{"abstract":"A truncated GTIN followed by a separator parses as a GTIN containing GS and shifts every later field.","category":"Barcode symbology encoding","checks":8,"contract":"Parse scanner output of a GS1-128 symbol: it must start with the symbology identifier \"]C1\"; FNC1 separators arrive as GS (0x1D) and redundant separators are skipped. AIs are recognised by the shortest matching prefix among the predefined fixed-length AIs (00:18, 01/02:14, 11/13/15/17:6, 3103:6) and variable AIs (10/21 max 20, 30/37 max 8, 400 max 30). A fixed field must be complete and contain no GS; a variable field runs to the next GS or the end and must have 1..max characters. Return [[ai, value], ...] or an error.","evaluation_group":"w2-barcode-symbology-encoding-gs1-scan-parse","failed_approach":"Checking only the last character misses a separator in the middle.","family":"w2-barcode-symbology-encoding-gs1-scan-parse-fixed-contains-gs","id":"FA-79616","implementations":{"attempt":{"sha256":"49d89fd1b9a5382f6d43827f222e06b93f6e61e2c607b47f1630f261cb6b1410","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(s):\n    fixed_len = {'00': 18, '01': 14, '02': 14, '11': 6, '13': 6, '15': 6, '17': 6, '3103': 6}\n    var_max = {'10': 20, '21': 20, '30': 8, '37': 8, '400': 30}\n    if not s.startswith(']C1'):\n        return {'error': 'not-gs1'}\n    i = 3\n    out = []\n    while i < len(s):\n        if s[i] == '\\x1d':\n            i += 1\n            continue\n        ai = None\n        for L in (2, 3, 4):\n            if s[i:i + L] in fixed_len or s[i:i + L] in var_max:\n                ai = s[i:i + L]\n                break\n        if ai is None:\n            return {'error': 'unknown-ai', 'at': i}\n        i += len(ai)\n        if ai in fixed_len:\n            n = fixed_len[ai]\n            val = s[i:i + n]\n            if len(val) != n or val.endswith('\\x1d'):\n                return {'error': 'short', 'ai': ai}\n            i += n\n        else:\n            j = s.find('\\x1d', i)\n            if j == -1:\n                j = len(s)\n            val = s[i:j]\n            if not 1 <= len(val) <= var_max[ai]:\n                return {'error': 'length', 'ai': ai}\n            i = j\n        out.append([ai, val])\n    return out\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[[']C101000170614774\\x1d302\\x1d310351684717', {'error': 'short', 'ai': '01'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C011400783', {'error': 'not-gs1'}], [']C03019\\x1d10B9', {'error': 'not-gs1'}], [']C117140648306\\x1d0141294680397442\\x1d', [['17', '140648'], ['30', '6'], ['01', '41294680397442']]], [']d221B-1BA9-B\\x1d219X91//1X9-/1A-C\\x1d10BBCB1-9/-/9//-/BC1-A-X\\x1d21/ABXAX9C-CC/-\\x1d', {'error': 'not-gs1'}], [']C0\\x1d3028612956', {'error': 'not-gs1'}], [']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}]], [[']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C04009\\x1d10X-CXA1/X\\x1d310311958730', {'error': 'not-gs1'}], [']C10044603095506351280311060380310300579483495402726338', {'error': 'unknown-ai', 'at': 41}], [']d211029205\\x1d01139908024073283027281846\\x1d10-X9C\\x1d', {'error': 'not-gs1'}], [']C1310361473240011XBBC-1-CX1B-\\x1d371255\\x1d219X9B-C/', [['3103', '614732'], ['400', '11XBBC-1-CX1B-'], ['37', '1255'], ['21', '9X9B-C/']]], [']C030473952263\\x1d375323374', {'error': 'not-gs1'}], [']C137186\\x1d4001AC/BA9/1CB/X/A1XC\\x1d0176580975297815\\x1d377740072\\x1d', [['37', '186'], ['400', '1AC/BA9/1CB/X/A1XC'], ['01', '76580975297815'], ['37', '7740072']]]], [[']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}], [']C111990558117862\\x1d10X-11\\x1d0141668383672539', {'error': 