Spaces:
Runtime error
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Use the API to complete the code
Browse files
README.md
CHANGED
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@@ -1,12 +1,12 @@
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| 1 |
---
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-
title: Math Olympiad Solver
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-
emoji:
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-
colorFrom:
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-
colorTo:
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sdk: gradio
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-
sdk_version: 4.
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app_file: app.py
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pinned: false
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---
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| 11 |
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| 12 |
-
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| 1 |
---
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+
title: Math Olympiad Solver
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+
emoji: ♾️
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+
colorFrom: yellow
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+
colorTo: purple
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sdk: gradio
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+
sdk_version: 4.36.1
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app_file: app.py
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pinned: false
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| 10 |
---
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| 11 |
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| 12 |
+
An example chatbot using [Gradio](https://gradio.app), [`huggingface_hub`](https://huggingface.co/docs/huggingface_hub/v0.22.2/en/index), and the [Hugging Face Inference API](https://huggingface.co/docs/api-inference/index).
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app.py
ADDED
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@@ -0,0 +1,725 @@
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|
| 1 |
+
import gradio as gr
|
| 2 |
+
from huggingface_hub import login
|
| 3 |
+
|
| 4 |
+
import re
|
| 5 |
+
|
| 6 |
+
# from vllm import LLM, SamplingParams
|
| 7 |
+
import pandas as pd
|
| 8 |
+
from collections import Counter
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| 9 |
+
from datasets import load_dataset, Dataset, concatenate_datasets
|
| 10 |
+
from dataclasses import dataclass
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| 11 |
+
from concurrent.futures import ThreadPoolExecutor, TimeoutError
|
| 12 |
+
import os
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| 13 |
+
from typing import Dict, Any, List
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| 14 |
+
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| 15 |
+
# code execution
|
| 16 |
+
import os
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| 17 |
+
import re
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| 18 |
+
import signal
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| 19 |
+
import subprocess
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| 20 |
+
import tempfile
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| 21 |
+
from contextlib import contextmanager
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| 22 |
+
from typing import Tuple
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| 23 |
+
from transformers import PreTrainedTokenizer, set_seed
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| 24 |
+
import torch
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| 25 |
+
from tqdm import tqdm
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| 26 |
+
import time
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| 27 |
+
from sympy import N, simplify
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| 28 |
+
from sympy.parsing.latex import parse_latex
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| 29 |
+
import random
|
| 30 |
+
from pathlib import Path
|
| 31 |
+
from openai import OpenAI
|
| 32 |
+
|
| 33 |
+
client = OpenAI(
|
| 34 |
+
base_url="https://ji0rhe7rvh6wrfmq.us-east-1.aws.endpoints.huggingface.cloud/v1/",
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| 35 |
+
api_key=os.environ.get("HF_TOKEN"),
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| 36 |
+
)
|
| 37 |
+
|
| 38 |
+
|
| 39 |
+
@dataclass
|
| 40 |
+
class Config:
