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import tubes | |
import numpy as np | |
from matplotlib import pyplot | |
import glob | |
from os import path | |
FILES = glob.glob(path.expanduser("~/src/data/ngrams/1gram/googlebooks*")) | |
PYTHON_MATCH = '0' | |
PASCAL_MATCH = '1' | |
PERL_MATCH = '2' | |
YEAR_COL = '3' | |
COUNT_COL = '4' | |
def main(): | |
start_time = time.process_time() | |
one_grams_tube = (tubes.Each(FILES) | |
.read_files() | |
.split() | |
.tsv(headers=False) | |
.skip_unless(lambda row: row.get(1).to(int).gt(1799)) | |
.multi(lambda row: ( | |
row.get(0).equals("Python".encode('utf-8')), | |
row.get(0).equals("Pascal".encode('utf-8')), | |
row.get(0).equals("Perl".encode('utf-8')), | |
row.get(1).to(int), | |
row.get(2).to(int) | |
)) | |
) | |
one_grams = one_grams_tube.ndarray(estimated_rows=500_000_000, fields=True) | |
year_totals, bins = np.histogram( | |
one_grams[YEAR_COL], | |
density=False, | |
range=(0, 2009), | |
bins=2009, | |
weights=one_grams[COUNT_COL]) | |
pyplot.figure(figsize=(9,5)) | |
pyplot.title(f"Relative published mention of Language by year", y=1.04) | |
pyplot.xlabel("Publication Year") | |
pyplot.ylabel("Relative mentions") | |
for lang, col in [("Python", PYTHON_MATCH), ("Perl", PERL_MATCH), ("Pascal", PASCAL_MATCH)]: | |
matching_rows = one_grams[one_grams[col] == True] | |
relative_counts = (matching_rows[COUNT_COL] * 100) / year_totals[matching_rows[YEAR_COL]] | |
baseline_rows = matching_rows[YEAR_COL] <= 1960 | |
baseline = relative_counts[baseline_rows].mean() | |
adjusted_counts = relative_counts - baseline | |
pyplot.plot(matching_rows[YEAR_COL], adjusted_counts, label=lang) | |
pyplot.legend() | |
current_axes = pyplot.axis() | |
pyplot.axis([1950, 2009, -0.00001, current_axes[3]]) | |
pyplot.grid(color="black", linewidth=0.3, linestyle='dotted') | |
pyplot.savefig("compare.png", dpi=300, transparent=True) | |
pyplot.show() | |
if __name__ == '__main__': | |
main() |
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