# MMLU ## Overview MMLU (Massive Multitask Language Understanding) is a comprehensive evaluation benchmark designed to measure knowledge acquired during pretraining. It covers 57 subjects across STEM, humanities, social sciences, and other domains, ranging from elementary to professional difficulty levels. ## Task Description - **Task Type**: Multiple-Choice Question Answering - **Input**: Question with four answer choices (A, B, C, D) - **Output**: Single correct answer letter - **Subjects**: 57 subjects organized into 4 categories (STEM, Humanities, Social Sciences, Other) ## Key Features - Covers diverse knowledge domains from elementary to advanced professional levels - Tests both factual knowledge and reasoning abilities - Includes subjects like abstract algebra, anatomy, astronomy, business ethics, and more - Standard benchmark for measuring LLM knowledge breadth ## Evaluation Notes - Default configuration uses **5-shot** examples from the dev split - Supports Chain-of-Thought (CoT) prompting for improved reasoning - Results can be aggregated by subject or category (STEM, Humanities, Social Sciences, Other) - Use `subset_list` parameter to evaluate specific subjects ## Properties | Property | Value | |----------|-------| | **Benchmark Name** | `mmlu` | | **Dataset ID** | [cais/mmlu](https://modelscope.cn/datasets/cais/mmlu/summary) | | **Paper** | N/A | | **Tags** | `Knowledge`, `MCQ` | | **Metrics** | `acc` | | **Default Shots** | 5-shot | | **Evaluation Split** | `test` | | **Train Split** | `dev` | ## Data Statistics | Metric | Value | |--------|-------| | Total Samples | 14,042 | | Prompt Length (Mean) | 3212.2 chars | | Prompt Length (Min/Max) | 985 / 14626 chars | **Per-Subset Statistics:** | Subset | Samples | Prompt Mean | Prompt Min | Prompt Max | |--------|---------|-------------|------------|------------| | `abstract_algebra` | 100 | 1256.98 | 1143 | 1383 | | `anatomy` | 135 | 1446 | 1306 | 1783 | | `astronomy` | 152 | 2616.64 | 2401 | 3191 | | `business_ethics` | 100 | 2756.36 | 2492 | 3145 | | `clinical_knowledge` | 265 | 1680.76 | 1510 | 1995 | | `college_biology` | 144 | 2104.53 | 1874 | 2641 | | `college_chemistry` | 100 | 1800.19 | 1641 | 2239 | | `college_computer_science` | 100 | 3424.74 | 3129 | 4137 | | `college_mathematics` | 100 | 1972.77 | 1776 | 2230 | | `college_medicine` | 173 | 2377.62 | 2005 | 6779 | | `college_physics` | 102 | 1941.26 | 1757 | 2237 | | `computer_security` | 100 | 1598.89 | 1414 | 2238 | | `conceptual_physics` | 235 | 1340.77 | 1246 | 1572 | | `econometrics` | 114 | 2286.2 | 1976 | 2708 | | `electrical_engineering` | 145 | 1372.1 | 1279 | 1578 | | `elementary_mathematics` | 378 | 1856.81 | 1724 | 2322 | | `formal_logic` | 126 | 2338.07 | 2065 | 3022 | | `global_facts` | 100 | 1644.77 | 1558 | 2001 | | `high_school_biology` | 310 | 2218.56 | 1971 | 2737 | | `high_school_chemistry` | 203 | 1740.83 | 1519 | 2341 | | `high_school_computer_science` | 100 | 3595.34 | 3224 | 4732 | | `high_school_european_history` | 165 | 13421.12 | 12392 | 14626 | | `high_school_geography` | 198 | 1849.07 | 1726 | 2204 | | `high_school_government_and_politics` | 193 | 2355.29 | 2171 | 2922 | | `high_school_macroeconomics` | 390 | 1861.47 | 1649 | 2206 | | `high_school_mathematics` | 270 | 1731.31 | 1591 | 2224 | | `high_school_microeconomics` | 238 | 1849.97 | 1651 | 2396 | | `high_school_physics` | 151 | 2110.63 | 1836 | 2926 | | `high_school_psychology` | 545 | 2431.39 | 2223 | 3498 | | `high_school_statistics` | 216 | 3273.79 | 2932 | 4328 | | `high_school_us_history` | 204 | 10530.61 | 9656 | 11469 | | `high_school_world_history` | 237 | 6700.7 | 5650 | 8814 | | `human_aging` | 223 | 1448.65 | 1335 | 1725 | | `human_sexuality` | 131 | 1556.02 | 1412 | 2250 | | `international_law` | 121 | 3094.31 | 2778 | 3432 | | `jurisprudence` | 108 | 1851.24 | 1638 | 2370 | | `logical_fallacies` | 163 | 2114.39 | 1932 | 2503 | | `machine_learning` | 112 | 2852.01 | 2659 | 3150 | | `management` | 103 | 1326.07 | 1220 | 1571 | | `marketing` | 234 | 1984.28 | 1832 | 2266 | | `medical_genetics` | 100 | 1531.32 | 1409 | 1775 | | `miscellaneous` | 783 | 1121.57 | 1004 | 2096 | | `moral_disputes` | 346 | 2300.58 | 2101 | 2711 | | `moral_scenarios` | 895 | 2709.89 | 2644 | 2853 | | `nutrition` | 306 | 2620.9 | 2408 | 3111 | | `philosophy` | 311 | 1472.67 | 1319 | 2292 | | `prehistory` | 324 | 2388.29 | 2201 | 2899 | | `professional_accounting` | 282 | 2820.72 | 2515 | 3400 | | `professional_law` | 1,534 | 8077.0 | 6997 | 10539 | | `professional_medicine` | 272 | 4832.72 | 4380 | 5802 | | `professional_psychology` | 612 | 2860.73 | 2594 | 3789 | | `public_relations` | 110 | 1991.35 | 1824 | 2712 | | `security_studies` | 245 | 6405.04 | 5680 | 7818 | | `sociology` | 201 | 2176.49 | 1976 | 2530 | | `us_foreign_policy` | 100 | 2129.28 | 1944 | 2393 | | `virology` | 166 | 1563.11 | 1426 | 2507 | | `world_religions` | 171 | 1051.68 | 985 | 1255 | ## Sample Example **Subset**: `abstract_algebra` ```json { "input": [ { "id": "c7cbfbb9", "content": "Here are some examples of how to answer similar questions:\n\nFind all c in Z_3 such that Z_3[x]/(x^2 + c) is a field.\nA) 0\nB) 1\nC) 2\nD) 3\nANSWER: B\n\nStatement 1 | If aH is an element of a factor group, then |aH| divides |a|. Statement 2 | If H ... [TRUNCATED] ... d be of the following format: 'ANSWER: [LETTER]' (without quotes) where [LETTER] is one of A,B,C,D. Think step by step before answering.\n\nFind the degree for the given field extension Q(sqrt(2), sqrt(3), sqrt(18)) over Q.\n\nA) 0\nB) 4\nC) 2\nD) 6" } ], "choices": [ "0", "4", "2", "6" ], "target": "B", "id": 0, "group_id": 0, "subset_key": "abstract_algebra", "metadata": { "subject": "abstract_algebra" } } ``` *Note: Some content was truncated for display.* ## Prompt Template **Prompt Template:** ```text Answer the following multiple choice question. The last line of your response should be of the following format: 'ANSWER: [LETTER]' (without quotes) where [LETTER] is one of {letters}. Think step by step before answering. {question} {choices} ``` ## Usage ### Using CLI ```bash evalscope eval \ --model YOUR_MODEL \ --api-url OPENAI_API_COMPAT_URL \ --api-key EMPTY_TOKEN \ --datasets mmlu \ --limit 10 # Remove this line for formal evaluation ``` ### Using Python ```python from evalscope import run_task from evalscope.config import TaskConfig task_cfg = TaskConfig( model='YOUR_MODEL', api_url='OPENAI_API_COMPAT_URL', api_key='EMPTY_TOKEN', datasets=['mmlu'], dataset_args={ 'mmlu': { # subset_list: ['abstract_algebra', 'anatomy', 'astronomy'] # optional, evaluate specific subsets } }, limit=10, # Remove this line for formal evaluation ) run_task(task_cfg=task_cfg) ```