|
| 41 |
+
model_id: str # SELECT MODEL
|
| 42 |
+
revision: str # SELECT REVISION
|
| 43 |
+
|
| 44 |
+
# Append an optional system prompt to each problem
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| 45 |
+
system_prompt: str
|
| 46 |
+
|
| 47 |
+
# Number of samples to generate per problem
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| 48 |
+
num_samples: int
|
| 49 |
+
num_generations: int
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| 50 |
+
# Generation parameters
|
| 51 |
+
do_sample: bool
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| 52 |
+
temperature: float
|
| 53 |
+
top_p: float
|
| 54 |
+
top_k: int
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| 55 |
+
max_new_tokens: int
|
| 56 |
+
restart_on_fail: bool
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| 57 |
+
|
| 58 |
+
# Enable 4-bit quantization
|
| 59 |
+
is_quantized: bool
|
| 60 |
+
|
| 61 |
+
# Run on train or test data?
|
| 62 |
+
is_submission: bool = True if os.getenv("KAGGLE_IS_COMPETITION_RERUN") else False
|
| 63 |
+
validation_set: str = "kaggle-validation-set-medium"
|
| 64 |
+
|
| 65 |
+
notebook_time_limit: int = 9 * 60 * 60 - 15 * 60 # 9 hours - 15 minute buffer
|
| 66 |
+
|
| 67 |
+
# Debug by solving only the first problem
|
| 68 |
+
debug: bool = False
|
| 69 |
+
|
| 70 |
+
# Push solutions to the Hub
|
| 71 |
+
push_to_hub: bool = False
|
| 72 |
+
|
| 73 |
+
|
| 74 |
+
class PythonREPL:
|
| 75 |
+
def __init__(self, timeout=5):
|
| 76 |
+
self.timeout = timeout
|
| 77 |
+
|
| 78 |
+
def execute(self, query: str) -> Tuple[bool, str]:
|
| 79 |
+
query = "import math\nimport numpy as np\nimport sympy as sp\n" + query
|
| 80 |
+
query = query.strip().split("\n")
|
| 81 |
+
if "print(" not in query[-1]:
|
| 82 |
+
if "#" in query[-1]:
|
| 83 |
+
query[-1] = query[-1].split("#")[0]
|
| 84 |
+
query[-1] = "print(" + query[-1] + ")"
|
| 85 |
+
query = "\n".join(query)
|
| 86 |
+
|
| 87 |
+
with tempfile.TemporaryDirectory() as temp_dir:
|
| 88 |
+
temp_file_path = os.path.join(temp_dir, "tmp.py")
|
| 89 |
+
|
| 90 |
+
with open(temp_file_path, "w") as f:
|
| 91 |
+
f.write(query)
|
| 92 |
+
|
| 93 |
+
result = subprocess.run(
|
| 94 |
+
["python3", temp_file_path],
|
| 95 |
+
capture_output=True,
|
| 96 |
+
check=False,
|
| 97 |
+
text=True,
|
| 98 |
+
timeout=self.timeout,
|
| 99 |
+
)
|
| 100 |
+
|
| 101 |
+
if result.returncode == 0:
|
| 102 |
+
output = result.stdout
|
| 103 |
+
return True, output.strip()
|
| 104 |
+
else:
|
| 105 |
+
error_msg = result.stderr.strip()
|
| 106 |
+
msgs = error_msg.split("\n")
|
| 107 |
+
new_msgs = []
|
| 108 |
+
want_next = False
|
| 109 |
+
for m in msgs:
|
| 110 |
+
if "Traceback" in m:
|
| 111 |
+
new_msgs.append(m)
|
| 112 |
+
elif m == msgs[-1]:
|
| 113 |
+
new_msgs.append(m)
|
| 114 |
+
elif temp_file_path in m:
|
| 115 |
+
st = m.index('"/') + 1 if '"/' in m else 0
|
| 116 |
+
ed = m.index(temp_file_path) + 1 if temp_file_path in m else None
|
| 117 |
+
clr = m[st:ed] if not ed else m[st:]
|
| 118 |
+
m = m.replace(clr, "")
|
| 119 |
+
new_msgs.append(m)
|
| 120 |
+
want_next = True
|
| 121 |
+
elif want_next:
|
| 122 |
+
new_msgs.append(m)
|
| 123 |
+
want_next = False
|
| 124 |
+
error_msg = "\n".join(new_msgs)
|
| 125 |
+
return False, error_msg.strip()
|
| 126 |
+
|
| 127 |
+
def __call__(self, query: str) -> Tuple[bool, str]:
|
| 128 |
+
with ThreadPoolExecutor() as executor:
|
| 129 |
+
future = executor.submit(self.execute, query)
|
| 130 |
+
try:
|
| 131 |
+
return future.result(timeout=self.timeout)
|
| 132 |
+
except TimeoutError:
|
| 133 |
+
return False, f"Timed out after {self.timeout} seconds."
|
| 134 |
+
|
| 135 |
+
|
| 136 |
+
def execute_completion(
|
| 137 |
+
executor: PythonREPL,
|
| 138 |
+
completion: str,
|
| 139 |
+
return_status: bool = False,
|
| 140 |
+
last_code_block: bool = False,
|
| 141 |
+
) -> str | Tuple[str, bool]:
|
| 142 |
+
# executions = ["!" + code for code in re.findall(r"```bash(.*?)```", completion, re.DOTALL) if "!" not in code]
|
| 143 |
+
executions = re.findall(r"```python(.*?)```", completion, re.DOTALL)
|
| 144 |
+
|
| 145 |
+
if len(executions) == 0: # directly return cot result
|
| 146 |
+
