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main.py
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from pylatex import Document, Section, Subsection, Command
from pylatex.utils import italic, NoEscape
from pylatex.package import Package
from datetime import datetime
# seed the pseudorandom number generator
from random import seed
from random import random
import os
import shutil
def prep_str(str):
# Check the string length
empty_spaces_needed = 4 - len(str)
new_str = ''
counter = 0
for i in range(0, 4):
if empty_spaces_needed != 0:
new_str = new_str + '& '
empty_spaces_needed -= 1
else:
new_str = new_str + '& {} '.format(str[counter])
counter += 1
return new_str
def generate_value(doc, doc2, difficulty):
operator = '+ '
# Get addition/subtraction/multiplication/division depending on difficulty
if difficulty == 1:
operator = '+ '
# First difficulty is singular numbers being added together
# Get first number
number1 = int((random() * 11))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 11))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number2 + number1))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 2:
operator = '- '
# Second difficulty is subtraction but always positive
# Get first number
number1 = int((random() * 50)) + 50
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 50))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 - number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 3:
operator = '+ '
# First difficulty is singular numbers being added together
# Get first number
number1 = int((random() * 101))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 101))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 + number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 4:
operator = '- '
# Negative numbers
# Get first number
number1 = int((random() * 101))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 101))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 - number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 5:
# Negative numbers and additions
# Get first number
number1 = int((random() * 101))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 101))
number2_str = prep_str(str(number2)) # Create the first string
number3 = int((random() * 100))
if number3 > 50:
operator = '- '
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 - number2))
else:
operator = '+ '
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 + number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 6:
operator = 'x '
# multiplication
# Get first number
number1 = int((random() * 13))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 13))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 * number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 7:
operator = 'x '
# multiplication
# Get first number
number1 = int((random() * 13))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 101))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 * number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 8:
operator = 'x '
# multiplication
# Get first number
number1 = int((random() * 101))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 101))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number1 * number2))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 9:
operator = r'÷ '
# multiplication
# Get first number
number1 = int((random() * 101)) + 1 # need the + 1 so no division by 0
number1_str = prep_str(str(number1)) # Create the first string
number2 = number1 * int((random() * 11))
number2_str = prep_str(str(number2)) # Create the first string
number1_str = operator + number1_str # Add operator
sol_str = prep_str(str(number2 / number1))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
if difficulty == 10:
operator = r'÷ '
# multiplication
# Get first number
number3 = int((random() * 100))
if number3 > 50:
# multiplication
operator = r'x '
number1 = int((random() * 101))
number1_str = prep_str(str(number1)) # Create the first string
number2 = int((random() * 101))
number2_str = prep_str(str(number2)) # Create the first string
number2_str = operator + number2_str # Add operator
sol_str = prep_str(str(number2 * number1))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
else:
# division
number1 = int((random() * 101)) + 1 # need the +1 so no division by 0
number1_str = prep_str(str(number1)) # Create the first string
number2 = number1 * int((random() * 11))
number2_str = prep_str(str(number2)) # Create the first string
number1_str = operator + number1_str # Add operator
sol_str = prep_str(str(number2 / number1))
doc.append(NoEscape(number2_str + r'\\'))
doc.append(NoEscape(number1_str + r'\\'))
doc.append(NoEscape(r'\hline'))
doc2.append(NoEscape(number2_str + r'\\'))