'short', 'ai': '11'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C111362276', [['11', '362276']]], [']C121C-\\x1d3103238166', [['21', 'C-'], ['3103', '238166']]], [']C121-/1-X-9B\\x1d17420369015026678280984317842704\\x1d', [['21', '-/1-X-9B'], ['17', '420369'], ['01', '50266782809843'], ['17', '842704']]], [']d2002942508545382808993103171446', {'error': 'not-gs1'}], [']d230902446359', {'error': 'not-gs1'}]], [[']C13781653\\x1d211/BCXC9C99BX9-\\x1d17\\x1d10C1--9AA/9X9XB1B/B1A', {'error': 'short', 'ai': '17'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C11100096530067\\x1d17348048', [['11', '000965'], ['30', '067'], ['17', '348048']]], [']C1211\\x1d400/B-\\x1d3067920\\x1d', [['21', '1'], ['400', '/B-'], ['30', '67920']]], [']C1211CXX-B1B9XXX-/', [['21', '1CXX-B1B9XXX-/']]], [']C1308705431', [['30', '8705431']]], [']C010/ACC1C1C/9\\x1d109\\x1d00997634519263772689', {'error': 'not-gs1'}], [']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}]], [[']C1\\x1d17\\x1d10A9A/-X/C/C1\\x1d310336266817484500', {'error': 'short', 'ai': '17'}], [']C1003768967\\x1d37189245560\\x1d11863910', {'error': 'short', 'ai': '00'}], [']C037218164131\\x1d017878870121363103882288', {'error': 'not-gs1'}], [']C10109147699409412219X9/BACAA-C1/9X19-B\\x1d21/\\x1d17759960', [['01', '09147699409412'], ['21', '9X9/BACAA-C1/9X19-B'], ['21', '/'], ['17', '759960']]], [']C01109918000653062932206451941', {'error': 'not-gs1'}], [']C017335622\\x1d10/A/1X9\\x1d1019911-1X/1B1/C-B\\x1d400AX/C', {'error': 'not-gs1'}], [']C121BCAB-C9CCX1/9X/CCX/1-A\\x1d3103050801250114151498', {'error': 'length', 'ai': '21'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}]]]\nlabels = [\"regression: separator inside a fixed field\", \"repair trap\", \"combined fault\", \"control\", \"control\", \"boundary\", \"boundary\", \"control\"]\nfor i, (args, expected) in enumerate(fixtures[N-1]):\n    check(\"%s %d\" % (labels[i % len(labels)], i), 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":"63be5af48c0d51c7d019d58d35057afbb25682ca5c5f4b825588c8b17045464f","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(s):\n    fixed_len = {'00': 18, '01': 14, '02': 14, '11': 6, '13': 6, '15': 6, '17': 6, '3103': 6}\n    var_max = {'10': 20, '21': 20, '30': 8, '37': 8, '400': 30}\n    if not s.startswith(']C1'):\n        return {'error': 'not-gs1'}\n    i = 3\n    out = []\n    while i < len(s):\n        if s[i] == '\\x1d':\n            i += 1\n            continue\n        ai = None\n        for L in (2, 3, 4):\n            if s[i:i + L] in fixed_len or s[i:i + L] in var_max:\n                ai = s[i:i + L]\n                break\n        if ai is None:\n            return {'error': 'unknown-ai', 'at': i}\n        i += len(ai)\n        if ai in fixed_len:\n            n = fixed_len[ai]\n            val = s[i:i + n]\n            if len(val) != n:\n                return {'error': 'short', 'ai': ai}\n            i += n\n        else:\n            j = s.find('\\x1d', i)\n            if j == -1:\n                j = len(s)\n            val = s[i:j]\n            if not 1 <= len(val) <= var_max[ai]:\n                return {'error': 'length', 'ai': ai}\n            i = j\n        out.append([ai, val])\n    return out\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[[']C101000170614774\\x1d302\\x1d310351684717', {'error': 'short', 'ai': '01'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C011400783', {'error': 'not-gs1'}], [']C03019\\x1d10B9', {'error': 