FA-78696 / Broadcast timecode arithmetic / Open access
Frame-rate descriptor parsing: non-drop suffix · case 01
Explicit NDF descriptors are treated as drop frame.
ROOT CAUSE
Drop frame is detected by the substring DF, which NDF also contains.
VERIFIED REPAIR
Drop frame requires a DF suffix that is not NDF.
Unsuccessful approach: Checking the first character for N never sees the N of an NDF suffix.
Case contract
Parse a rate descriptor: a known rate (23.976, 23.98, 24, 25, 29.97, 30, 50, 59.94, 60; redundant trailing decimal zeros allowed) with an optional case-insensitive DF/NDF suffix, optionally separated by a space or hyphen; surrounding whitespace ignored. Drop frame is only valid for 29.97 and 59.94. Return [num,den,drop] or None.
Why this case matters
Timecode arithmetic errors misplace edits, commercial breaks and captions against the broadcast clock.
1 / The failure
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(s):
t=s.strip().upper()
drop='DF' in t
base=t[:-3] if t.endswith('NDF') else t[:-2] if t.endswith('DF') else t
base=base.rstrip(' -')
if '.' in base:
base=base.rstrip('0').rstrip('.')
table={'23.976':(24000,1001),'23.98':(24000,1001),'24':(24,1),'25':(25,1),'29.97':(30000,1001),'30':(30,1),'50':(50,1),'59.94':(60000,1001),'60':(60,1)}
if base not in table:
return None
num,den=table[base]
if drop and den!=1001 or drop and num==24000:
return None
return [num,den,drop]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[('regression: non-drop suffix', ['29.97 NDF'], [30000, 1001, False]), ('regression variant: non-drop suffix', ['59.94 ndf'], [60000, 1001, False]), ('partial repair probe: non-drop suffix', ['29.970NDF'], [30000, 1001, False]), ('partial repair variant: non-drop suffix', ['30.0 ndf'], [30, 1, False]), ('boundary control', ['29.97DF'], [30000, 1001, True]), ('boundary control', ['59.94-df'], [60000, 1001, True]), ('normal control', ['30DF'], None), ('normal control', ['30.0'], [30, 1, False]), ('normal control', [' 23.98df '], None)], [('regression: non-drop suffix', [' 30 ndf '], [30, 1, False]), ('regression variant: non-drop suffix', [' 23.98-NDF '], [24000, 1001, False]), ('partial repair probe: non-drop suffix', [' 29.97NDF '], [30000, 1001, False]), ('partial repair variant: non-drop suffix', ['24NDF'], [24, 1, False]), ('boundary control', ['30DF'], None), ('boundary control', ['30.0'], [30, 1, False]), ('normal control', [' 25 DF '], None), ('normal control', ['30'], [30, 1, False]), ('normal control', ['31-DF'], None)], [('regression: non-drop suffix', ['29.970NDF'], [30000, 1001, False]), ('regression variant: non-drop suffix', ['30 ndf'], [30, 1, False]), ('partial repair probe: non-drop suffix', ['50 ndf'], [50, 1, False]), ('partial repair variant: non-drop suffix', [' 24-NDF '], [24, 1, False]), ('boundary control', ['23.976'], [24000, 1001, False]), ('boundary control', ['29.97DF'], [30000, 1001, True]), ('normal control', [' 60 '], [60, 1, False]), ('normal control', ['23.976df'], None), ('normal control', [' 24.0DF '], None)], [('regression: non-drop suffix', [' 29.97NDF '], [30000, 1001, False]), ('regression variant: non-drop suffix', ['30NDF'], [30, 