return completion, False if return_status else completion
|
| 147 |
+
else:
|
| 148 |
+
if last_code_block:
|
| 149 |
+
executions = [executions[-1]]
|
| 150 |
+
|
| 151 |
+
# Python
|
| 152 |
+
execution_outputs = []
|
| 153 |
+
successes = []
|
| 154 |
+
for code in executions:
|
| 155 |
+
success = False
|
| 156 |
+
|
| 157 |
+
if "subprocess" in code:
|
| 158 |
+
output = "subprocess is not allowed"
|
| 159 |
+
execution_outputs.append(output)
|
| 160 |
+
successes.append(success)
|
| 161 |
+
continue
|
| 162 |
+
|
| 163 |
+
if "venv" in code:
|
| 164 |
+
output = "venv is not allowed"
|
| 165 |
+
execution_outputs.append(output)
|
| 166 |
+
successes.append(success)
|
| 167 |
+
continue
|
| 168 |
+
|
| 169 |
+
try:
|
| 170 |
+
success, output = executor(code)
|
| 171 |
+
except TimeoutError as e:
|
| 172 |
+
print("time out")
|
| 173 |
+
output = e
|
| 174 |
+
|
| 175 |
+
if not success and not return_status:
|
| 176 |
+
output = ""
|
| 177 |
+
|
| 178 |
+
execution_outputs.append(output)
|
| 179 |
+
successes.append(success)
|
| 180 |
+
|
| 181 |
+
output = str(execution_outputs[-1]).strip()
|
| 182 |
+
success = successes[-1]
|
| 183 |
+
|
| 184 |
+
if return_status:
|
| 185 |
+
return output, success
|
| 186 |
+
else:
|
| 187 |
+
return output
|
| 188 |
+
|
| 189 |
+
|
| 190 |
+
def postprocess_completion(
|
| 191 |
+
text: str, return_status: bool = False, last_code_block=False, timeout=5
|
| 192 |
+
) -> str | Tuple[str, bool]:
|
| 193 |
+
executor = PythonREPL(timeout=timeout)
|
| 194 |
+
|
| 195 |
+
result = execute_completion(executor, text, return_status=return_status, last_code_block=last_code_block)
|
| 196 |
+
del executor
|
| 197 |
+
|
| 198 |
+
return result
|
| 199 |
+
|
| 200 |
+
|
| 201 |
+
def apply_template(example: Dict[str, Any], prompt: str) -> Dict[str, Any]:
|
| 202 |
+
return prompt.format(example["prompt"], "{}")
|
| 203 |
+
|
| 204 |
+
|
| 205 |
+
def last_boxed_only_string(string):
|
| 206 |
+
"""
|
| 207 |
+
Extracts the last LaTeX boxed or framed expression from a string.
|
| 208 |
+
Args:
|
| 209 |
+
string (str): The input string containing LaTeX expressions.
|
| 210 |
+
Returns:
|
| 211 |
+
str or None: The last boxed or framed expression, if found;
|
| 212 |
+
otherwise, None.
|
| 213 |
+
"""
|
| 214 |
+
|
| 215 |
+
idx = string.rfind("\\boxed")
|
| 216 |
+
if idx < 0:
|
| 217 |
+
idx = string.rfind("\\fbox")
|
| 218 |
+
if idx < 0:
|
| 219 |
+
return None
|
| 220 |
+
|
| 221 |
+
i = idx
|
| 222 |
+
right_brace_idx = None
|
| 223 |
+
num_left_braces_open = 0
|
| 224 |
+
while i < len(string):
|
| 225 |
+
if string[i] == "{":
|
| 226 |
+
num_left_braces_open += 1
|
| 227 |
+
if string[i] == "}":
|
| 228 |
+
num_left_braces_open -= 1
|
| 229 |
+
if num_left_braces_open == 0:
|
| 230 |
+
right_brace_idx = i
|
| 231 |
+
break
|
| 232 |
+
i += 1
|
| 233 |
+
|
| 234 |
+
if right_brace_idx is None:
|
| 235 |
+
retval = None
|
| 236 |
+
else:
|
| 237 |
+
retval = string[idx : right_brace_idx + 1]
|
| 238 |
+
|
| 239 |
+
return retval
|
| 240 |
+
|
| 241 |
+
|
| 242 |
+
def remove_boxed(s):
|
| 243 |
+
"""
|
| 244 |
+
Removes the LaTeX boxed command, returning the content inside the braces.
|
| 245 |
+
Args:
|
| 246 |
+
s (str): The string containing a LaTeX boxed expression.
|
| 247 |
+
Returns:
|
| 248 |
+
str or None: The content inside the boxed command, if valid;
|
| 249 |
+
otherwise, None.
|
| 250 |
+
"""
|
| 251 |
+
|
| 252 |
+
left = "\\boxed{"
|
| 253 |
+
try:
|
| 254 |
+
assert s[: len(left)] == left
|
| 255 |
+
assert s[-1] == "}"
|
| 256 |
+
length = len(left)
|
| 257 |
+
return s[length:-1]
|
| 258 |
+
except Exception:
|
| 259 |
+
return None
|
| 260 |
+
|
| 261 |
+
|
| 262 |
+
def extract_boxed_answer(pred_str, strip_double_curly_brace=False):
|
| 263 |
+
"""
|
| 264 |
+
Extracts the answer from a LaTeX boxed expression within
|
| 265 |
+
a prediction string.
|
| 266 |
+
Args:
|
| 267 |
+
pred_str (str): The string containing one or more LaTeX
|
| 268 |
+
boxed expressions.
|
| 269 |
+
strip_double_curly_brace (bool): If True, removes an additional
|
| 270 |
+
layer of braces.
|
| 271 |
+
Returns:
|
| 272 |
+
str or None: The extracted answer, if any; otherwise, None.
