FA-27141 / HTTP ranges / Open access
A multipart sender resumes framing and payload segments across transport credit windows: finishing a segment advances exactly one framing component · case 01
A multipart sender resumes framing and payload segments across transport credit windows: finishing a segment advances exactly one framing component.
ROOT CAUSE
The multipart-write-cursor-segment-advance decision uses segments=x['segments'] index=0 offset=0 out=[] for budget in x['budgets']: sent='' while index<len(segments): segment=segments[index] if offset>=len(segment): index+=2 offset=0 continue if budget==0: break amount=min(budget,len(segment)-offset) sent+=segment[offset:offset+amount] offset+=amount budget-=amount out.append(sent) return [out,index,offset].
VERIFIED REPAIR
Apply the bounded decision exactly: segments=x['segments'] index=0 offset=0 out=[] for budget in x['budgets']: sent='' while index<len(segments): segment=segments[index] if offset>=len(segment): index+=1 offset=0 continue if budget==0: break amount=min(budget,len(segment)-offset) sent+=segment[offset:offset+amount] offset+=amount budget-=amount out.append(sent) return [out,index,offset]
Unsuccessful approach: The partial repair uses segments=x['segments'] index=0 offset=0 out=[] for budget in x['budgets']: sent='' while index<len(segments): segment=segments[index] if offset>=len(segment): index+=1 if segment else 2 offset=0 continue if budget==0: break amount=min(budget,len(segment)-offset) sent+=segment[offset:offset+amount] offset+=amount budget-=amount out.append(sent) return [out,index,offset], which still violates the stated contract.
Case contract
x has nonempty ASCII segments representing alternating boundary/header/body/framing bytes, and nonnegative write budgets. Drain in order, consuming each budget across segment boundaries. Return [one emitted string per budget,segment-index,intra-segment-offset]. Empty segments are skipped even with zero budget. A exhausted plan is stable. These preframed segments isolate cursor management from wire-format construction.
Why this case matters
Range responses combine representation identity, conditional requests, framing, and partial-object state.
1 / The failure
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
segments=x['segments']
index=0
offset=0
out=[]
for budget in x['budgets']:
sent=''
while index<len(segments):
segment=segments[index]
if offset>=len(segment):
index+=2
offset=0
continue
if budget==0: break
amount=min(budget,len(segment)-offset)
sent+=segment[offset:offset+amount]
offset+=amount
budget-=amount
out.append(sent)
return [out,index,offset]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
check('segment-advance fixture 0', json.loads(json.dumps(solve({'segments':['--b','H','BODY','\r\n'],'budgets':[2,2,3,3]}))), json.loads(json.dumps([['--','bH','BOD','Y\r\n'],4,0])))
check('segment-advance fixture 1', json.loads(json.dumps(solve({'segments':['A','BC'],'budgets':[1,0,1,1,1]}))), json.loads(json.dumps([['A','','B','C',''],2,0])))
check('segment-advance fixture 2', json.loads(json.dumps(solve({'segments':['','A','','BC',''],'budgets':[0,2,1]}))), json.loads(json.dumps([['','AB','C'],5,0])))
check('segment-advance fixture 3', json.loads(json.dumps(solve({'segments':[],'budgets':[0,1]}))), json.loads(json.dumps([['',''],0,0])))
check('segment-advance fixture 4', json.loads(json.dumps(solve({'segments':['ABCDE'],'budgets':[2,1]}))), json.loads(json.dumps([['AB','C'],0,3])))
check('segment-advance fixture 5', json.loads(json.dumps(solve({'segments':["p"*N,'X'],'budgets':[N,1]}))), json.loads(json.dumps([["p"*N,'X'],2,0])))
check('segment-advance fixture 6', json.loads(json.dumps(solve({'segments':['AB','CDE'],'budgets':[4]}))), json.loads(json.dumps([['ABCD'],1,2])))
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 |
|---|---|---|---|
| segment-advance fixture 0 | [['--', 'bB', 'ODY', ''], 4, 0] | [['--', 'bH', 'BOD', 'Y\r\n'], 4, 0] | Failed |
| segment-advance fixture 1 | [['A', '', '', '', ''], 2, 0] | [['A', '', 'B', 'C', ''], 2, 0] | Failed |
| segment-advance fixture 2 | [['', '', ''], 6, 0] | [['', 'AB', 'C'], 5, 0] | Failed |
| segment-advance fixture 3 | [['', ''], 0, 0] | [['', ''], 0, 0] | Passed |
| segment-advance fixture 4 | [['AB', 'C'], 0, 3] | [['AB', 'C'], 0, 3] | Passed |
| segment-advance fixture 5 | [['p', ''], 2, 0] | [['p', 'X'], 2, 0] | Failed |
| segment-advance fixture 6 | [['AB'], 2, 0] | [['ABCD'], 1, 2] | Failed |
SHA-256 / a92aebf46b7fcc3ed84af545ac2b45ce04d4f98b3c9ff7b6bfb4226d7f8c4894
2 / The unsuccessful fix
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
segments=x['segments']
index=0
offset=0
out=[]
for budget in x['budgets']:
sent=''
while index<len(segments):
segment=segments[index]
if offset>=len(segment):
index+=1 if segment else 2
offset=0
continue
