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proofs/88714.json
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{"schema": 2, "epoch": 88714, "nonce": "ec445a97729f8f13", "hotkey": "5CDRYdHggymECVATzv8rRM2PK7H2kq1vnC6rgajpKmNTzoTs", "source_hash": "19cf1a13badaa4a0a5fbebf4fc11e9a496dae2fca3913254fb8f328ed951718a", "weights_hash": "746f55ade42c36853b2f378c5a6267a30d912404a77c36c3f7cde877151d451e", "model_id": "injected", "total_cost_usd": 0.08898529999999999, "n_calls": 7, "call_log_hash": "8ba740edb539ff5ab4bea14174b5d60e760058438d9d9a4375012114c9556a91", "measurement": "1449fadb4821cadef93f7eecc8c3b040e2cd244e01a2607ea531e5f7055c38d8", "confined": true, "latency_s": 389.369, "tokens_in": 3596, "tokens_out": 41607, "results": [{"benchmark": "mmlu", "task_id": "mmlu-9524", "answer": "B", "cost_usd": 8.92e-05, "chosen_rung": -1, "rungs_used": [], "distribution": []}, {"benchmark": "mmlu", "task_id": "mmlu-5495", "answer": "A", "cost_usd": 4.319999999999999e-05, "chosen_rung": -1, "rungs_used": [], "distribution": []}, {"benchmark": "math", "task_id": "gsm8k-61", "answer": "Material and construction cost: \\(500 + 800 = 1300\\).\n\nInsurance cost: \\(10\\% \\times 1300 = 130\\).\n\nTotal paid: \\(1300 + 130 = 1430\\).\n\n1430", "cost_usd": 0.000233, "chosen_rung": -1, "rungs_used": [], "distribution": []}, {"benchmark": "math", "task_id": "gsm8k-139", "answer": "Let \\(p\\) be the number of pink gumballs and \\(b\\) the number of blue gumballs.\n\nThe relationship is:\n\\[\np = 4b + 22\n\\]\n\nSubstitute \\(b=12\\):\n\\[\np = 4(12)+22 = 48+22 = 70\n\\]\n\n70", "cost_usd": 0.0002052, "chosen_rung": -1, "rungs_used": [], "distribution": []}, {"benchmark": "code", "task_id": "lcb-abc388_b", "answer": "import sys\n\ndef main():\n data = list(map(int, sys.stdin.buffer.read().split()))\n n, d = data[0], data[1]\n snakes = [(data[i], data[i + 1]) for i in range(2, 2 * n + 2, 2)]\n\n answers = []\n for k in range(1, d + 1):\n answers.append(str(max(t * (l + k) for t, l in snakes)))\n\n sys.stdout.write(\"\\n\".join(answers))\n\nif __name__ == \"__main__\":\n main()\n", "cost_usd": 0.00032779999999999994, "chosen_rung": -1, "rungs_used": [], "distribution": []}, {"benchmark": "code", "task_id": "lcb-abc400_d", "answer": "import sys\nfrom collections import deque\n\nread = sys.stdin.buffer.readline\n\nH, W = map(int, read().split())\n\nP = W + 4\nN = (H + 4) * P\nOUT = 88\nDOT = 46\nWALL = 35\n\ngrid = bytearray(b\"X\") * N\nfor i in range(1, H + 1):\n row = read().strip()\n start = i * P + 2\n grid[start:start + W] = row\n\nA, B, C, D = map(int, read().split())\n\nstart = A * P + (B + 1)\ntarget = C * P + (D + 1)\n\nINF = 10**9\ndist = [INF] * N\nused = bytearray(N)\ndist[start] = 0\n\nqueue = deque([start])\noffsets = (1, -1, P, -P)\nanswer = INF\n\nwhile queue:\n current = queue.popleft()\n\n if used[current]:\n continue\n used[current] = 1\n\n cost = dist[current]\n if current == target:\n answer = cost\n break\n\n next_cost = cost + 1\n\n for offset in offsets:\n first = current + offset\n first_cell = grid[first]\n\n if first_cell == DOT:\n if dist[first] > cost:\n dist[first] = cost\n queue.appendleft(first)\n elif first_cell == WALL:\n if dist[first] > next_cost:\n dist[first] = next_cost\n queue.append(first)\n\n second = first + offset\n second_cell = grid[second]\n\n if second_cell != OUT and (first_cell == WALL or second_cell == WALL):\n if dist[second] > next_cost:\n dist[second] = next_cost\n queue.append(second)\n\nprint(answer if answer != INF else dist[target])", "cost_usd": 0.0880869, "chosen_rung": -1, "rungs_used": [], "distribution": []}], "quote": {"measurement": "1449fadb4821cadef93f7eecc8c3b040e2cd244e01a2607ea531e5f7055c38d8", "report_data": "bb7b53e7777831d816ae349695682b5190ff9ad7ddcfda56cfa072da748cb205", "platform_sig": 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