|
| 273 |
+
"""
|
| 274 |
+
|
| 275 |
+
boxed_str = last_boxed_only_string(pred_str)
|
| 276 |
+
if boxed_str is None:
|
| 277 |
+
return None
|
| 278 |
+
answer = remove_boxed(boxed_str)
|
| 279 |
+
if answer is None:
|
| 280 |
+
return None
|
| 281 |
+
if strip_double_curly_brace:
|
| 282 |
+
match = re.match("^\{(.*)\}$", answer) # noqa: W605
|
| 283 |
+
if match:
|
| 284 |
+
answer = match.group(1)
|
| 285 |
+
return answer
|
| 286 |
+
|
| 287 |
+
|
| 288 |
+
def normalize_final_answer(final_answer: str) -> str:
|
| 289 |
+
"""
|
| 290 |
+
Normalizes a final answer string by removing or replacing various LaTeX
|
| 291 |
+
and text elements.
|
| 292 |
+
Args:
|
| 293 |
+
final_answer (str): The answer string to normalize.
|
| 294 |
+
Returns:
|
| 295 |
+
str: The normalized answer string.
|
| 296 |
+
"""
|
| 297 |
+
|
| 298 |
+
match = re.search(r"(.*?)Problem:", final_answer, flags=re.S)
|
| 299 |
+
if match:
|
| 300 |
+
final_answer = match.group(1) # 返回匹配的第一部分,即"Problem"之前的所有文本
|
| 301 |
+
"""Normalize a final answer to a quantitative reasoning question."""
|
| 302 |
+
# final_answer = final_answer.split('=')[-1]
|
| 303 |
+
SUBSTITUTIONS = [
|
| 304 |
+
("an ", ""),
|
| 305 |
+
("a ", ""),
|
| 306 |
+
(".$", "$"),
|
| 307 |
+
("\\$", ""),
|
| 308 |
+
(r"\ ", ""),
|
| 309 |
+
(" ", ""),
|
| 310 |
+
("mbox", "text"),
|
| 311 |
+
(",\\text{and}", ","),
|
| 312 |
+
("\\text{and}", ","),
|
| 313 |
+
("\\text{m}", "\\text{}"),
|
| 314 |
+
("\\le", "<"),
|
| 315 |
+
]
|
| 316 |
+
REMOVED_EXPRESSIONS = [
|
| 317 |
+
"square",
|
| 318 |
+
"ways",
|
| 319 |
+
"integers",
|
| 320 |
+
"dollars",
|
| 321 |
+
"mph",
|
| 322 |
+
"inches",
|
| 323 |
+
"ft",
|
| 324 |
+
"hours",
|
| 325 |
+
"km",
|
| 326 |
+
"units",
|
| 327 |
+
"\\ldots",
|
| 328 |
+
"sue",
|
| 329 |
+
"points",
|
| 330 |
+
"feet",
|
| 331 |
+
"minutes",
|
| 332 |
+
"digits",
|
| 333 |
+
"cents",
|
| 334 |
+
"degrees",
|
| 335 |
+
"cm",
|
| 336 |
+
"gm",
|
| 337 |
+
"pounds",
|
| 338 |
+
"meters",
|
| 339 |
+
"meals",
|
| 340 |
+
"edges",
|
| 341 |
+
"students",
|
| 342 |
+
"childrentickets",
|
| 343 |
+
"multiples",
|
| 344 |
+
"\\text{s}",
|
| 345 |
+
"\\text{.}",
|
| 346 |
+
"\\text{\ns}",
|
| 347 |
+
"\\text{}^2",
|
| 348 |
+
"\\text{}^3",
|
| 349 |
+
"\\text{\n}",
|
| 350 |
+
"\\text{}",
|
| 351 |
+
r"\mathrm{th}",
|
| 352 |
+
r"^\circ",
|
| 353 |
+
r"^{\circ}",
|
| 354 |
+
r"\;",
|
| 355 |
+
r",\!",
|
| 356 |
+
"{,}",
|
| 357 |
+
'"',
|
| 358 |
+
"\\dots",
|
| 359 |
+
"\n",
|
| 360 |
+
"\r",
|
| 361 |
+
"\f",
|
| 362 |
+
"\%",
|
| 363 |
+
]
|
| 364 |
+
for before, after in SUBSTITUTIONS:
|
| 365 |
+
final_answer = final_answer.replace(before, after)
|
| 366 |
+
for expr in REMOVED_EXPRESSIONS:
|
| 367 |
+
final_answer = final_answer.replace(expr, "")
