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import re |
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from typing import Dict, List |
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import numpy as np |
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def parse_math_answer(raw_string): |
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def remove_boxed(s): |
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left = "\\boxed{" |
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try: |
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assert s[: len(left)] == left |
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assert s[-1] == "}" |
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answer = s[len(left) : -1] |
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if "=" in answer: |
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answer = answer.split("=")[-1].lstrip(" ") |
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return answer |
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except Exception: |
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return None |
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def last_boxed_only_string(string): |
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idx = string.rfind("\\boxed") |
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if idx < 0: |
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idx = string.rfind("\\fbox") |
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if idx < 0: |
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return None |
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i = idx |
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right_brace_idx = None |
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num_left_braces_open = 0 |
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while i < len(string): |
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if string[i] == "{": |
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num_left_braces_open += 1 |
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if string[i] == "}": |
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num_left_braces_open -= 1 |
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if num_left_braces_open == 0: |
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right_brace_idx = i |
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break |
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i += 1 |
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if right_brace_idx is None: |
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retval = None |
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else: |
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retval = string[idx : right_brace_idx + 1] |
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return retval |
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def get_answer_with_dollar_sign(s): |
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first_pattern = "\$(.*)\$" |
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last_match = None |
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matches = re.findall(first_pattern, s) |
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if matches: |
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last_match = matches[-1] |
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if "=" in last_match: |
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last_match = last_match.split("=")[-1].lstrip(" ") |
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return last_match |
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def get_answer_without_dollar_sign(s): |
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last_match = None |
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if "=" in s: |
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last_match = s.split("=")[-1].lstrip(" ").rstrip(".") |
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if "\\n" in last_match: |
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last_match = last_match.split("\\n")[0] |
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else: |
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pattern = "(?:\\$)?\d+(?:\.\d+)?(?![\w\d])" |
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matches = re.findall(pattern, s) |
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if matches: |
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last_match = matches[-1] |
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return last_match |
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if "\\boxed" in raw_string: |
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answer = remove_boxed(last_boxed_only_string(raw_string)) |
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else: |
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answer = get_answer_with_dollar_sign(raw_string) |
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if not answer: |
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answer = get_answer_without_dollar_sign(raw_string) |
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return answer |
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def _fix_fracs(string): |
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substrs = string.split("\\frac") |
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new_str = substrs[0] |
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if len(substrs) > 1: |
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substrs = substrs[1:] |
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for substr in substrs: |
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new_str += "\\frac" |
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if substr[0] == "{": |
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new_str += substr |
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else: |
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try: |
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assert len(substr) >= 2 |
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except Exception: |
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return string |
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a = substr[0] |
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b = substr[1] |
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if b != "{": |
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if len(substr) > 2: |
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post_substr = substr[2:] |
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new_str += "{" + a + "}{" + b + "}" + post_substr |
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else: |
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new_str += "{" + a + "}{" + b + "}" |
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else: |
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if len(substr) > 2: |
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post_substr = substr[2:] |
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new_str += "{" + a + "}" + b + post_substr |
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else: |
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new_str += "{" + a + "}" + b |
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string = new_str |
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return string |
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def _fix_a_slash_b(string): |
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if len(string.split("/")) != 2: |
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return string |
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a = string.split("/")[0] |
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b = string.split("/")[1] |
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try: |
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a = int(a) |
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b = int(b) |
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assert string == "{}/{}".format(a, b) |
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new_string = "\\frac{" + str(a) + "}{" + str(b) + "}" |
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return new_string |
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except Exception: |
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return string |
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def _remove_right_units(string): |
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if "\\text{ " in string: |
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splits = string.split("\\text{ ") |
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assert len(splits) == 2 |
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return splits[0] |
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else: |
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return string |
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def _fix_sqrt(string): |
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if "\\sqrt" not in string: |
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return string |
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splits = string.split("\\sqrt") |
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new_string = splits[0] |
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for split in splits[1:]: |
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if split[0] != "{": |
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a = split[0] |
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new_substr = "\\sqrt{" + a + "}" + split[1:] |
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else: |
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new_substr = "\\sqrt" + split |
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new_string += new_substr |
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return new_string |
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def _strip_string(string): |
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string = string.replace("\n", "") |
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string = string.replace("\\!", "") |
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string = string.replace("\\\\", "\\") |
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string = string.replace("tfrac", "frac") |
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string = string.replace("dfrac", "frac") |
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string = string.replace("\\left", "") |
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string = string.replace("\\right", "") |
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string = string.replace("^{\\circ}", "") |
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string = string.replace("^\\circ", "") |
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string = string.replace("\\$", "") |
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string = _remove_right_units(string) |
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string = string.replace("\\%", "") |
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string = string.replace("\%", "") |
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string = string.replace(" .", " 0.") |
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string = string.replace("{.", "{0.") |
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if len(string) == 0: |
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return string |
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if string[0] == ".": |
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string = "0" + string |
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if len(string.split("=")) == 2: |
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if len(string.split("=")[0]) <= 2: |
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string = string.split("=")[1] |
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string = _fix_sqrt(string) |
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string = string.replace(" ", "") |
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string = _fix_fracs(string) |
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if string == "0.5": |
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string = "\\frac{1}{2}" |
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string = _fix_a_slash_b(string) |
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return string |
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def is_equiv(str1, str2, verbose=False): |
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if str1 is None and str2 is None: |
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print("WARNING: Both None") |
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return True |
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if str1 is None or str2 is None: |
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return False |
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str1, str2 = parse_math_answer(str1), parse_math_answer(str2) |
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try: |
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ss1 = _strip_string(str1) |
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ss2 = _strip_string(str2) |
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if verbose: |
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print(ss1, ss2) |
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return ss1 == ss2 |
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except Exception: |
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return str1 == str2 |
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def process_results(doc: dict, results: List[str]) -> Dict[str, int]: |
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candidate = results[0] |
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gold = doc["answer"] |
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if not gold: |
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print(doc, candidate, gold) |
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if is_equiv(candidate, gold): |
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retval = 1 |
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else: |
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retval = 0 |
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results = { |
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"acc": retval, |
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} |
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return results |
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def process_results_mcqa(doc, results): |
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results = [result[0] for result in results] |
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gold = doc["gold"] |
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acc = 1.0 if int(np.argmax(results)) in gold else 0.0 |
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completion_len = np.array([float(len(i)) for i in doc["choices"]]) |
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acc_norm = 1.0 if int(np.argmax(results / completion_len)) in gold else 0.0 |
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return { |
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"acc": acc, |
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"acc_norm": acc_norm, |
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} |
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