FA-59886 / Inventory cost layering / Open access
Periodic LIFO year-end layering: empty layer suppression · case 01
Liquidation output contains zero-quantity layers for fully liquidated base years.
ROOT CAUSE
The keep loop appends a layer even when nothing is kept from it.
VERIFIED REPAIR
Append only layers with a positive kept quantity.
Unsuccessful approach: Guarding on a non-negative take still admits zero-quantity layers.
Case contract
Input {begin:[[qty,unit]] oldest first, purchases:[[qty,unit]] chronological, ending_qty}. Ending inventory keeps the oldest units: if ending_qty covers the base, all base layers stay and one increment layer is priced at the EARLIEST purchases of the year; otherwise the newest base layers are liquidated. ending_qty outside [0, available] returns {"error"}. Return {layers:[[qty,value]], ending_value, cogs}.
Why this case matters
Inventory valuation and cost-of-goods decisions depend on this rule.
1 / The failure
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
begin = [list(l) for l in x['begin']]
purchases = x['purchases']
end_q = x['ending_qty']
base_q = sum(l[0] for l in begin)
buy_q = sum(p[0] for p in purchases)
avail = base_q + buy_q
if end_q < 0 or end_q > avail:
return {'error': 'invalid ending quantity'}
layers = []
if end_q >= base_q:
layers = [[q, q * c] for q, c in begin]
inc = end_q - base_q
new_q = 0
new_v = 0
for q, c in purchases:
if inc == 0:
break
take = min(inc, q)
new_q += take
new_v += take * c
inc -= take
if new_q > 0:
layers.append([new_q, new_v])
else:
rem = end_q
for bq, bc in begin:
take = min(rem, bq)
if True:
layers.append([take, take * bc])
rem -= take
begin_value = sum(q * c for q, c in begin)
buy_value = sum(q * c for q, c in purchases)
ending_value = sum(v for q, v in layers)
return {'layers': layers, 'ending_value': ending_value, 'cogs': begin_value + buy_value - ending_value}
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 10]], 'ending_qty': 18}, {'layers': [[10, 50], [4, 24], [4, 28]], 'ending_value': 102, 'cogs': 94}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 1}, {'layers': [[1, 2]], 'ending_value': 2, 'cogs': 50}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 6}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[3, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[1, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 35}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 11]], 'ending_qty': 19}, {'layers': [[10, 50], [4, 24], [5, 35]], 'ending_value': 109, 'cogs': 95}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 11}, {'layers': [[10, 50], [1, 6]], 'ending_value': 56, 'cogs': 60}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 2}, {'layers': [[2, 4]], 'ending_value': 4, 'cogs': 48}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 7}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -2}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[4, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[2, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 46}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 12]], 'ending_qty': 17}, {'layers': [[10, 50], [4, 24], [3, 21]], 'ending_value': 95, 'cogs': 117}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 3}, {'layers': [[3, 6]], 'ending_value': 6, 'cogs': 46}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 8}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -3}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[5, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[3, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 57}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 13]], 'ending_qty': 18}, {'layers': [[10, 50], [4, 24], [4, 28]], 'ending_value': 102, 'cogs': 118}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 11}, {'layers': [[10, 50], [1, 6]], 'ending_value': 56, 'cogs': 60}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 4}, {'layers': [[3, 6], [1, 4]], 'ending_value': 10, 'cogs': 42}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 9}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -4}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[6, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[4, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 68}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 14]], 'ending_qty': 19}, {'layers': [[10, 50], [4, 24], [5, 35]], 'ending_value': 109, 'cogs': 119}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 5}, {'layers': [[3, 6], [2, 8]], 'ending_value': 14, 'cogs': 38}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 10}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -5}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[7, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[5, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 79}]]]
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 |
|---|---|---|---|
| increment layer | {'cogs': 94, 'ending_value': 102, 'layers': [[10, 50], [4, 24], [4, 28]]} | {'cogs': 94, 'ending_value': 102, 'layers': [[10, 50], [4, 24], [4, 28]]} | Passed |
| liquidation | {'cogs': 66, 'ending_value': 50, 'layers': [[10, 50], [0, 0]]} | {'cogs': 66, 'ending_value': 50, 'layers': [[10, 50]]} | Failed |
| deep liquidation | {'cogs': 50, 'ending_value': 2, 'layers': [[1, 2], [0, 0], [0, 0]]} | {'cogs': 50, 'ending_value': 2, 'layers': [[1, 2]]} | Failed |