if budget==0: break
amount=min(budget,len(segment)-offset)
sent+=segment[offset:offset+amount]
offset+=amount
budget-=amount
out.append(sent)
return [out,index,offset]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
check('segment-advance fixture 0', json.loads(json.dumps(solve({'segments':['--b','H','BODY','\r\n'],'budgets':[2,2,3,3]}))), json.loads(json.dumps([['--','bH','BOD','Y\r\n'],4,0])))
check('segment-advance fixture 1', json.loads(json.dumps(solve({'segments':['A','BC'],'budgets':[1,0,1,1,1]}))), json.loads(json.dumps([['A','','B','C',''],2,0])))
check('segment-advance fixture 2', json.loads(json.dumps(solve({'segments':['','A','','BC',''],'budgets':[0,2,1]}))), json.loads(json.dumps([['','AB','C'],5,0])))
check('segment-advance fixture 3', json.loads(json.dumps(solve({'segments':[],'budgets':[0,1]}))), json.loads(json.dumps([['',''],0,0])))
check('segment-advance fixture 4', json.loads(json.dumps(solve({'segments':['ABCDE'],'budgets':[2,1]}))), json.loads(json.dumps([['AB','C'],0,3])))
check('segment-advance fixture 5', json.loads(json.dumps(solve({'segments':["p"*N,'X'],'budgets':[N,1]}))), json.loads(json.dumps([["p"*N,'X'],2,0])))
check('segment-advance fixture 6', json.loads(json.dumps(solve({'segments':['AB','CDE'],'budgets':[4]}))), json.loads(json.dumps([['ABCD'],1,2])))
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 |
|---|---|---|---|
| segment-advance fixture 0 | [['--', 'bH', 'BOD', 'Y\r\n'], 4, 0] | [['--', 'bH', 'BOD', 'Y\r\n'], 4, 0] | Passed |
| segment-advance fixture 1 | [['A', '', 'B', 'C', ''], 2, 0] | [['A', '', 'B', 'C', ''], 2, 0] | Passed |
| segment-advance fixture 2 | [['', '', ''], 6, 0] | [['', 'AB', 'C'], 5, 0] | Failed |
| segment-advance fixture 3 | [['', ''], 0, 0] | [['', ''], 0, 0] | Passed |
| segment-advance fixture 4 | [['AB', 'C'], 0, 3] | [['AB', 'C'], 0, 3] | Passed |
| segment-advance fixture 5 | [['p', 'X'], 2, 0] | [['p', 'X'], 2, 0] | Passed |
| segment-advance fixture 6 | [['ABCD'], 1, 2] | [['ABCD'], 1, 2] | Passed |
SHA-256 / 6d63790e7491c8aa624f8d7ebe01a873bdd8a08660bc8b3e2c7e7cc0231b487b
3 / The verified repair
Exit 0"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
segments=x['segments']
index=0
offset=0
out=[]
for budget in x['budgets']:
sent=''
while index<len(segments):
segment=segments[index]
if offset>=len(segment):
index+=1
offset=0
continue
if budget==0: break
amount=min(budget,len(segment)-offset)
sent+=segment[offset:offset+amount]
offset+=amount
budget-=amount
out.append(sent)
return [out,index,offset]
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
check('segment-advance fixture 0', json.loads(json.dumps(solve({'segments':['--b','H','BODY','\r\n'],'budgets':[2,2,3,3]}))), json.loads(json.dumps([['--','bH','BOD','Y\r\n'],4,0])))
check('segment-advance fixture 1', json.loads(json.dumps(solve({'segments':['A','BC'],'budgets':[1,0,1,1,1]}))), json.loads(json.dumps([['A','','B','C',''],2,0])))
check('segment-advance fixture 2', json.loads(json.dumps(solve({'segments':['','A','','BC',''],'budgets':[0,2,1]}))), json.loads(json.dumps([['','AB','C'],5,0])))
check('segment-advance fixture 3', json.loads(json.dumps(solve({'segments':[],'budgets':[0,1]}))), json.loads(json.dumps([['',''],0,0])))
check('segment-advance fixture 4', json.loads(json.dumps(solve({'segments':['ABCDE'],'budgets':[2,1]}))), json.loads(json.dumps([['AB','C'],0,3])))
check('segment-advance fixture 5', json.loads(json.dumps(solve({'segments':["p"*N,'X'],'budgets':[N,1]}))), json.loads(json.dumps([["p"*N,'X'],2,0])))
check('segment-advance fixture 6', json.loads(json.dumps(solve({'segments':['AB','CDE'],'budgets':[4]}))), json.loads(json.dumps([['ABCD'],1,2])))
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 |
|---|---|---|---|
| segment-advance fixture 0 | [['--', 'bH', 'BOD', 'Y\r\n'], 4, 0] | [['--', 'bH', 'BOD', 'Y\r\n'], 4, 0] | Passed |
| segment-advance fixture 1 | [['A', '', 'B', 'C', ''], 2, 0] | [['A', '', 'B', 'C', ''], 2, 0] | Passed |
| segment-advance fixture 2 | [['', 'AB', 'C'], 5, 0] | [['', 'AB', 'C'], 5, 0] | Passed |
| segment-advance fixture 3 | [['', ''], 0, 0] | [['', ''], 0, 0] | Passed |
| segment-advance fixture 4 | [['AB', 'C'], 0, 3] | [['AB', 'C'], 0, 3] | Passed |
| segment-advance fixture 5 | [['p', 'X'], 2, 0] | [['p', 'X'], 2, 0] | Passed |
| segment-advance fixture 6 | [['ABCD'], 1, 2] | [['ABCD'], 1, 2] | Passed |
SHA-256 / 8b1dd0899d19ce49396a5081721dddd6ebf4b345e20641ded477ee1b897a68dc
Verification & scope
Deterministic simplified range service, with stipulated local policies and already parsed trusted inputs; not a complete HTTP 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.
Observations recorded using Python 3.12.14 at 2026-09-29T14:41:22.447098+00:00.
Case digest / eaf29ef1d3c402c018bbefb04bf4bb36cbd4d0a77eacc6aca0359733e6136aad