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FA-71066 / Weather index computation / Open access

Cloud and altitude adjusted UV index: cloud factor index · case 01

Clear skies (0 octas) get the overcast reduction.

Verified by executionVariant 1 · 8 checks per implementationDownload source bundle ↓JSON ↗

ROOT CAUSE

The cloud modification table is indexed as if octas were 1-based.

VERIFIED REPAIR

Index the table directly by octas.

Unsuccessful approach: Halving the octas collapses the cloud classes.

Case contract

Clear-sky erythemal irradiance in mW/m2; UVI = irradiance/25. Multiply by the cloud factor for 0..8 octas [1,1,1,0.89,0.89,0.73,0.73,0.31,0.2], by 1 + 0.06*altitude_km (continuous) and by 1.3 over snow. Round half up to an integer; category 0-2 low, 3-5 moderate, 6-7 high, 8-10 very high, 11+ extreme.

Why this case matters

Sun-safety advice is keyed to the published integer UV index and category.

1 / The failure

Exit 1
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(ery_mw, octas, altitude_m, snow):
    cmf = [1.0, 1.0, 1.0, 0.89, 0.89, 0.73, 0.73, 0.31, 0.2]
    uvi = ery_mw / 25.0
    uvi *= cmf[octas - 1]
    uvi *= 1 + 0.06 * (altitude_m / 1000.0)
    if snow:
        uvi *= 1.3
    u = int(uvi + 0.5)
    if u <= 2:
        cat = "low"
    elif u <= 5:
        cat = "moderate"
    elif u <= 7:
        cat = "high"
    elif u <= 10:
        cat = "very high"
    else:
        cat = "extreme"
    return [u, cat]
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['10 mW/m2 0 octas 0 m', [10, 0, 0, False], [0, 'low']], ['10 mW/m2 0 octas 1500 m', [10, 0, 1500, False], [0, 'low']], ['10 mW/m2 3 octas 0 m', [10, 3, 0, False], [0, 'low']], ['10 mW/m2 3 octas 1500 m', [10, 3, 1500, False], [0, 'low']], ['10 mW/m2 5 octas 0 m', [10, 5, 0, False], [0, 'low']], ['10 mW/m2 5 octas 1500 m', [10, 5, 1500, False], [0, 'low']], ['62.5 mW/m2 0 octas 0 m', [62.5, 0, 0, False], [3, 'moderate']], ['62.5 mW/m2 3 octas 1500 m', [62.5, 3, 1500, False], [2, 'low']]], [['10 mW/m2 8 octas 1500 m', [10, 8, 1500, False], [0, 'low']], ['62.5 mW/m2 0 octas 0 m', [62.5, 0, 0, False], [3, 'moderate']], ['62.5 mW/m2 0 octas 1500 m', [62.5, 0, 1500, False], [3, 'moderate']], ['62.5 mW/m2 3 octas 0 m', [62.5, 3, 0, False], [2, 'low']], ['62.5 mW/m2 3 octas 1500 m', [62.5, 3, 