| over available | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| negative ending | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| count of minus one | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| all sold | {'cogs': 35, 'ending_value': 0, 'layers': [[0, 0]]} | {'cogs': 35, 'ending_value': 0, 'layers': []} | Failed |
| exact base | {'cogs': 35, 'ending_value': 40, 'layers': [[4, 40]]} | {'cogs': 35, 'ending_value': 40, 'layers': [[4, 40]]} | Passed |
SHA-256 / bfd9373ba9f496a614e100411b1c48f7ee5ab19e13edce9f113d812821b68666
2 / The unsuccessful fix
Exit 1"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
begin = [list(l) for l in x['begin']]
purchases = x['purchases']
end_q = x['ending_qty']
base_q = sum(l[0] for l in begin)
buy_q = sum(p[0] for p in purchases)
avail = base_q + buy_q
if end_q < 0 or end_q > avail:
return {'error': 'invalid ending quantity'}
layers = []
if end_q >= base_q:
layers = [[q, q * c] for q, c in begin]
inc = end_q - base_q
new_q = 0
new_v = 0
for q, c in purchases:
if inc == 0:
break
take = min(inc, q)
new_q += take
new_v += take * c
inc -= take
if new_q > 0:
layers.append([new_q, new_v])
else:
rem = end_q
for bq, bc in begin:
take = min(rem, bq)
if take >= 0:
layers.append([take, take * bc])
rem -= take
begin_value = sum(q * c for q, c in begin)
buy_value = sum(q * c for q, c in purchases)
ending_value = sum(v for q, v in layers)
return {'layers': layers, 'ending_value': ending_value, 'cogs': begin_value + buy_value - ending_value}
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 10]], 'ending_qty': 18}, {'layers': [[10, 50], [4, 24], [4, 28]], 'ending_value': 102, 'cogs': 94}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 1}, {'layers': [[1, 2]], 'ending_value': 2, 'cogs': 50}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 6}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[3, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[1, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 35}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 11]], 'ending_qty': 19}, {'layers': [[10, 50], [4, 24], [5, 35]], 'ending_value': 109, 'cogs': 95}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 11}, {'layers': [[10, 50], [1, 6]], 'ending_value': 56, 'cogs': 60}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 2}, {'layers': [[2, 4]], 'ending_value': 4, 'cogs': 48}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 7}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -2}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[4, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[2, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 46}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 12]], 'ending_qty': 17}, {'layers': [[10, 50], [4, 24], [3, 21]], 'ending_value': 95, 'cogs': 117}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 3}, {'layers': [[3, 6]], 'ending_value': 6, 'cogs': 46}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 8}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -3}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[5, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[3, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 57}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 13]], 'ending_qty': 18}, {'layers': [[10, 50], [4, 24], [4, 28]], 'ending_value': 102, 'cogs': 118}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 11}, {'layers': [[10, 50], [1, 6]], 'ending_value': 56, 'cogs': 60}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 4}, {'layers': [[3, 6], [1, 4]], 'ending_value': 10, 'cogs': 42}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 9}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -4}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[6, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[4, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 68}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 14]], 'ending_qty': 19}, {'layers': [[10, 50], [4, 24], [5, 35]], 'ending_value': 109, 'cogs': 119}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 5}, {'layers': [[3, 6], [2, 8]], 'ending_value': 14, 'cogs': 38}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 10}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -5}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[7, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[5, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 79}]]]
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 |
|---|---|---|---|
| increment layer | {'cogs': 94, 'ending_value': 102, 'layers': [[10, 50], [4, 24], [4, 28]]} | {'cogs': 94, 'ending_value': 102, 'layers': [[10, 50], [4, 24], [4, 28]]} | Passed |
| liquidation | {'cogs': 66, 'ending_value': 50, 'layers': [[10, 50], [0, 0]]} | {'cogs': 66, 'ending_value': 50, 'layers': [[10, 50]]} | Failed |
| deep liquidation | {'cogs': 50, 'ending_value': 2, 'layers': [[1, 2], [0, 0], [0, 0]]} | {'cogs': 50, 'ending_value': 2, 'layers': [[1, 2]]} | Failed |
| over available | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| negative ending | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| count of minus one | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| all sold | {'cogs': 35, 'ending_value': 0, 'layers': [[0, 0]]} | {'cogs': 35, 'ending_value': 0, 'layers': []} | Failed |
| exact base | {'cogs': 35, 'ending_value': 40, 'layers': [[4, 40]]} | {'cogs': 35, 'ending_value': 40, 'layers': [[4, 40]]} | Passed |
SHA-256 / cbf0513155d5df4ebf2a1d7c36e02799fb055ae6b66de30645484d281e541023
3 / The verified repair
Exit 0"""Failure Map reference implementation. Python standard library only."""