|
| 368 |
+
|
| 369 |
+
# Extract answer that is in LaTeX math, is bold,
|
| 370 |
+
# is surrounded by a box, etc.
|
| 371 |
+
final_answer = re.sub(r"(\\text\{)(.*?)(\})", "\\2", final_answer)
|
| 372 |
+
final_answer = re.sub(r"(\\textbf\{)(.*?)(\})", "\\2", final_answer)
|
| 373 |
+
final_answer = re.sub(r"(\\overline\{)(.*?)(\})", "\\2", final_answer)
|
| 374 |
+
final_answer = re.sub(r"(\\boxed\{)(.*)(\})", "\\2", final_answer)
|
| 375 |
+
assert "\n" not in final_answer
|
| 376 |
+
assert "\r" not in final_answer
|
| 377 |
+
assert "\f" not in final_answer
|
| 378 |
+
if len(re.findall(r"finalansweris(.*)", final_answer)) > 0:
|
| 379 |
+
final_answer = re.findall(r"finalansweris(.*)", final_answer)[-1]
|
| 380 |
+
|
| 381 |
+
if len(re.findall(r"answer?is:?(.*)", final_answer)) > 0:
|
| 382 |
+
final_answer = re.findall(r"answer?is:?(.*)", final_answer)[-1]
|
| 383 |
+
|
| 384 |
+
if len(re.findall(r"oxed\{(.*?)\}", final_answer)) > 0:
|
| 385 |
+
final_answer = re.findall(r"oxed\{(.*?)\}", final_answer)[-1]
|
| 386 |
+
|
| 387 |
+
if len(re.findall(r"\$(.*?)\$", final_answer)) > 0:
|
| 388 |
+
final_answer = re.findall(r"\$(.*?)\$", final_answer)[-1]
|
| 389 |
+
final_answer = final_answer.strip()
|
| 390 |
+
if "rac" in final_answer and "\\frac" not in final_answer:
|
| 391 |
+
final_answer = final_answer.replace("rac", "\\frac")
|
| 392 |
+
|
| 393 |
+
final_answer = re.sub(r"(frac)([^{])(.)", "frac{\\2}{\\3}", final_answer)
|
| 394 |
+
final_answer = re.sub(r"(sqrt)([^{])", "sqrt{\\2}", final_answer)
|
| 395 |
+
final_answer = final_answer.replace("$", "")
|
| 396 |
+
|
| 397 |
+
if final_answer.replace(",", "").isdigit():
|
| 398 |
+
final_answer = final_answer.replace(",", "")
|
| 399 |
+
|
| 400 |
+
return final_answer
|
| 401 |
+
|
| 402 |
+
|
| 403 |
+
def naive_parse(answer: str) -> str:
|
| 404 |
+
"""
|
| 405 |
+
Extracts and returns the numeric digits from the input string, processing them in reverse order
|
| 406 |
+
until a non-numeric character is encountered after encountering the first numeric character.
|
| 407 |
+
|
| 408 |
+
Args:
|
| 409 |
+
answer (str): The input string to parse.
|
| 410 |
+
|
| 411 |
+
Returns:
|
| 412 |
+
str: A string consisting of the numeric digits extracted from the input, in their original order.
|
| 413 |
+
|
| 414 |
+
Example:
|
| 415 |
+
>>> naive_parse("abc123def")
|
| 416 |
+
'123'
|
| 417 |
+
>>> naive_parse("def456ghi")
|
| 418 |
+
'456'
|
| 419 |
+
>>> naive_parse("no numbers here")
|
| 420 |
+
''
|
| 421 |
+
"""
|
| 422 |
+
out = []
|
| 423 |
+
start = False
|
| 424 |
+
end = False
|
| 425 |
+
for l in reversed(list(answer)):
|
| 426 |
+
if l in "0123456789" and not end:
|
| 427 |
+
start = True
|
| 428 |
+
out.append(l)
|
| 429 |
+
else:
|
| 430 |
+
if start:
|
| 431 |
+
end = True
|
| 432 |
+
|
| 433 |
+
out = reversed(out)
|
| 434 |
+
return "".join(out)
|
| 435 |
+
|
| 436 |
+
|
| 437 |
+
def validate_answer_is_numeric(x: str | int | float) -> int:
|
| 438 |
+
FLOAT_TOLERANCE = 0.2
|
| 439 |
+
try:
|
| 440 |
+
x = round(float(x))
|
| 441 |
+
f = float(x)
|
| 442 |
+
if abs(x - f) > FLOAT_TOLERANCE:
|
| 443 |
+
x = -1
|
| 444 |
+
except Exception:
|
| 445 |
+
x = -1
|
| 446 |
+
return x
|
| 447 |
+
|
| 448 |
+
|
| 449 |
+
def get_majority_vote(responses: List[int]) -> int:
|
| 450 |
+
if len(responses) < 1:
|
| 451 |
+
return 0
|
| 452 |
+
else:
|
| 453 |
+
c = Counter(responses)
|
| 454 |
+
value, count = c.most_common()[0]
|
| 455 |
+
return value
|
| 456 |
+
|