1500, False], [2, 'low']], ['62.5 mW/m2 5 octas 0 m', [62.5, 5, 0, False], [2, 'low']], ['62.5 mW/m2 5 octas 1500 m', [62.5, 5, 1500, False], [2, 'low']], ['87.5 mW/m2 3 octas 0 m', [87.5, 3, 0, False], [3, 'moderate']]], [['62.5 mW/m2 8 octas 0 m', [62.5, 8, 0, False], [1, 'low']], ['62.5 mW/m2 8 octas 1500 m', [62.5, 8, 1500, False], [1, 'low']], ['87.5 mW/m2 0 octas 0 m', [87.5, 0, 0, False], [4, 'moderate']], ['87.5 mW/m2 0 octas 1500 m', [87.5, 0, 1500, False], [4, 'moderate']], ['87.5 mW/m2 3 octas 0 m', [87.5, 3, 0, False], [3, 'moderate']], ['87.5 mW/m2 3 octas 1500 m', [87.5, 3, 1500, False], [3, 'moderate']], ['87.5 mW/m2 5 octas 0 m', [87.5, 5, 0, False], [3, 'moderate']], ['87.5 mW/m2 8 octas 1500 m', [87.5, 8, 1500, False], [1, 'low']]], [['87.5 mW/m2 5 octas 1500 m', [87.5, 5, 1500, False], [3, 'moderate']], ['87.5 mW/m2 8 octas 0 m', [87.5, 8, 0, False], [1, 'low']], ['87.5 mW/m2 8 octas 1500 m', [87.5, 8, 1500, False], [1, 'low']], ['150 mW/m2 0 octas 0 m', [150, 0, 0, False], [6, 'high']], ['150 mW/m2 0 octas 1500 m', [150, 0, 1500, False], [7, 'high']], ['150 mW/m2 3 octas 0 m', [150, 3, 0, False], [5, 'moderate']], ['150 mW/m2 3 octas 1500 m', [150, 3, 1500, False], [6, 'high']], ['150 mW/m2 8 octas 0 m', [150, 8, 0, False], [1, 'low']]], [['150 mW/m2 5 octas 0 m', [150, 5, 0, False], [4, 'moderate']], ['150 mW/m2 5 octas 1500 m', [150, 5, 1500, False], [5, 'moderate']], ['150 mW/m2 8 octas 0 m', [150, 8, 0, False], [1, 'low']], ['150 mW/m2 8 octas 1500 m', [150, 8, 1500, False], [1, 'low']], ['187.5 mW/m2 0 octas 0 m', [187.5, 0, 0, False], [8, 'very high']], ['187.5 mW/m2 0 octas 1500 m', [187.5, 0, 1500, False], [8, 'very high']], ['187.5 mW/m2 3 octas 0 m', [187.5, 3, 0, False], [7, 'high']], ['187.5 mW/m2 5 octas 1500 m', [187.5, 5, 1500, False], [6, 'high']]]]
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 fixtureActualExpectedOutcome
10 mW/m2 0 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 0 octas 1500 m[0, 'low'][0, 'low']Passed
10 mW/m2 3 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 3 octas 1500 m[0, 'low'][0, 'low']Passed
10 mW/m2 5 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 5 octas 1500 m[0, 'low'][0, 'low']Passed
62.5 mW/m2 0 octas 0 m[1, 'low'][3, 'moderate']Failed
62.5 mW/m2 3 octas 1500 m[3, 'moderate'][2, 'low']Failed

