From 0ee0e2104fd0bf6db3b5a28784121a5624606e7a Mon Sep 17 00:00:00 2001 From: randogoth Date: Mon, 20 Jan 2025 12:39:34 +0200 Subject: [PATCH] web interface --- Pipfile | 3 +- main.py | 165 ++++++++++++++++++++++++++++++++------------------------ 2 files changed, 96 insertions(+), 72 deletions(-) diff --git a/Pipfile b/Pipfile index d7b1181..cd2572a 100644 --- a/Pipfile +++ b/Pipfile @@ -5,9 +5,8 @@ name = "pypi" [packages] randonautentropy = "*" -questionary = "*" -rich = "*" lyagushka = {file = "https://github.com/randogoth/lyagushka/releases/download/1.1.1/lyagushka-1.1.1-cp312-cp312-manylinux_2_34_x86_64.whl"} +streamlit = "*" [dev-packages] diff --git a/main.py b/main.py index 7842277..f93f020 100644 --- a/main.py +++ b/main.py @@ -1,10 +1,9 @@ +import streamlit as st +import streamlit.components.v1 as components from lyagushka import Lyagushka from randonautentropy import rndo import json -import questionary -from rich.console import Console -from rich.text import Text -from rich.progress import Progress, TextColumn, BarColumn +import time # Validate Z-Score def z_thresh(s): @@ -19,105 +18,131 @@ def z_thresh(s): # Generate random data with a specified size and maximum value def generate_random_data(size=1024, max_value=100): random_data = [] - # Calculate the number of bytes required to represent the max value max_value_bytes = (max_value.bit_length() + 7) // 8 max_int_for_bytes = 2**(max_value_bytes * 8) - 1 - # Define the cutoff to ensure uniform distribution mod_cutoff = max_int_for_bytes - (max_int_for_bytes % max_value) - 1 while len(random_data) < size: - # Generate random hexadecimal data hex_data = rndo.get(length=max_value_bytes * size) - # Process the hex data in chunks for i in (hex_data[j:j + 2 * max_value_bytes] for j in range(0, len(hex_data), 2 * max_value_bytes)): - num = int(i, 16) # Convert hex chunk to integer + num = int(i, 16) if num <= mod_cutoff: - # Add the value to random_data if within the cutoff random_data.append(num % (max_value + 1)) - # Break early if enough data is collected if len(random_data) >= size: break return random_data # Analyze and select numbers based on Z-score -def pull_number(numbers: set, top: int, amount: int, z_score: float): - - # Generate and sort a dataset of random numbers +def pull_number(numbers: set, top: int, amount: int, z_score: float, progress_bar, task_name): dataset = generate_random_data(3000, 999) dataset.sort() - - # Analyze the dataset using Lyagushka zhaba = Lyagushka(dataset) analysis_results = json.loads(zhaba.search(4.0, 30)) - # Filter results for valid Z-scores results = [obj for obj in analysis_results if obj['z_score'] is not None] max_z_score = max(obj['z_score'] for obj in results) - for obj in results: - # Check if the object has the maximum Z-score and meets the threshold + total_tasks = amount - len(numbers) + for idx, obj in enumerate(results): if obj['z_score'] == max_z_score and obj['z_score'] >= z_score: - # Ensure the centroid is not an x.5 and add the scaled value if len(numbers) < amount and (obj['centroid'] % 1 != 0.5): numbers.add(int((obj['centroid'] / 999) * top) + 1) + # Update progress + progress_bar.progress((len(numbers) / amount)) + time.sleep(0.05) # Simulate some delay + if len(numbers) >= amount: + break return numbers -# Main function to drive the lottery draw process -def main(): - - console = Console() - - # Display an introduction to the lottery process - description = "\nEach lottery ball is selected by generating hundreds of random values within the provided range. The data is analyzed to identify number clusters. The centroid values of the attractor clusters with a z-score above the set threshold are selected as lotto numbers. This process repeats until all balls are drawn. The entire method is a one-dimensional analogy to how attractor points are calculated in Randonautica.\n" - console.print(description, style="italic green") +def generate_ball_html(numbers, bonus): + balls_html = "" + for num in numbers: + balls_html += f""" +