1, False]), ('partial repair probe: non-drop suffix', ['59.94 ndf'], [60000, 1001, False]), ('partial repair variant: non-drop suffix', [' 60-NDF '], [60, 1, False]), ('boundary control', ['59.94-df'], [60000, 1001, True]), ('boundary control', ['30DF'], None), ('normal control', [' 29.970 '], [30000, 1001, False]), ('normal control', [' 29.97df '], [30000, 1001, True]), ('normal control', ['25.00'], [25, 1, False])], [('regression: non-drop suffix', ['50 ndf'], [50, 1, False]), ('regression variant: non-drop suffix', ['30.0 ndf'], [30, 1, False]), ('partial repair probe: non-drop suffix', [' 23.98-NDF '], [24000, 1001, False]), ('partial repair variant: non-drop suffix', ['60NDF'], [60, 1, False]), ('boundary control', ['30.0'], [30, 1, False]), ('boundary control', ['23.976'], [24000, 1001, False]), ('normal control', [' 59.94-DF '], [60000, 1001, True]), ('normal control', [' 29.970 DF '], [30000, 1001, True]), ('normal control', [' 25 '], [25, 1, False])]]
for label, args, expected in fixtures[N-1]:
check(label, solve(*args), expected)
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 |
|---|---|---|---|
| regression: non-drop suffix | [30000, 1001, True] | [30000, 1001, False] | Failed |
| regression variant: non-drop suffix | [60000, 1001, True] | [60000, 1001, False] | Failed |
| partial repair probe: non-drop suffix | [30000, 1001, True] | [30000, 1001, False] | Failed |
| partial repair variant: non-drop suffix | None | [30, 1, False] | Failed |
| boundary control | [30000, 1001, True] | [30000, 1001, True] | Passed |
| boundary control | [60000, 1001, True] | [60000, 1001, True] | Passed |
| normal control | None | None | Passed |
| normal control | [30, 1, False] | [30, 1, False] | Passed |
| normal control | None | None | Passed |
SHA-256 / 6721e1271727d7dbc7d1c44ab8bc1388bf305e860acffab496507a5628f749a7
2 / The unsuccessful fix
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(s):
t=s.strip().upper()
drop=t.endswith('DF') and not t.startswith('N')
base=t[:-3] if t.endswith('NDF') else t[:-2] if t.endswith('DF') else t
base=base.rstrip(' -')
if '.' in base:
base=base.rstrip('0').rstrip('.')
table={'23.976':(24000,1001),'23.98':(24000,1001),'24':(24,1),'25':(25,1),'29.97':(30000,1001),'30':(30,1),'50':(50,1),'59.94':(60000,1001),'60':(60,1)}
if base not in table:
return None
num,den=table[base]
if drop and den!=1001 or drop and num==24000:
return None
return [num,den,drop]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[('regression: non-drop suffix', ['29.97 NDF'], [30000, 1001, False]), ('regression variant: non-drop suffix', ['59.94 ndf'], [60000, 1001, False]), ('partial repair probe: non-drop suffix', ['29.970NDF'], [30000, 1001, False]), ('partial repair variant: non-drop suffix', ['30.0 ndf'], [30, 1, False]), ('boundary control', ['29.97DF'], [30000, 1001, True]), ('boundary control', ['59.94-df'], [60000, 1001, True]), ('normal control', ['30DF'], None), ('normal control', ['30.0'], [30, 1, False]), ('normal control', [' 23.98df '], None)], [('regression: non-drop suffix', [' 30 ndf '], [30, 1, False]), ('regression variant: non-drop suffix', [' 23.98-NDF '], [24000, 1001, False]), ('partial