":{"outs":0,"points":-1300},"check":"partial repair probe: innings notation","expected":{"outs":1,"points":-1200},"passed":false},{"actual":{"outs":18,"points":500},"check":"second regression","expected":{"outs":20,"points":700},"passed":false},{"actual":{"outs":21,"points":2800},"check":"normal control 1","expected":{"outs":21,"points":2800},"passed":true},{"actual":{"outs":3,"points":-600},"check":"normal control 2","expected":{"outs":3,"points":-600},"passed":true},{"actual":{"outs":3,"points":-900},"check":"normal control 3","expected":{"outs":3,"points":-900},"passed":true},{"actual":{"outs":21,"points":2200},"check":"normal control 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-900}, \"passed\": true}, {\"check\": \"normal control 4\", \"actual\": {\"outs\": 21, \"points\": 2200}, \"expected\": {\"outs\": 21, \"points\": 2200}, \"passed\": true}], \"passed\": false}\n"},"broken":{"elapsed_ms":43.889,"exit_code":1,"observations":[{"actual":{"outs":16,"points":200},"check":"regression: innings notation","expected":{"outs":17,"points":300},"passed":false},{"actual":{"outs":0,"points":-1300},"check":"partial repair probe: innings notation","expected":{"outs":1,"points":-1200},"passed":false},{"actual":{"outs":19,"points":600},"check":"second regression","expected":{"outs":20,"points":700},"passed":false},{"actual":{"outs":21,"points":2800},"check":"normal control 1","expected":{"outs":21,"points":2800},"passed":true},{"actual":{"outs":3,"points":-600},"check":"normal control 2","expected":{"outs":3,"points":-600},"passed":true},{"actual":{"outs":3,"points":-900},"check":"normal control 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{\"check\": \"normal control 3\", \"actual\": {\"outs\": 3, \"points\": -900}, \"expected\": {\"outs\": 3, \"points\": -900}, \"passed\": true}, {\"check\": \"normal control 4\", \"actual\": {\"outs\": 21, \"points\": 2200}, \"expected\": {\"outs\": 21, \"points\": 2200}, \"passed\": true}], \"passed\": false}\n"}},"member_only":{"stages":["fixed"],"fields":["implementations.fixed","verification.fixed","harness","repair"],"note":"The verified repair, its recorded checks, the repair description, and the scoring harness are available to members."}}