| 457 |
+
|
| 458 |
+
def filter_answers(answers: List[str]) -> List[int]:
|
| 459 |
+
formatted_answers = [validate_answer_is_numeric(a) for a in answers]
|
| 460 |
+
|
| 461 |
+
# Filter for non-negative answers
|
| 462 |
+
formatted_answers = [a for a in formatted_answers if a >= 0]
|
| 463 |
+
# Compute modulo
|
| 464 |
+
formatted_answers = [a % 1_000 for a in formatted_answers]
|
| 465 |
+
# less than 2.1 billion or cannot convert to C int (32-bit)
|
| 466 |
+
formatted_answers = [a for a in formatted_answers if a <= 999]
|
| 467 |
+
return formatted_answers
|
| 468 |
+
|
| 469 |
+
|
| 470 |
+
def check_sympy_equivalence(ref_answer: str, model_answer: str) -> bool:
|
| 471 |
+
def do_answers_match(ref_answer: str, model_answer: str) -> bool:
|
| 472 |
+
ref_sympy = parse_latex(ref_answer)
|
| 473 |
+
model_sympy = parse_latex(model_answer)
|
| 474 |
+
diff = simplify(ref_sympy - model_sympy)
|
| 475 |
+
return True if -1e-12 < N(diff) < 1e-12 or diff.is_zero else False
|
| 476 |
+
|
| 477 |
+
try:
|
| 478 |
+
result = do_answers_match(ref_answer, model_answer)
|
| 479 |
+
return result
|
| 480 |
+
except Exception as e:
|
| 481 |
+
print(e)
|
| 482 |
+
return False
|
| 483 |
+
|
| 484 |
+
|
| 485 |
+
def check_string_match(ref_answer: str, model_answer: str) -> bool:
|
| 486 |
+
try:
|
| 487 |
+
return ref_answer == model_answer
|
| 488 |
+
except Exception as e:
|
| 489 |
+
print(e)
|
| 490 |
+
return False
|
| 491 |
+
|
| 492 |
+
|
| 493 |
+
def check_answer(ref_answer: str, model_answer: str) -> bool:
|
| 494 |
+
# check if strings are the same
|
| 495 |
+
correct = check_string_match(ref_answer, model_answer)
|
| 496 |
+
if correct:
|
| 497 |
+
return True
|
| 498 |
+
|
| 499 |
+
# use the sympy library to check if the expressions are the same
|
| 500 |
+
correct = check_sympy_equivalence(ref_answer, model_answer)
|
| 501 |
+
if correct:
|
| 502 |
+
return True
|
| 503 |
+
|
| 504 |
+
return False
|
| 505 |
+
|
| 506 |
+
|
| 507 |
+
debug = False
|
| 508 |
+
model_id = "Numina-Math-7B"
|
| 509 |
+
revision = "main"
|
| 510 |
+
system_prompt = "{}"
|
| 511 |
+
validation_set = "kaggle-validation-set-medium"
|
| 512 |
+
is_submission = True
|
| 513 |
+
num_samples = 4
|
| 514 |
+
num_generations = 4
|
| 515 |
+
temperature = 0.8
|
| 516 |
+
is_quantized = False
|
| 517 |
+
restart_on_fail = False
|
| 518 |
+
top_p = 1.0
|
| 519 |
+
top_k = 0
|
| 520 |
+
max_new_tokens = 2048
|
| 521 |
+
# Papermill related variables
|
| 522 |
+
push_to_hub = False
|
| 523 |
+
notebook_name = ""
|
| 524 |
+
|
| 525 |
+
config = Config(
|
| 526 |
+
debug=debug,
|
| 527 |
+
push_to_hub=push_to_hub,
|
| 528 |
+
model_id=model_id,
|
| 529 |
+
revision=revision,
|
| 530 |
+
system_prompt=system_prompt,
|
| 531 |
+
validation_set=validation_set,
|
| 532 |
+
is_quantized=is_quantized,
|
| 533 |
+
restart_on_fail=restart_on_fail,
|
| 534 |
+
is_submission=is_submission,
|
| 535 |
+
num_samples=num_samples,
|
| 536 |
+
num_generations=num_generations,
|
| 537 |
+
do_sample=True,
|
| 538 |
+
temperature=temperature,
|
| 539 |
+
top_p=top_p,
|
| 540 |
+
top_k=top_k,
|
| 541 |
+
max_new_tokens=max_new_tokens,
|
| 542 |
+
)
|
| 543 |
+
print(f"=== Running submission with config ===\n\n{config}")
|
| 544 |
+
|
| 545 |
+
|
| 546 |
+
def generate(message):
|
| 547 |
+
chat_completion = client.chat.completions.create(
|
| 548 |
+
model="tgi",
|
| 549 |
+
messages=message,
|
| 550 |
+
stream=True,
|
| 551 |
+
max_tokens=1024,
|
| 552 |
+
stop=["```output\n"],