'not-gs1'}], [']C117140648306\\x1d0141294680397442\\x1d', [['17', '140648'], ['30', '6'], ['01', '41294680397442']]], [']d221B-1BA9-B\\x1d219X91//1X9-/1A-C\\x1d10BBCB1-9/-/9//-/BC1-A-X\\x1d21/ABXAX9C-CC/-\\x1d', {'error': 'not-gs1'}], [']C0\\x1d3028612956', {'error': 'not-gs1'}], [']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}]], [[']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C04009\\x1d10X-CXA1/X\\x1d310311958730', {'error': 'not-gs1'}], [']C10044603095506351280311060380310300579483495402726338', {'error': 'unknown-ai', 'at': 41}], [']d211029205\\x1d01139908024073283027281846\\x1d10-X9C\\x1d', {'error': 'not-gs1'}], [']C1310361473240011XBBC-1-CX1B-\\x1d371255\\x1d219X9B-C/', [['3103', '614732'], ['400', '11XBBC-1-CX1B-'], ['37', '1255'], ['21', '9X9B-C/']]], [']C030473952263\\x1d375323374', {'error': 'not-gs1'}], [']C137186\\x1d4001AC/BA9/1CB/X/A1XC\\x1d0176580975297815\\x1d377740072\\x1d', [['37', '186'], ['400', '1AC/BA9/1CB/X/A1XC'], ['01', '76580975297815'], ['37', '7740072']]]], [[']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}], [']C111990558117862\\x1d10X-11\\x1d0141668383672539', {'error': 'short', 'ai': '11'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C111362276', [['11', '362276']]], [']C121C-\\x1d3103238166', [['21', 'C-'], ['3103', '238166']]], [']C121-/1-X-9B\\x1d17420369015026678280984317842704\\x1d', [['21', '-/1-X-9B'], ['17', '420369'], ['01', '50266782809843'], ['17', '842704']]], [']d2002942508545382808993103171446', {'error': 'not-gs1'}], [']d230902446359', {'error': 'not-gs1'}]], [[']C13781653\\x1d211/BCXC9C99BX9-\\x1d17\\x1d10C1--9AA/9X9XB1B/B1A', {'error': 'short', 'ai': '17'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C11100096530067\\x1d17348048', [['11', '000965'], ['30', '067'], ['17', '348048']]], [']C1211\\x1d400/B-\\x1d3067920\\x1d', [['21', '1'], ['400', '/B-'], ['30', '67920']]], [']C1211CXX-B1B9XXX-/', [['21', '1CXX-B1B9XXX-/']]], [']C1308705431', [['30', '8705431']]], [']C010/ACC1C1C/9\\x1d109\\x1d00997634519263772689', {'error': 'not-gs1'}], [']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}]], [[']C1\\x1d17\\x1d10A9A/-X/C/C1\\x1d310336266817484500', {'error': 'short', 'ai': '17'}], [']C1003768967\\x1d37189245560\\x1d11863910', {'error': 'short', 'ai': '00'}], [']C037218164131\\x1d017878870121363103882288', {'error': 'not-gs1'}], [']C10109147699409412219X9/BACAA-C1/9X19-B\\x1d21/\\x1d17759960', [['01', '09147699409412'], ['21', '9X9/BACAA-C1/9X19-B'], ['21', '/'], ['17', '759960']]], [']C01109918000653062932206451941', {'error': 'not-gs1'}], [']C017335622\\x1d10/A/1X9\\x1d1019911-1X/1B1/C-B\\x1d400AX/C', {'error': 'not-gs1'}], [']C121BCAB-C9CCX1/9X/CCX/1-A\\x1d3103050801250114151498', {'error': 'length', 'ai': '21'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}]]]\nlabels = [\"regression: separator inside a fixed field\", \"repair trap\", \"combined fault\", \"control\", \"control\", \"boundary\", \"boundary\", \"control\"]\nfor i, (args, expected) in enumerate(fixtures[N-1]):\n    check(\"%s %d\" % (labels[i % len(labels)], i), 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":"bfb72e3530005669a7923e31dfb06bf616b1131bc03761cc62588e482d794192","source":"\"\"\"Failure Map reference implementation. Python standard library only.