SHA-256 / 4ecf8ed334eb104482ba9da5f7e012a84fe2f32ce3f2ee57cf78b89f05778343

2 / The unsuccessful fix

Exit 1
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(ery_mw, octas, altitude_m, snow):
    cmf = [1.0, 1.0, 1.0, 0.89, 0.89, 0.73, 0.73, 0.31, 0.2]
    uvi = ery_mw / 25.0
    uvi *= cmf[octas // 2]
    uvi *= 1 + 0.06 * (altitude_m / 1000.0)
    if snow:
        uvi *= 1.3
    u = int(uvi + 0.5)
    if u <= 2:
        cat = "low"
    elif u <= 5:
        cat = "moderate"
    elif u <= 7:
        cat = "high"
    elif u <= 10:
        cat = "very high"
    else:
        cat = "extreme"
    return [u, cat]
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['10 mW/m2 0 octas 0 m', [10, 0, 0, False], [0, 'low']], ['10 mW/m2 0 octas 1500 m', [10, 0, 1500, False], [0, 'low']], ['10 mW/m2 3 octas 0 m', [10, 3, 0, False], [0, 'low']], ['10 mW/m2 3 octas 1500 m', [10, 3, 1500, False], [0, 'low']], ['10 mW/m2 5 octas 0 m', [10, 5, 0, False], [0, 'low']], ['10 mW/m2 5 octas 1500 m', [10, 5, 1500, False], [0, 'low']], ['62.5 mW/m2 0 octas 0 m', [62.5, 0, 0, False], [3, 'moderate']], ['62.5 mW/m2 3 octas 1500 m', [62.5, 3, 1500, False], [2, 'low']]], [['10 mW/m2 8 octas 1500 m', [10, 8, 1500, False], [0, 'low']], ['62.5 mW/m2 0 octas 0 m', [62.5, 0, 0, False], [3, 'moderate']], ['62.5 mW/m2 0 octas 1500 m', [62.5, 0, 1500, False], [3, 'moderate']], ['62.5 mW/m2 3 octas 0 m', [62.5, 3, 0, False], [2, 'low']], ['62.5 mW/m2 3 octas 1500 m', [62.5, 3, 1500, False], [2, 'low']], ['62.5 mW/m2 5 octas 0 m', [62.5, 5, 0, False], [2, 'low']], ['62.5 mW/m2 5 octas 1500 m', [62.5, 5, 1500, False], [2, 'low']], ['87.5 mW/m2 3 octas 0 m', [87.5, 3, 0, False], [3, 'moderate']]], [['62.5 mW/m2 8 octas 0 m', [62.5, 8, 0, False], [1, 'low']], ['62.5 mW/m2 8 octas 1500 m', [62.5, 8, 1500, False], [1, 'low']], ['87.5 mW/m2 0 octas 0 m', [87.5, 0, 0, False], [4, 'moderate']], ['87.5 mW/m2 0 octas 1500 m', [87.5, 0, 1500, False], [4, 'moderate']], ['87.5 mW/m2 3 octas 0 m', [87.5, 3, 0, False], [3, 'moderate']], ['87.5 mW/m2 3 octas 1500 m', [87.5, 3, 1500, False], [3, 'moderate']], ['87.5 mW/m2 5 octas 0 m', [87.5, 5, 0, False], [3, 'moderate']], ['87.5 mW/m2 8 octas 1500 m', [87.5, 8, 1500, False], [1, 'low']]], [['87.5 mW/m2 5 octas 1500 m', [87.5, 5, 1500, False], [3, 'moderate']], ['87.5 mW/m2 8 octas 0 m', [87.5, 8, 0, False], [1, 'low']], ['87.5 mW/m2 8 octas 1500 m', [87.5, 8, 1500, False], [1, 'low']], ['150 mW/m2 0 octas 0 m', [150, 0, 0, False], [6, 'high']], ['150 mW/m2 0 octas 1500 m', [150, 0, 1500, False], [7, 'high']], ['150 mW/m2 3 octas 0 m', [150, 3, 0, False], [5, 'moderate']], ['150 mW/m2 3 octas 1500 m', [150, 3, 1500, False], [6, 'high']], ['150 mW/m2 8 octas 0 m', [150, 8, 0, False], [1, 'low']]], [['150 mW/m2 5 octas 0 m', [150, 5, 0, False], [4, 'moderate']], ['150 mW/m2 5 octas 1500 m', [150, 5, 1500, False], [5, 'moderate']], ['150 mW/m2 8 octas 0 m', [150, 8, 0, False], [1, 'low']], ['150 mW/m2 8 octas 1500 m', [150, 8, 1500, False], [1, 'low']], ['187.5 mW/m2 0 octas 0 m', [187.5, 0, 0, False], [8, 'very high']], ['187.5 mW/m2 0 octas 1500 m', [187.5, 0, 1500, False], [8, 'very high']], ['187.5 mW/m2 3 octas 0 m', [187.5, 3, 0, False], [7, 'high']], ['187.5 mW/m2 5 octas 1500 m', [187.5, 5, 1500, False], [6, 'high']]]]
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 fixtureActualExpectedOutcome
10 mW/m2 0 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 0 octas 1500 m[0, 'low'][0, 'low']Passed
10 mW/m2 3 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 3 octas 1500 m[0, 'low'][0, 'low']Passed
10 mW/m2 5 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 5 octas 1500 m[0, 'low'][0, 'low']Passed
62.5 mW/m2 0 octas 0 m[3, 'moderate'][3, 'moderate']Passed
62.5 mW/m2 3 octas 1500 m[3, 'moderate'][2, 'low']Failed

SHA-256 / e8b6fa1ee78ef5aeb15ae956238a0d50738e794ff51e319165c40cfa04810642

3 / The verified repair

Exit 0
"""Failure Map reference implementation. Python standard library only."""
import json