repair probe: non-drop suffix', [' 29.97NDF '], [30000, 1001, False]), ('partial repair variant: non-drop suffix', ['24NDF'], [24, 1, False]), ('boundary control', ['30DF'], None), ('boundary control', ['30.0'], [30, 1, False]), ('normal control', [' 25 DF '], None), ('normal control', ['30'], [30, 1, False]), ('normal control', ['31-DF'], None)], [('regression: non-drop suffix', ['29.970NDF'], [30000, 1001, False]), ('regression variant: non-drop suffix', ['30 ndf'], [30, 1, False]), ('partial repair probe: non-drop suffix', ['50 ndf'], [50, 1, False]), ('partial repair variant: non-drop suffix', [' 24-NDF '], [24, 1, False]), ('boundary control', ['23.976'], [24000, 1001, False]), ('boundary control', ['29.97DF'], [30000, 1001, True]), ('normal control', [' 60 '], [60, 1, False]), ('normal control', ['23.976df'], None), ('normal control', [' 24.0DF '], None)], [('regression: non-drop suffix', [' 29.97NDF '], [30000, 1001, False]), ('regression variant: non-drop suffix', ['30NDF'], [30, 1, False]), ('partial repair probe: non-drop suffix', ['59.94 ndf'], [60000, 1001, False]), ('partial repair variant: non-drop suffix', [' 60-NDF '], [60, 1, False]), ('boundary control', ['59.94-df'], [60000, 1001, True]), ('boundary control', ['30DF'], None), ('normal control', [' 29.970 '], [30000, 1001, False]), ('normal control', [' 29.97df '], [30000, 1001, True]), ('normal control', ['25.00'], [25, 1, False])], [('regression: non-drop suffix', ['50 ndf'], [50, 1, False]), ('regression variant: non-drop suffix', ['30.0 ndf'], [30, 1, False]), ('partial repair probe: non-drop suffix', [' 23.98-NDF '], [24000, 1001, False]), ('partial repair variant: non-drop suffix', ['60NDF'], [60, 1, False]), ('boundary control', ['30.0'], [30, 1, False]), ('boundary control', ['23.976'], [24000, 1001, False]), ('normal control', [' 59.94-DF '], [60000, 1001, True]), ('normal control', [' 29.970 DF '], [30000, 1001, True]), ('normal control', [' 25 '], [25, 1, False])]]
for label, args, expected in fixtures[N-1]:
check(label, solve(*args), expected)
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 |
|---|---|---|---|
| regression: non-drop suffix | [30000, 1001, True] | [30000, 1001, False] | Failed |
| regression variant: non-drop suffix | [60000, 1001, True] | [60000, 1001, False] | Failed |
| partial repair probe: non-drop suffix | [30000, 1001, True] | [30000, 1001, False] | Failed |
| partial repair variant: non-drop suffix | None | [30, 1, False] | Failed |
| boundary control | [30000, 1001, True] | [30000, 1001, True] | Passed |
| boundary control | [60000, 1001, True] | [60000, 1001, True] | Passed |
| normal control | None | None | Passed |
| normal control | [30, 1, False] | [30, 1, False] | Passed |
| normal control | None | None | Passed |
SHA-256 / c4a770419cf0717168e14e6f37d63d32baea4b9ac66c2aa5b6adfd0a49f83a91
3 / The verified repair
Exit 0"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(s):
t=s.strip().upper()
drop=t.endswith('DF') and not t.endswith('NDF')
base=t[:-3] if t.endswith('NDF') else t[:-2] if t.endswith('DF') else t
base=base.rstrip(' -')
if '.' in base:
base=base.rstrip('0').rstrip('.')
