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The dataset generation failed
Error code: DatasetGenerationError
Exception: CastError
Message: Couldn't cast
problem: string
prompt: string
gt: string
responses: list<item: string>
child 0, item: string
scores: list<item: double>
child 0, item: double
to
{'problem': Value('string'), 'prompt': Value('string'), 'gt': Value('string'), 'responses': List(Value('string'))}
because column names don't match
Traceback: Traceback (most recent call last):
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1872, in _prepare_split_single
for key, table in generator:
^^^^^^^^^
File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 609, in wrapped
for item in generator(*args, **kwargs):
^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/packaged_modules/json/json.py", line 260, in _generate_tables
self._cast_table(pa_table, json_field_paths=json_field_paths),
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/packaged_modules/json/json.py", line 120, in _cast_table
pa_table = table_cast(pa_table, self.info.features.arrow_schema)
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/table.py", line 2272, in table_cast
return cast_table_to_schema(table, schema)
^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/table.py", line 2218, in cast_table_to_schema
raise CastError(
datasets.table.CastError: Couldn't cast
problem: string
prompt: string
gt: string
responses: list<item: string>
child 0, item: string
scores: list<item: double>
child 0, item: double
to
{'problem': Value('string'), 'prompt': Value('string'), 'gt': Value('string'), 'responses': List(Value('string'))}
because column names don't match
The above exception was the direct cause of the following exception:
Traceback (most recent call last):
File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 1342, in compute_config_parquet_and_info_response
parquet_operations, partial, estimated_dataset_info = stream_convert_to_parquet(
^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/src/services/worker/src/worker/job_runners/config/parquet_and_info.py", line 907, in stream_convert_to_parquet
builder._prepare_split(split_generator=splits_generators[split], file_format="parquet")
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1739, in _prepare_split
for job_id, done, content in self._prepare_split_single(
^^^^^^^^^^^^^^^^^^^^^^^^^^^
File "/usr/local/lib/python3.12/site-packages/datasets/builder.py", line 1922, in _prepare_split_single
raise DatasetGenerationError("An error occurred while generating the dataset") from e
datasets.exceptions.DatasetGenerationError: An error occurred while generating the datasetNeed help to make the dataset viewer work? Make sure to review how to configure the dataset viewer, and open a discussion for direct support.
problem string | prompt string | gt string | responses list |
|---|---|---|---|
"Let $ABCD$ be a tetrahedron such that $AB=CD= \\sqrt{41}$, $AC=BD= \\sqrt{80}$, and $BC=AD= \\sqrt{(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 104 | ["First, we need to understand that point $I$ is the incenter of the tetrahedron $ABCD$. The incente(...TRUNCATED) |
"Four unit squares form a $2 \\times 2$ grid. Each of the $12$ unit line segments forming the sides (...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 82 | ["To solve this problem, we need to find the number of ways to color the sides of a \\(2 \\times 2\\(...TRUNCATED) |
"Let $\\triangle A B C$ be an equilateral triangle with side length $1$. A real number $d$ is select(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | \frac{1}{3} | ["To solve this problem, we need to analyze the geometric configuration and then use a bit of algebr(...TRUNCATED) |
"Alice and Bob play the following game. A stack of $n$ tokens lies before them. The players take tur(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 809 | ["To solve this problem, we need to determine the values of $n$ for which Bob can always win the gam(...TRUNCATED) |
"An infinite geometric sequence with common ratio $r$ sums to $91$. A new sequence starting with the(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | \frac{1}{9} | ["We are given an infinite geometric sequence with the first term $a$ and common ratio $r$. The sum (...TRUNCATED) |
"Janet rolls a standard $6$-sided die $4$ times and keeps a running total of the numbers she rolls. (...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 265.0 | ["To solve this problem, we need to consider the running total of the die rolls and determine the pr(...TRUNCATED) |
"Robert has five beads in his hand, with the letters C, M, I, M, and C, and he wants to make a circu(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | \frac{1}{6} | ["The number of possible arrangements of the beads on the bracelet is $(5-1)! / 2 = 4!/2 = 12$. The (...TRUNCATED) |
"In a table tennis tournament every participant played every other participant exactly once. Althoug(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 36.0 | ["1. Let's assume there are $n$ left-handed players. Then there are $2n$ right-handed players.\n2. E(...TRUNCATED) |
"Let \\(b\\ge 2\\) be an integer. Call a positive integer \\(n\\) \\(b\\text-\\textit{eautiful}\\) i(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 211 | ["To solve this problem, we need to determine the least integer \\(b \\geq 2\\) for which there are (...TRUNCATED) |
"Let $\\triangle ABC$ have circumcenter $O$ and incenter $I$ with $\\overline{IA}\\perp\\overline{OI(...TRUNCATED) | "<|im_start|>system\nPlease reason step by step, and put your final answer within \\boxed{}.<|im_end(...TRUNCATED) | 468 | ["Given that \\( \\triangle ABC \\) has circumradius \\( R = 13 \\) and inradius \\( r = 6 \\), and (...TRUNCATED) |
End of preview.
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Reinforce-Ada Raw Eval
Raw evaluation artifacts organized by experiment / dataset / step.
Included files when present:
merged_data.jsonlpass_at_k.jsonrecord.txt
Experiments: grpo_n8, grpo_n16, grpo_n32, reinforce_ada_n8, reinforce_ada_n8_normstdtrue Datasets: math500, minerva_math, olympiadbench, aime_hmmt_brumo_cmimc_amc23
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