|
| 553 |
+
temperature=temperature,
|
| 554 |
+
)
|
| 555 |
+
|
| 556 |
+
for message in chat_completion:
|
| 557 |
+
yield message.choices[0].delta.content
|
| 558 |
+
|
| 559 |
+
|
| 560 |
+
def get_majority_text(data):
|
| 561 |
+
from collections import Counter
|
| 562 |
+
|
| 563 |
+
# Count the frequency of each answer in model_answers
|
| 564 |
+
answer_counts = Counter(data["model_answers"])
|
| 565 |
+
|
| 566 |
+
# Find the majority response
|
| 567 |
+
majority_response = answer_counts.most_common(1)[0][0]
|
| 568 |
+
|
| 569 |
+
# Find the index of the first occurrence of the majority response
|
| 570 |
+
majority_index = data["model_answers"].index(majority_response)
|
| 571 |
+
|
| 572 |
+
# Return the corresponding text in gen_texts
|
| 573 |
+
return data["gen_texts"][majority_index]
|
| 574 |
+
|
| 575 |
+
|
| 576 |
+
def extract_solution(text):
|
| 577 |
+
# Split the text at "### Solution:"
|
| 578 |
+
parts = text.split("### Solution:", 1)
|
| 579 |
+
if len(parts) > 1:
|
| 580 |
+
# Return everything after "### Solution:"
|
| 581 |
+
return parts[1].strip()
|
| 582 |
+
else:
|
| 583 |
+
# Return an empty string if "### Solution:" is not found
|
| 584 |
+
return ""
|
| 585 |
+
|
| 586 |
+
|
| 587 |
+
def process_code(
|
| 588 |
+
example: Dict[str, Any],
|
| 589 |
+
config: Config,
|
| 590 |
+
restart_on_fail: bool = False,
|
| 591 |
+
last_step: bool = False,
|
| 592 |
+
) -> Dict[str, Any]:
|
| 593 |
+
gen_text = example["gen_texts"]
|
| 594 |
+
num_python_blocks = len(re.findall(r"```python(.*?)```", gen_text, re.DOTALL))
|
| 595 |
+
|
| 596 |
+
if num_python_blocks == 0:
|
| 597 |
+
if restart_on_fail:
|
| 598 |
+
print("no code has ever been generated, RESTARTING")
|
| 599 |
+
# reset the text to the original
|
| 600 |
+
example["gen_texts"] = example["text"]
|
| 601 |
+
else:
|
| 602 |
+
print("no code has ever been generated, STOP")
|
| 603 |
+
example["should_prune"] = True
|
| 604 |
+
example["has_code"] = False
|
| 605 |
+
return example
|
| 606 |
+
|
| 607 |
+
if gen_text[-10:] != "```output\n" and ("answer is" in gen_text[-100:] or "\\boxed" in gen_text[-100:]):
|
| 608 |
+
num_output_blocks = len(re.findall(r"```output(.*?)```", gen_text, re.DOTALL))
|
| 609 |
+
if num_output_blocks == 0:
|
| 610 |
+
print("the model hallucinated the code answer")
|
| 611 |
+
example["should_prune"] = True
|
| 612 |
+
return example
|
| 613 |
+
|
| 614 |
+
if "boxed" in gen_text[-100:]:
|
| 615 |
+
try:
|
| 616 |
+
answer = normalize_final_answer(extract_boxed_answer(gen_text[-100:]))
|
| 617 |
+
except Exception:
|
| 618 |
+
answer = "-1"
|
| 619 |
+
else:
|
| 620 |
+
answer = normalize_final_answer(gen_text[-100:])
|
| 621 |
+
|
| 622 |
+
example["model_answers"] = answer
|
| 623 |
+
if not config.is_submission:
|
| 624 |
+
example["corrects"] = check_answer(example["ground_truth"], answer)
|
| 625 |
+
example["should_prune"] = True
|
| 626 |
+
print("Answer is: ", answer, example["ground_truth"], example["corrects"])
|
| 627 |
+
return example
|
| 628 |
+
|
| 629 |
+
if last_step:
|
| 630 |
+
# no point in continuing if we are at the last step
|
| 631 |
+
return example
|
| 632 |
+
|
| 633 |
+
if gen_text[-10:] != "```output\n":
|
| 634 |
+
# something else has gone wrong with the generation
|
| 635 |
+
print("warning: output block not found: ", gen_text[-40:])
|
| 636 |
+
if restart_on_fail:
|
| 637 |
+
example["gen_texts"] = example["text"]
|
| 638 |
+
else:
|
| 639 |
+
example["should_prune"] = True
|
| 640 |