table={'23.976':(24000,1001),'23.98':(24000,1001),'24':(24,1),'25':(25,1),'29.97':(30000,1001),'30':(30,1),'50':(50,1),'59.94':(60000,1001),'60':(60,1)}
if base not in table:
return None
num,den=table[base]
if drop and den!=1001 or drop and num==24000:
return None
return [num,den,drop]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[('regression: non-drop suffix', ['29.97 NDF'], [30000, 1001, False]), ('regression variant: non-drop suffix', ['59.94 ndf'], [60000, 1001, False]), ('partial repair probe: non-drop suffix', ['29.970NDF'], [30000, 1001, False]), ('partial repair variant: non-drop suffix', ['30.0 ndf'], [30, 1, False]), ('boundary control', ['29.97DF'], [30000, 1001, True]), ('boundary control', ['59.94-df'], [60000, 1001, True]), ('normal control', ['30DF'], None), ('normal control', ['30.0'], [30, 1, False]), ('normal control', [' 23.98df '], None)], [('regression: non-drop suffix', [' 30 ndf '], [30, 1, False]), ('regression variant: non-drop suffix', [' 23.98-NDF '], [24000, 1001, False]), ('partial repair probe: non-drop suffix', [' 29.97NDF '], [30000, 1001, False]), ('partial repair variant: non-drop suffix', ['24NDF'], [24, 1, False]), ('boundary control', ['30DF'], None), ('boundary control', ['30.0'], [30, 1, False]), ('normal control', [' 25 DF '], None), ('normal control', ['30'], [30, 1, False]), ('normal control', ['31-DF'], None)], [('regression: non-drop suffix', ['29.970NDF'], [30000, 1001, False]), ('regression variant: non-drop suffix', ['30 ndf'], [30, 1, False]), ('partial repair probe: non-drop suffix', ['50 ndf'], [50, 1, False]), ('partial repair variant: non-drop suffix', [' 24-NDF '], [24, 1, False]), ('boundary control', ['23.976'], [24000, 1001, False]), ('boundary control', ['29.97DF'], [30000, 1001, True]), ('normal control', [' 60 '], [60, 1, False]), ('normal control', ['23.976df'], None), ('normal control', [' 24.0DF '], None)], [('regression: non-drop suffix', [' 29.97NDF '], [30000, 1001, False]), ('regression variant: non-drop suffix', ['30NDF'], [30, 1, False]), ('partial repair probe: non-drop suffix', ['59.94 ndf'], [60000, 1001, False]), ('partial repair variant: non-drop suffix', [' 60-NDF '], [60, 1, False]), ('boundary control', ['59.94-df'], [60000, 1001, True]), ('boundary control', ['30DF'], None), ('normal control', [' 29.970 '], [30000, 1001, False]), ('normal control', [' 29.97df '], [30000, 1001, True]), ('normal control', ['25.00'], [25, 1, False])], [('regression: non-drop suffix', ['50 ndf'], [50, 1, False]), ('regression variant: non-drop suffix', ['30.0 ndf'], [30, 1, False]), ('partial repair probe: non-drop suffix', [' 23.98-NDF '], [24000, 1001, False]), ('partial repair variant: non-drop suffix', ['60NDF'], [60, 1, False]), ('boundary control', ['30.0'], [30, 1, False]), ('boundary control', ['23.976'], [24000, 1001, False]), ('normal control', [' 59.94-DF '], [60000, 1001, True]), ('normal control', [' 29.970 DF '], [30000, 1001, True]), ('normal control', [' 25 '], [25, 1, False])]]
for label, args, expected in fixtures[N-1]:
check(label, solve(*args), expected)
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 |
|---|---|---|---|
| regression: non-drop suffix | [30000, 1001, False] | [30000, 1001, False] | Passed |
| regression variant: non-drop suffix | [60000, 1001, False] | [60000, 1001, False] | Passed |
| partial repair probe: non-drop suffix | [30000, 1001, False] | [30000, 1001, False] | Passed |
| partial repair variant: non-drop suffix | [30, 1, False] | [30, 1, False] | Passed |
| boundary control | [30000, 1001, True] | [30000, 1001, True] | Passed |
| boundary control | [60000, 1001, True] | [60000, 1001, True] | Passed |
| normal control | None | None | Passed |
| normal control | [30, 1, False] | [30, 1, False] | Passed |
| normal control | None | None | Passed |
SHA-256 / b88d4f33fe544a0e45ba0f552f670818cfa593451faf9ad39a492ed52655be4f
Verification & scope
A deterministic bounded teaching model with a stipulated toy contract; it does not claim conformance to SMPTE or any broadcast standard. 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 2026-09-29T14:49:37.924005+00:00.
Case digest / 7e12483f92c2205e5786438be47fa57b3e29259a225f7644b92fc802da14bdfd