N = 1
observations = []
def solve(ery_mw, octas, altitude_m, snow):
    cmf = [1.0, 1.0, 1.0, 0.89, 0.89, 0.73, 0.73, 0.31, 0.2]
    uvi = ery_mw / 25.0
    uvi *= cmf[octas]
    uvi *= 1 + 0.06 * (altitude_m / 1000.0)
    if snow:
        uvi *= 1.3
    u = int(uvi + 0.5)
    if u <= 2:
        cat = "low"
    elif u <= 5:
        cat = "moderate"
    elif u <= 7:
        cat = "high"
    elif u <= 10:
        cat = "very high"
    else:
        cat = "extreme"
    return [u, cat]
def check(label, actual, expected):
    observations.append({"check": label, "actual": actual, "expected": expected, "passed": actual == expected})
fixtures = [[['10 mW/m2 0 octas 0 m', [10, 0, 0, False], [0, 'low']], ['10 mW/m2 0 octas 1500 m', [10, 0, 1500, False], [0, 'low']], ['10 mW/m2 3 octas 0 m', [10, 3, 0, False], [0, 'low']], ['10 mW/m2 3 octas 1500 m', [10, 3, 1500, False], [0, 'low']], ['10 mW/m2 5 octas 0 m', [10, 5, 0, False], [0, 'low']], ['10 mW/m2 5 octas 1500 m', [10, 5, 1500, False], [0, 'low']], ['62.5 mW/m2 0 octas 0 m', [62.5, 0, 0, False], [3, 'moderate']], ['62.5 mW/m2 3 octas 1500 m', [62.5, 3, 1500, False], [2, 'low']]], [['10 mW/m2 8 octas 1500 m', [10, 8, 1500, False], [0, 'low']], ['62.5 mW/m2 0 octas 0 m', [62.5, 0, 0, False], [3, 'moderate']], ['62.5 mW/m2 0 octas 1500 m', [62.5, 0, 1500, False], [3, 'moderate']], ['62.5 mW/m2 3 octas 0 m', [62.5, 3, 0, False], [2, 'low']], ['62.5 mW/m2 3 octas 1500 m', [62.5, 3, 1500, False], [2, 'low']], ['62.5 mW/m2 5 octas 0 m', [62.5, 5, 0, False], [2, 'low']], ['62.5 mW/m2 5 octas 1500 m', [62.5, 5, 1500, False], [2, 'low']], ['87.5 mW/m2 3 octas 0 m', [87.5, 3, 0, False], [3, 'moderate']]], [['62.5 mW/m2 8 octas 0 m', [62.5, 8, 0, False], [1, 'low']], ['62.5 mW/m2 8 octas 1500 m', [62.5, 8, 1500, False], [1, 'low']], ['87.5 mW/m2 0 octas 0 m', [87.5, 0, 0, False], [4, 'moderate']], ['87.5 mW/m2 0 octas 1500 m', [87.5, 0, 1500, False], [4, 'moderate']], ['87.5 mW/m2 3 octas 0 m', [87.5, 3, 0, False], [3, 'moderate']], ['87.5 mW/m2 3 octas 1500 m', [87.5, 3, 1500, False], [3, 'moderate']], ['87.5 mW/m2 5 octas 0 m', [87.5, 5, 0, False], [3, 'moderate']], ['87.5 mW/m2 8 octas 1500 m', [87.5, 8, 1500, False], [1, 'low']]], [['87.5 mW/m2 5 octas 1500 m', [87.5, 5, 1500, False], [3, 'moderate']], ['87.5 mW/m2 8 octas 0 m', [87.5, 8, 0, False], [1, 'low']], ['87.5 mW/m2 8 octas 1500 m', [87.5, 8, 1500, False], [1, 'low']], ['150 mW/m2 0 octas 0 m', [150, 0, 0, False], [6, 'high']], ['150 mW/m2 0 octas 1500 m', [150, 0, 1500, False], [7, 'high']], ['150 mW/m2 3 octas 0 m', [150, 3, 0, False], [5, 'moderate']], ['150 mW/m2 3 octas 1500 m', [150, 3, 1500, False], [6, 'high']], ['150 mW/m2 8 octas 0 m', [150, 8, 0, False], [1, 'low']]], [['150 mW/m2 5 octas 0 m', [150, 5, 0, False], [4, 'moderate']], ['150 mW/m2 5 octas 1500 m', [150, 5, 1500, False], [5, 'moderate']], ['150 mW/m2 8 octas 0 m', [150, 8, 0, False], [1, 'low']], ['150 mW/m2 8 octas 1500 m', [150, 8, 1500, False], [1, 'low']], ['187.5 mW/m2 0 octas 0 m', [187.5, 0, 0, False], [8, 'very high']], ['187.5 mW/m2 0 octas 1500 m', [187.5, 0, 1500, False], [8, 'very high']], ['187.5 mW/m2 3 octas 0 m', [187.5, 3, 0, False], [7, 'high']], ['187.5 mW/m2 5 octas 1500 m', [187.5, 5, 1500, False], [6, 'high']]]]
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 fixtureActualExpectedOutcome
10 mW/m2 0 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 0 octas 1500 m[0, 'low'][0, 'low']Passed
10 mW/m2 3 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 3 octas 1500 m[0, 'low'][0, 'low']Passed
10 mW/m2 5 octas 0 m[0, 'low'][0, 'low']Passed
10 mW/m2 5 octas 1500 m[0, 'low'][0, 'low']Passed
62.5 mW/m2 0 octas 0 m[3, 'moderate'][3, 'moderate']Passed
62.5 mW/m2 3 octas 1500 m[2, 'low'][2, 'low']Passed

SHA-256 / b8ceb8b54c60968bdd1618277d51d4b305ff17a589d4b38828921afdfe4a84ae

Verification & scope

Stipulated deterministic teaching model of an operational weather index; coefficients and thresholds are fixed by the contract and no claim of standards conformance is made. 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 2026-09-29T14:48:26.348803+00:00.

Case digest / a4f79605ea9da1566f02da17355df9501a968066a075098a8a060eae6fea07ff