\"\"\"\nimport json\n\nN = 1\nobservations = []\ndef solve(s):\n    fixed_len = {'00': 18, '01': 14, '02': 14, '11': 6, '13': 6, '15': 6, '17': 6, '3103': 6}\n    var_max = {'10': 20, '21': 20, '30': 8, '37': 8, '400': 30}\n    if not s.startswith(']C1'):\n        return {'error': 'not-gs1'}\n    i = 3\n    out = []\n    while i < len(s):\n        if s[i] == '\\x1d':\n            i += 1\n            continue\n        ai = None\n        for L in (2, 3, 4):\n            if s[i:i + L] in fixed_len or s[i:i + L] in var_max:\n                ai = s[i:i + L]\n                break\n        if ai is None:\n            return {'error': 'unknown-ai', 'at': i}\n        i += len(ai)\n        if ai in fixed_len:\n            n = fixed_len[ai]\n            val = s[i:i + n]\n            if len(val) != n or '\\x1d' in val:\n                return {'error': 'short', 'ai': ai}\n            i += n\n        else:\n            j = s.find('\\x1d', i)\n            if j == -1:\n                j = len(s)\n            val = s[i:j]\n            if not 1 <= len(val) <= var_max[ai]:\n                return {'error': 'length', 'ai': ai}\n            i = j\n        out.append([ai, val])\n    return out\ndef check(label, actual, expected):\n    observations.append({\"check\": label, \"actual\": actual, \"expected\": expected, \"passed\": actual == expected})\nfixtures = [[[']C101000170614774\\x1d302\\x1d310351684717', {'error': 'short', 'ai': '01'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C011400783', {'error': 'not-gs1'}], [']C03019\\x1d10B9', {'error': 'not-gs1'}], [']C117140648306\\x1d0141294680397442\\x1d', [['17', '140648'], ['30', '6'], ['01', '41294680397442']]], [']d221B-1BA9-B\\x1d219X91//1X9-/1A-C\\x1d10BBCB1-9/-/9//-/BC1-A-X\\x1d21/ABXAX9C-CC/-\\x1d', {'error': 'not-gs1'}], [']C0\\x1d3028612956', {'error': 'not-gs1'}], [']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}]], [[']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C04009\\x1d10X-CXA1/X\\x1d310311958730', {'error': 'not-gs1'}], [']C10044603095506351280311060380310300579483495402726338', {'error': 'unknown-ai', 'at': 41}], [']d211029205\\x1d01139908024073283027281846\\x1d10-X9C\\x1d', {'error': 'not-gs1'}], [']C1310361473240011XBBC-1-CX1B-\\x1d371255\\x1d219X9B-C/', [['3103', '614732'], ['400', '11XBBC-1-CX1B-'], ['37', '1255'], ['21', '9X9B-C/']]], [']C030473952263\\x1d375323374', {'error': 'not-gs1'}], [']C137186\\x1d4001AC/BA9/1CB/X/A1XC\\x1d0176580975297815\\x1d377740072\\x1d', [['37', '186'], ['400', '1AC/BA9/1CB/X/A1XC'], ['01', '76580975297815'], ['37', '7740072']]]], [[']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}], [']C111990558117862\\x1d10X-11\\x1d0141668383672539', {'error': 'short', 'ai': '11'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C111362276', [['11', '362276']]], [']C121C-\\x1d3103238166', [['21', 'C-'], ['3103', '238166']]], [']C121-/1-X-9B\\x1d17420369015026678280984317842704\\x1d', [['21', '-/1-X-9B'], ['17', '420369'], ['01', '50266782809843'], ['17', '842704']]], [']d2002942508545382808993103171446', {'error': 'not-gs1'}], [']d230902446359', {'error': 'not-gs1'}]], [[']C13781653\\x1d211/BCXC9C99BX9-\\x1d17\\x1d10C1--9AA/9X9XB1B/B1A', {'error': 'short', 'ai': '17'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}], [']C11100096530067\\x1d17348048', [['11', '000965'], ['30', '067'], ['17', '348048']]], [']C1211\\x1d400/B-\\x1d3067920\\x1d', [['21', '1'], ['400', '/B-'], ['30', '67920']]], [']C1211CXX-B1B9XXX-/', [['21', '1CXX-B1B9XXX-/']]], [']C1308705431', [['30', '8705431']]], [']C010/ACC1C1C/9\\x1d109\\x1d00997634519263772689', {'error': 'not-gs1'}], [']C11724010\\x1d10A', {'error': 'short', 'ai': '17'}]], [[']C1\\x1d17\\x1d10A9A/-X/C/C1\\x1d310336266817484500', {'error': 'short', 'ai': '17'}], [']C1003768967\\x1d37189245560\\x1d11863910', {'error': 'short', 'ai': '00'}], [']C037218164131\\x1d017878870121363103882288', {'error': 