Files
NexQuant/rdagent/app/quant_factor_benchmark/analysis.py
T
cyncyw 0079a8b4e0 Benchmark (#114)
* Init todo

* Evaluation & dataset

* Generate new data

* dataset generation

* add the result

* Analysis

* Factor update

* Updates

* Reformat analysis.py

* CI fix

---------

Co-authored-by: Young <afe.young@gmail.com>
Co-authored-by: you-n-g <you-n-g@users.noreply.github.com>
2024-07-25 18:22:57 +08:00

185 lines
6.8 KiB
Python

import json
import pickle
import pandas as pd
from pathlib import Path
import matplotlib.pyplot as plt
import seaborn as sns
from rdagent.components.benchmark.eval_method import FactorImplementEval
from rdagent.components.benchmark.conf import BenchmarkSettings
class BenchmarkAnalyzer:
def __init__(self, settings):
self.settings = settings
self.index_map = self.load_index_map()
def load_index_map(self):
index_map = {}
with open(self.settings.bench_data_path, "r") as file:
factor_dict = json.load(file)
for factor_name, data in factor_dict.items():
index_map[factor_name] = (factor_name, data["Category"], data["Difficulty"])
return index_map
def load_data(self, file_path):
file_path = Path(file_path)
if not (file_path.is_file() and file_path.suffix == ".pkl"):
raise ValueError("Invalid file path")
with file_path.open("rb") as f:
res = pickle.load(f)
return res
def process_results(self, results):
final_res = {}
for experiment, path in results.items():
data = self.load_data(path)
summarized_data = FactorImplementEval.summarize_res(data)
processed_data = self.analyze_data(summarized_data)
final_res[experiment] = processed_data.iloc[-1, :]
return final_res
def reformat_succ_rate(self, display_df):
new_idx = []
display_df = display_df[display_df.index.isin(self.index_map.keys())]
for idx in display_df.index:
new_idx.append(self.index_map[idx])
display_df.index = pd.MultiIndex.from_tuples(
new_idx,
names=["Factor", "Category", "Difficulty"],
)
display_df = display_df.swaplevel(0, 2).swaplevel(0, 1).sort_index(axis=0)
return display_df.sort_index(key=lambda x: [{"Easy": 0, "Medium": 1, "Hard": 2, "New Discovery": 3}.get(i, i) for i in x])
def result_all_key_order(self, x):
order_v = []
for i in x:
order_v.append(
{
"avg. Run successful rate": 0,
"avg. Format successful rate": 1,
"avg. Correlation (value only)": 2,
"max. Correlation": 3,
"max. accuracy": 4,
"avg. accuracy": 5,
}.get(i, i),
)
return order_v
def analyze_data(self, sum_df):
index = [
"FactorSingleColumnEvaluator",
"FactorOutputFormatEvaluator",
"FactorRowCountEvaluator",
"FactorIndexEvaluator",
"FactorMissingValuesEvaluator",
"FactorEqualValueCountEvaluator",
"FactorCorrelationEvaluator",
"run factor error",
]
sum_df = sum_df.reindex(index, axis=0)
sum_df_clean = sum_df.T.groupby(level=0).apply(lambda x: x.reset_index(drop=True))
run_error = sum_df_clean["run factor error"].unstack().T.fillna(False).astype(bool)
succ_rate = ~run_error
succ_rate = succ_rate.mean(axis=0).to_frame("success rate")
succ_rate_f = self.reformat_succ_rate(succ_rate)
succ_rate_f
sum_df_clean["FactorRowCountEvaluator"]
format_issue = (
sum_df_clean["FactorRowCountEvaluator"] & sum_df_clean["FactorIndexEvaluator"]
)
eval_series = format_issue.unstack()
succ_rate = eval_series.T.fillna(False).astype(bool) # false indicate failure
format_succ_rate = succ_rate.mean(axis=0).to_frame("success rate")
format_succ_rate_f = self.reformat_succ_rate(format_succ_rate)
corr = sum_df_clean["FactorCorrelationEvaluator"] * format_issue
corr = corr.unstack().T.mean(axis=0).to_frame("corr(only success)")
corr_res = self.reformat_succ_rate(corr)
corr_max = sum_df_clean["FactorCorrelationEvaluator"] * format_issue
corr_max = corr_max.unstack().T.max(axis=0).to_frame("corr(only success)")
corr_max_res = self.reformat_succ_rate(corr_max)
value_max = sum_df_clean["FactorMissingValuesEvaluator"] * format_issue
value_max = value_max.unstack().T.max(axis=0).to_frame("max_value")
value_max_res = self.reformat_succ_rate(value_max)
value_avg = (
(sum_df_clean["FactorMissingValuesEvaluator"] * format_issue)
.unstack()
.T.mean(axis=0)
.to_frame("avg_value")
)
value_avg_res = self.reformat_succ_rate(value_avg)
result_all = pd.concat(
{
"avg. Correlation (value only)": corr_res.iloc[:, 0],
"avg. Format successful rate": format_succ_rate_f.iloc[:, 0],
"avg. Run successful rate": succ_rate_f.iloc[:, 0],
"max. Correlation": corr_max_res.iloc[:, 0],
"max. accuracy": value_max_res.iloc[:, 0],
"avg. accuracy": value_avg_res.iloc[:, 0],
},
axis=1,
)
df = result_all.sort_index(axis=1, key=self.result_all_key_order)
print(df)
# Calculate the mean of each column
mean_values = df.fillna(0.0).mean()
mean_df = pd.DataFrame(mean_values).T
# Assign the MultiIndex to the DataFrame
mean_df.index = pd.MultiIndex.from_tuples([("-", "-", "Average")], names=["Factor", "Category", "Difficulty"])
# Append the mean values to the end of the dataframe
df_w_mean = pd.concat([df, mean_df]).astype("float")
return df_w_mean
class Plotter:
@staticmethod
def change_fs(font_size):
plt.rc("font", size=font_size)
plt.rc("axes", titlesize=font_size)
plt.rc("axes", labelsize=font_size)
plt.rc("xtick", labelsize=font_size)
plt.rc("ytick", labelsize=font_size)
plt.rc("legend", fontsize=font_size)
plt.rc("figure", titlesize=font_size)
@staticmethod
def plot_data(data, file_name):
plt.figure(figsize=(10, 6))
sns.barplot(x="index", y="b", hue="a", data=data)
plt.xlabel("Method")
plt.ylabel("Value")
plt.title("Comparison of Different Methods")
plt.savefig(file_name)
if __name__ == "__main__":
settings = BenchmarkSettings()
benchmark = BenchmarkAnalyzer(settings)
results = {
"1 round experiment": "git_ignore_folder/eval_results/res_promptV220240724-060037.pkl",
}
final_results = benchmark.process_results(results)
final_results_df = pd.DataFrame(final_results)
Plotter.change_fs(20)
plot_data = final_results_df.drop(["max. accuracy", "avg. accuracy"], axis=0).T
plot_data = plot_data.reset_index().melt("index", var_name="a", value_name="b")
Plotter.plot_data(plot_data, "rdagent/app/quant_factor_benchmark/comparison_plot.png")