{num}
+ """ + balls_html += f""" +
{bonus}
+ """ + return balls_html - # Get the number of lottery balls to draw - num_lotto_balls = int(questionary.text( - "Amount of balls to draw? (default: 5)", - validate=lambda val: val.isdigit() or "Please enter a valid integer.", - default="5" - ).ask()) +description = "\nEach lottery ball is selected by generating hundreds of random values within the provided range. The data is analyzed to identify number clusters. The centroid values of the attractor clusters with a z-score above the set threshold are selected as lotto numbers. This process repeats until all balls are drawn. The entire method is a one-dimensional analogy to how attractor points are calculated in Randonautica.\n" - # Get the highest possible number in the lottery - highest_number = int(questionary.text( - "Amount of balls in the lottery? (default: 70)", - validate=lambda val: val.isdigit() or "Please enter a valid integer.", - default="70" - ).ask()) +# Streamlit App +st.title("Lottonautica") +st.write(description) - # Get the highest number for the extra draw - highest_extra_ball = int(questionary.text( - "Amount of balls in the extra draw? (default: 25)", - validate=lambda val: val.isdigit() or "Please enter a valid integer.", - default="25" - ).ask()) - - # Get the Z-score threshold for anomaly detection - z_score_threshold = float(questionary.text( - "Minimum Z-Score Threshold? (default: 3.0)", - validate=lambda val: z_thresh(val) or "Please enter a valid value (1.0 - 5.0).", - default="3.0" - ).ask()) +# User Inputs +num_lotto_balls = st.number_input("Amount of balls to draw:", min_value=1, max_value=20, value=5) +highest_number = st.number_input("Amount of balls in the lottery:", min_value=1, max_value=100, value=70) +highest_extra_ball = st.number_input("Amount of balls in the extra draw:", min_value=1, max_value=50, value=25) +z_score_threshold = st.number_input("Minimum Z-Score Threshold:", min_value=1.0, max_value=5.0, value=3.0) +if st.button("Generate Lottery Numbers"): + st.subheader("Generating Lottery Numbers...") numbers = set() megaball = set() - # Show a progress bar during the number drawing process - with Progress(TextColumn("[progress.description]{task.description}"), BarColumn(), transient=True) as progress: - task = progress.add_task("Drawing numbers...", total=num_lotto_balls + 1) - # Draw main lottery numbers - while len(numbers) < num_lotto_balls: - numbers = pull_number(numbers, highest_number, num_lotto_balls, z_score_threshold) - progress.update(task, completed=len(numbers)) - # Draw the extra ball - while len(megaball) < 1: - megaball = pull_number(megaball, highest_extra_ball, 1, z_score_threshold) + # Progress bar for main numbers + progress_main = st.progress(0) + status_text = st.empty() - # Display the results - console.print("\nLottery numbers:\n", style="bold green") - lottery_balls = [Text(f" {n} ", style="bold black on white") for n in sorted(numbers)] - bonus_ball = Text(f" {list(megaball)[0]} ", style="bold black on yellow") - console.print(*lottery_balls, bonus_ball, sep=" ") + st.text("Drawing main numbers...") + while len(numbers) < num_lotto_balls: + # Update numbers and progress + numbers = pull_number(numbers, highest_number, num_lotto_balls, z_score_threshold, progress_main, "Main Numbers") + progress_main.progress(len(numbers) / num_lotto_balls) -if __name__ == "__main__": - main() + # Progress bar for extra ball + progress_extra = st.progress(0) + st.text("Drawing the extra ball...") + while len(megaball) < 1: + # Update megaball and progress + megaball = pull_number(megaball, highest_extra_ball, 1, z_score_threshold, progress_extra, "Bonus Ball") + + # Display Results + st.subheader("Lottery Numbers") + main_numbers = sorted(numbers) + bonus_number = list(megaball)[0] + + # Full HTML with inline CSS + custom_html = f""" + + + + + +
+ {generate_ball_html(main_numbers, bonus_number)} +
+ + + """ + + components.html(custom_html, height=150) \ No newline at end of file