'not-gs1'}], [']C10109147699409412219X9/BACAA-C1/9X19-B\\x1d21/\\x1d17759960', [['01', '09147699409412'], ['21', '9X9/BACAA-C1/9X19-B'], ['21', '/'], ['17', '759960']]], [']C01109918000653062932206451941', {'error': 'not-gs1'}], [']C017335622\\x1d10/A/1X9\\x1d1019911-1X/1B1/C-B\\x1d400AX/C', {'error': 'not-gs1'}], [']C121BCAB-C9CCX1/9X/CCX/1-A\\x1d3103050801250114151498', {'error': 'length', 'ai': '21'}], [']C1011234567\\x1d10ABCDEFG', {'error': 'short', 'ai': '01'}]]]\nlabels = [\"regression: separator inside a fixed field\", \"repair trap\", \"combined fault\", \"control\", \"control\", \"boundary\", \"boundary\", \"control\"]\nfor i, (args, expected) in enumerate(fixtures[N-1]):\n    check(\"%s %d\" % (labels[i % len(labels)], i), 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 bounded teaching model with a stipulated contract; it makes no claim of conformance to any published specification. 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-barcode-symbology-encoding-gs1-scan-parse-fixed-contains-gs","generated_at":"2026-09-29T14:49:46.266308+00:00","license":"CC0-1.0","python":"3.12.14","seed":1,"split":"open-access"},"relevance":"Retail, logistics, pharmacy and document workflows depend on encoders that produce exactly the module pattern, code-set switches, separators and quiet zones scanners expect; one misplaced module or separator makes a label unreadable or, worse, scan as different data.","repair":"Reject a fixed field that contains GS.","root_cause":"Fixed-length values are only length-checked, so a premature separator is consumed as data.","sha256":"b26ee5b1cac920937124aa067aaea335dc0bb5c109204fbba054a4b053b22cd2","title":"Fixed-length field swallows a separator · case 01","variant":1,"variant_policy":"Five numbered records share a model and may reuse boundary fixtures.","verification":{"attempt":{"elapsed_ms":38.525,"exit_code":1,"observations":[{"actual":{"ai":"02","error":"short"},"check":"regression: separator inside a fixed field 0","expected":{"ai":"01","error":"short"},"passed":false},{"actual":{"at":19,"error":"unknown-ai"},"check":"repair trap 1","expected":{"ai":"01","error":"short"},"passed":false},{"actual":{"error":"not-gs1"},"check":"combined fault 2","expected":{"error":"not-gs1"},"passed":true},{"actual":{"error":"not-gs1"},"check":"control 3","expected":{"error":"not-gs1"},"passed":true},{"actual":[["17","140648"],["30","6"],["01","41294680397442"]],"check":"control 4","expected":[["17","140648"],["30","6"],["01","41294680397442"]],"passed":true},{"actual":{"error":"not-gs1"},"check":"boundary 5","expected":{"error":"not-gs1"},"passed":true},{"actual":{"error":"not-gs1"},"check":"boundary 6","expected":{"error":"not-gs1"},"passed":true},{"actual":{"ai":"17","error":"short"},"check":"control 7","expected":{"ai":"17","error":"short"},"passed":true}],"passed":false,"stderr":"","stdout":"{\"observations\": [{\"check\": \"regression: separator inside a fixed field 0\", \"actual\": {\"error\": \"short\", \"ai\": \"02\"}, \"expected\": {\"error\": \"short\", \"ai\": \"01\"}, \"passed\": false}, {\"check\": \"repair trap 1\", \"actual\": {\"error\": \"unknown-ai\", \"at\": 19}, \"expected\": {\"error\": \"short\", \"ai\": \"01\"}, \"passed\": false}, {\"check\": \"combined fault 2\", \"actual\": {\"error\": \"not-gs1\"}, \"expected\": {\"error\": \"not-gs1\"}, \"passed\": true}, {\"check\": \"control 3\", \"actual\": {\"error\": \"not-gs1\"}, \"expected\": {\"error\": \"not-gs1\"}, \"passed\": true}, {\"check\": \"control 4\", \"actual\": [[\"17\", \"140648\"], [\"30\", \"6\"], 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