+
return example
|
| 641 |
+
|
| 642 |
+
code_result, status = postprocess_completion(gen_text, return_status=True, last_code_block=True)
|
| 643 |
+
# add the code result for the next round of generation
|
| 644 |
+
TRUNCATION_LIMIT = 200
|
| 645 |
+
if len(code_result) > TRUNCATION_LIMIT:
|
| 646 |
+
code_result = code_result[:TRUNCATION_LIMIT] + " ... (output truncated)"
|
| 647 |
+
example["gen_texts"] = gen_text + f"{code_result}\n```"
|
| 648 |
+
|
| 649 |
+
return example
|
| 650 |
+
|
| 651 |
+
|
| 652 |
+
# load the vllm instance and set sampling parameters
|
| 653 |
+
# vllm = build_vllm(config)
|
| 654 |
+
|
| 655 |
+
|
| 656 |
+
def solve_problem(problem, temperature, progress=gr.Progress()):
|
| 657 |
+
problem = apply_template({"prompt": problem}, prompt=config.system_prompt)
|
| 658 |
+
print(f"Problem: {problem}")
|
| 659 |
+
|
| 660 |
+
sample = {
|
| 661 |
+
"problem": problem, # not used for the submission TODO Remove
|
| 662 |
+
"ground_truth": "unknown", # not used for the submission TODO Remove
|
| 663 |
+
"text": "### Solution:\n",
|
| 664 |
+
"gen_texts": "### Solution:\n", # used to store all the generated text
|
| 665 |
+
"should_prune": False,
|
| 666 |
+
"problem_index": -1, # not used for the submission TODO Remove
|
| 667 |
+
"model_answers": "-1",
|
| 668 |
+
"has_code": True,
|
| 669 |
+
"corrects": False, # not used for the submission TODO Remove
|
| 670 |
+
}
|
| 671 |
+
|
| 672 |
+
for step in progress.tqdm(
|
| 673 |
+
range(config.num_generations), desc="Generating candidates"
|
| 674 |
+
): # Depth of the tree (e.g. 6 steps = 5 code blocks)
|
| 675 |
+
|
| 676 |
+
step_reponse = sample["gen_texts"]
|
| 677 |
+
|
| 678 |
+
messages = [
|
| 679 |
+
{"role": "user", "content": sample["problem"]},
|
| 680 |
+
{"role": "assistant", "content": sample["gen_texts"]},
|
| 681 |
+
]
|
| 682 |
+
|
| 683 |
+
for reponse_message in generate(messages, temperature):
|
| 684 |
+
if reponse_message is not None:
|
| 685 |
+
step_reponse += reponse_message
|
| 686 |
+
yield step_reponse
|
| 687 |
+
|
| 688 |
+
sample["gen_texts"] = step_reponse
|
| 689 |
+
|
| 690 |
+
# TODO: Maybe it should just return the result of running the code
|
| 691 |
+
sample = process_code(
|
| 692 |
+
sample,
|
| 693 |
+
config=config,
|
| 694 |
+
restart_on_fail=config.restart_on_fail,
|
| 695 |
+
last_step=(step == (config.num_generations - 1)),
|
| 696 |
+
)
|
| 697 |
+
sample["gen_texts"] = sample["gen_texts"] + "\n"
|
| 698 |
+
|
| 699 |
+
run_code_reponse = sample["gen_texts"].replace(step_reponse, "")
|
| 700 |
+
|
| 701 |
+
for output_mseeage in run_code_reponse:
|
| 702 |
+
if output_mseeage is not None:
|
| 703 |
+
step_reponse += output_mseeage
|
| 704 |
+
yield step_reponse
|
| 705 |
+
|
| 706 |
+
if sample["should_prune"]:
|
| 707 |
+
break
|
| 708 |
+
|
| 709 |
+
yield sample["gen_texts"]
|
| 710 |
+
|
| 711 |
+
|
| 712 |
+
with gr.Blocks() as demo:
|
| 713 |
+
with gr.Row():
|
| 714 |
+
inp = gr.Textbox(placeholder="Problem", label="Problem", lines=5)
|
| 715 |
+
with gr.Accordion("Advanced Options", open=False):
|
| 716 |
+
temperature = gr.Slider(minimum=0.0, maximum=1.0, value=0.8, step=0.1, label="Temperature")
|
| 717 |
+
with gr.Row():
|
| 718 |
+
out = gr.Markdown()
|
| 719 |
+
|
| 720 |
+
btn = gr.Button("Run")
|
| 721 |
+
btn.click(fn=solve_problem, inputs=[inp, temperature], outputs=out)
|
| 722 |
+
|
| 723 |
+
|
| 724 |
+
if __name__ == "__main__":
|
| 725 |
+
demo.queue(default_concurrency_limit=5).launch()
|