import json
N = 1
observations = []
def solve(x):
begin = [list(l) for l in x['begin']]
purchases = x['purchases']
end_q = x['ending_qty']
base_q = sum(l[0] for l in begin)
buy_q = sum(p[0] for p in purchases)
avail = base_q + buy_q
if end_q < 0 or end_q > avail:
return {'error': 'invalid ending quantity'}
layers = []
if end_q >= base_q:
layers = [[q, q * c] for q, c in begin]
inc = end_q - base_q
new_q = 0
new_v = 0
for q, c in purchases:
if inc == 0:
break
take = min(inc, q)
new_q += take
new_v += take * c
inc -= take
if new_q > 0:
layers.append([new_q, new_v])
else:
rem = end_q
for bq, bc in begin:
take = min(rem, bq)
if take > 0:
layers.append([take, take * bc])
rem -= take
begin_value = sum(q * c for q, c in begin)
buy_value = sum(q * c for q, c in purchases)
ending_value = sum(v for q, v in layers)
return {'layers': layers, 'ending_value': ending_value, 'cogs': begin_value + buy_value - ending_value}
def check(label, actual, expected):
observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 10]], 'ending_qty': 18}, {'layers': [[10, 50], [4, 24], [4, 28]], 'ending_value': 102, 'cogs': 94}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 1}, {'layers': [[1, 2]], 'ending_value': 2, 'cogs': 50}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 6}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[3, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[1, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 35}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 11]], 'ending_qty': 19}, {'layers': [[10, 50], [4, 24], [5, 35]], 'ending_value': 109, 'cogs': 95}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 11}, {'layers': [[10, 50], [1, 6]], 'ending_value': 56, 'cogs': 60}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 2}, {'layers': [[2, 4]], 'ending_value': 4, 'cogs': 48}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 7}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -2}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[4, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[2, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 46}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 12]], 'ending_qty': 17}, {'layers': [[10, 50], [4, 24], [3, 21]], 'ending_value': 95, 'cogs': 117}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 3}, {'layers': [[3, 6]], 'ending_value': 6, 'cogs': 46}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 8}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -3}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[5, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[3, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 57}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 13]], 'ending_qty': 18}, {'layers': [[10, 50], [4, 24], [4, 28]], 'ending_value': 102, 'cogs': 118}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 11}, {'layers': [[10, 50], [1, 6]], 'ending_value': 56, 'cogs': 60}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 4}, {'layers': [[3, 6], [1, 4]], 'ending_value': 10, 'cogs': 42}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 9}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -4}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[6, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[4, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 68}]], [['increment layer', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7], [8, 14]], 'ending_qty': 19}, {'layers': [[10, 50], [4, 24], [5, 35]], 'ending_value': 109, 'cogs': 119}], ['liquidation', {'begin': [[10, 5], [4, 6]], 'purchases': [[6, 7]], 'ending_qty': 10}, {'layers': [[10, 50]], 'ending_value': 50, 'cogs': 66}], ['deep liquidation', {'begin': [[3, 2], [3, 4], [3, 6]], 'purchases': [[2, 8]], 'ending_qty': 5}, {'layers': [[3, 6], [2, 8]], 'ending_value': 14, 'cogs': 38}], ['over available', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': 10}, {'error': 'invalid ending quantity'}], ['negative ending', {'begin': [[2, 3]], 'purchases': [[3, 4]], 'ending_qty': -5}, {'error': 'invalid ending quantity'}], ['count of minus one', {'begin': [[7, 3]], 'purchases': [[3, 4]], 'ending_qty': -1}, {'error': 'invalid ending quantity'}], ['all sold', {'begin': [[5, 3]], 'purchases': [[5, 4]], 'ending_qty': 0}, {'layers': [], 'ending_value': 0, 'cogs': 35}], ['exact base', {'begin': [[4, 10]], 'purchases': [[5, 11], [2, 12]], 'ending_qty': 4}, {'layers': [[4, 40]], 'ending_value': 40, 'cogs': 79}]]]
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 |
|---|---|---|---|
| increment layer | {'cogs': 94, 'ending_value': 102, 'layers': [[10, 50], [4, 24], [4, 28]]} | {'cogs': 94, 'ending_value': 102, 'layers': [[10, 50], [4, 24], [4, 28]]} | Passed |
| liquidation | {'cogs': 66, 'ending_value': 50, 'layers': [[10, 50]]} | {'cogs': 66, 'ending_value': 50, 'layers': [[10, 50]]} | Passed |
| deep liquidation | {'cogs': 50, 'ending_value': 2, 'layers': [[1, 2]]} | {'cogs': 50, 'ending_value': 2, 'layers': [[1, 2]]} | Passed |
| over available | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| negative ending | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| count of minus one | {'error': 'invalid ending quantity'} | {'error': 'invalid ending quantity'} | Passed |
| all sold | {'cogs': 35, 'ending_value': 0, 'layers': []} | {'cogs': 35, 'ending_value': 0, 'layers': []} | Passed |
| exact base | {'cogs': 35, 'ending_value': 40, 'layers': [[4, 40]]} | {'cogs': 35, 'ending_value': 40, 'layers': [[4, 40]]} | Passed |
SHA-256 / 953c6075f67fa22ecf38b9c8df39830879a6138b4ac3c2f1f900c8918d8a2ff7
Verification & scope
Stipulated bounded teaching model with explicit toy rules; not an accounting-standard 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 2026-09-29T14:46:40.428208+00:00.
Case digest / 2fdb7218ef53dd27f641efb4cae060ab8dd643f065df086c1dd0cf5a001a6b18