doc2.append(NoEscape(number1_str + r'\\'))
doc2.append(NoEscape(r'\hline'))
doc2.append(NoEscape(sol_str + r'\\'))
def generate_table_row(doc, doc2, difficulty):
#Create table beginning
doc.append(NoEscape(r'\begin{table}[!htb]'))
doc.append(NoEscape(r'\begin{adjustwidth}{-4.0cm}{-4.5cm}'))
doc2.append(NoEscape(r'\begin{table}[!htb]'))
doc2.append(NoEscape(r'\begin{adjustwidth}{-4.0cm}{-4.5cm}'))
for i in range(0,10,1):
doc.append(NoEscape(r'\begin{minipage}{.1\linewidth}'))
doc.append(NoEscape(r'\centering'))
doc.append(NoEscape(r'\begin{tabular}{c@{\,}c@{\,}c@{\,}c@{\,}c}'))
doc2.append(NoEscape(r'\begin{minipage}{.1\linewidth}'))
doc2.append(NoEscape(r'\centering'))
doc2.append(NoEscape(r'\begin{tabular}{c@{\,}c@{\,}c@{\,}c@{\,}c}'))
generate_value(doc, doc2, difficulty)
doc.append(NoEscape(r'\end{tabular}'))
doc.append(NoEscape(r'\end{minipage}'))
doc2.append(NoEscape(r'\end{tabular}'))
doc2.append(NoEscape(r'\end{minipage}'))
doc.append(NoEscape(r'\end{adjustwidth}'))
doc.append(NoEscape(r'\end{table}'))
doc.append(NoEscape(r'\vspace{1.2em}'))
doc2.append(NoEscape(r'\end{adjustwidth}'))
doc2.append(NoEscape(r'\end{table}'))
doc2.append(NoEscape(r'\vspace{0.5em}'))
def create_document(document_name, pdf_name, difficulty, output_directory):
doc = Document(document_name)
doc2 = Document(document_name + '_sols')
# Add required packages
doc.preamble.append(NoEscape(r'\usepackage{background}'))
doc.preamble.append(NoEscape(r'\usepackage{eso-pic}'))
doc.preamble.append(NoEscape(r'\usepackage{changepage}'))
doc2.preamble.append(NoEscape(r'\usepackage{background}'))
doc2.preamble.append(NoEscape(r'\usepackage{eso-pic}'))
doc2.preamble.append(NoEscape(r'\usepackage{changepage}'))
doc.preamble.append(NoEscape(r'\setlength{\textheight}{9in}'))
doc.preamble.append(NoEscape(r'\pagenumbering{gobble}')) # Remove page numbers
doc2.preamble.append(NoEscape(r'\setlength{\textheight}{9in}'))
doc2.preamble.append(NoEscape(r'\pagenumbering{gobble}')) # Remove page numbers
# This is to fix the "no \title available bug"
doc.preamble.append(NoEscape(r'\renewcommand\maketitle{}'))
doc2.preamble.append(NoEscape(r'\renewcommand\maketitle{}'))
# Import the templates
str = r'\newcommand\BackgroundPic{\put(0,0){\parbox[b][\paperheight]{\paperwidth}{\vfill\centering\includegraphics[width=\paperwidth,height=\paperheight]{' + pdf_name + r'}\vfill}}}'
doc.preamble.append(NoEscape(str))
doc2.preamble.append(NoEscape(str))
doc.append(NoEscape(r'\AddToShipoutPicture*{\BackgroundPic}'))
doc.append(NoEscape(r'\maketitle'))
doc2.append(NoEscape(r'\AddToShipoutPicture*{\BackgroundPic}'))
doc2.append(NoEscape(r'\maketitle'))
for i in range (0, 10, 1):
generate_table_row(doc, doc2, difficulty)
doc.generate_pdf(clean_tex=False, compiler='pdfLaTeX', filepath=output_directory + document_name)
doc2.generate_pdf(clean_tex=False, compiler='pdfLaTeX', filepath=output_directory + document_name + '_sols')
def remove_tex_files(path):
dir_list = os.listdir(path)
for item in dir_list:
if item.endswith(".tex"):
os.remove(os.path.join(path, item))
if __name__ == '__main__':
# Basic document
seed(datetime.now())
current_directory = 'C:/Users/massimo/Desktop/flag_project'
output_directory = 'C:/Users/massimo/Desktop/flag_project/outputs/'
number_of_generations = 25
number_of_templates = 2
## NORMAL
# Make root path
og_path = output_directory + "Original"
if os.path.isdir(og_path):
shutil.rmtree(og_path, ignore_errors=False, onerror=None)
os.mkdir(og_path)
page_counter = 1
for k in range (1, 11, 1):
difficulty = k
os.mkdir(og_path + r"/T{}/".format(difficulty))
for i in range(1, number_of_generations + 1, 1):
print("Generating Tier {} set {} of {}".format(difficulty, i, number_of_generations - 1))
document_name = "Tier{}_".format(difficulty) + str(i)
create_document(document_name, current_directory + '/templates/Page {}.pdf'.format(page_counter), difficulty, og_path + r"/T{}/".format(difficulty))
remove_tex_files(og_path + r"/T{}/".format(difficulty))
page_counter += number_of_templates
## PIRATE
# Make root path
og_path = output_directory + "Pirate"
if os.path.isdir(og_path):
shutil.rmtree(og_path, ignore_errors=False, onerror=None)
os.mkdir(og_path)
page_counter = 2
for k in range (1, 11, 1):
difficulty = k
os.mkdir(og_path + r"/T{}/".format(difficulty))
for i in range(1, number_of_generations + 1, 1):
print("Generating Tier {} set {} of {}".format(difficulty, i, number_of_generations - 1))
document_name = "Tier{}_".format(difficulty) + str(i)
create_document(document_name, current_directory + '/templates/Page {}.pdf'.format(page_counter), difficulty, og_path + r"/T{}/".format(difficulty))
remove_tex_files(og_path + r"/T{}/".format(difficulty))
page_counter += number_of_templates