Files
webcrawler/MultiThreaded.py

193 lines
6.8 KiB
Python
Raw Normal View History

2024-01-26 19:31:47 -05:00
__author__ = "Aman Tahiliani"
2024-01-26 12:28:51 -05:00
import requests
from bs4 import BeautifulSoup as bs
from urllib.parse import urljoin
import argparse
import multiprocessing
2024-01-26 19:31:47 -05:00
import time
import matplotlib.pyplot as plt
import pandas as pd
import json
2024-01-26 12:28:51 -05:00
class WebCrawler:
def __init__(self, seed_url):
manager = multiprocessing.Manager()
self.url_queue = manager.list()
self.url_queue.append(seed_url)
self.visited_urls = manager.list()
2024-01-26 19:31:47 -05:00
self.counter = manager.Value("i", 0)
2024-01-26 12:28:51 -05:00
self.h1_word_frequency = manager.dict()
self.url_queue_lock = manager.Lock()
self.visited_lock = manager.Lock()
self.freq_lock = manager.Lock()
def extract_page_info(self, url):
# print(f"Extracting information from Url {url}")
try:
headers = {
"User-Agent": "Mozilla/5.0 (Windows NT 6.1; WOW64) AppleWebKit/537.36 (KHTML, like Gecko) Chrome/63.0.3239.132 Safari/537.36 QIHU 360SE"
}
try:
response = requests.get(url, headers=headers)
except:
return
if response.status_code != 200:
raise Exception(response.text)
soup = bs(response.content, "html.parser")
all_page_links = soup.find_all("a", href=True)
# print(f"Found {len(set(all_page_links))} links in the current page")
for page_link in all_page_links:
with self.url_queue_lock:
self.url_queue.append(urljoin(url, page_link["href"]))
2024-01-26 19:31:47 -05:00
filtered_elements = soup.find_all(
lambda tag: tag.name in ["h1", "h2", "h3"]
and not tag.find_parents(["header", "footer", "nav"])
)
2024-01-26 12:28:51 -05:00
for tags in filtered_elements:
current_sentence = tags.text
for current_word in current_sentence.split():
current_word = current_word.lower()
with self.freq_lock:
2024-01-26 19:31:47 -05:00
current_word_dict = self.h1_word_frequency.get(
current_word, {url: 0}
)
2024-01-26 12:28:51 -05:00
current_word_dict[url] = current_word_dict.get(url, 0) + 1
self.h1_word_frequency[current_word] = current_word_dict
return True
except Exception as e:
2024-01-26 19:31:47 -05:00
print(f"Exception occurred while crawling page {url}. Exception -> {e}")
2024-01-26 12:28:51 -05:00
return False
def process_url(self, new_url):
shouldVisit = False
with self.visited_lock:
if new_url not in self.visited_urls:
shouldVisit = True
self.visited_urls.append(new_url)
self.counter.value += 1
print(f"Page Number {self.counter.value}")
if shouldVisit:
visited = self.extract_page_info(new_url)
def crawler(self, pages_to_parse):
2024-01-26 19:31:47 -05:00
crawl_start_time = time.time()
pages_per_second_list = []
total_pages_processed = 0
2024-01-26 12:28:51 -05:00
with multiprocessing.Pool() as pool:
while True:
with self.url_queue_lock:
if not self.url_queue:
2024-01-26 19:31:47 -05:00
break
2024-01-26 12:28:51 -05:00
chunk_size = min(len(self.url_queue), multiprocessing.cpu_count())
chunks = [self.url_queue.pop(0) for chunk in range(chunk_size)]
2024-01-26 19:31:47 -05:00
batch_start_time = time.time()
2024-01-26 12:28:51 -05:00
pool.starmap(self.process_url, [(url,) for url in chunks])
2024-01-26 19:31:47 -05:00
batch_end_time = time.time()
pages_processed = len(chunks)
total_pages_processed += pages_processed
time_taken = batch_end_time - batch_start_time
pages_per_second = pages_processed / time_taken
for _ in range(pages_processed):
pages_per_second_list.append(pages_per_second)
2024-01-26 12:28:51 -05:00
with self.visited_lock:
counter_val = self.counter.value
if counter_val >= pages_to_parse:
break
2024-01-26 19:31:47 -05:00
crawl_end_time = time.time()
total_crawl_time = crawl_end_time - crawl_start_time
total_pages_crawled = self.counter.value
pages_per_minute = total_pages_crawled / (total_crawl_time / 60)
2024-01-26 12:28:51 -05:00
print("Done Parsing Pages")
print(f"Pages Parsed {self.counter.value}/{pages_to_parse}")
2024-01-26 19:31:47 -05:00
print(f"Links left to parse {len(self.url_queue)}")
print(f"Words found in h1 {len(self.h1_word_frequency)}")
with open("Keywords_Output.json", "w") as json_file:
json.dump(dict(self.h1_word_frequency), json_file, indent=4)
print(
f"Number of pages crawled vs left to be crawled -> {self.counter.value}/{len(self.url_queue)} = {self.counter.value / len(self.url_queue)} "
)
plt.plot(range(1, total_pages_processed + 1), pages_per_second_list)
plt.xlabel("Pages")
plt.ylabel("Pages per Second")
plt.title("Pages per Second for each page")
plt.savefig("pages_per_second.png")
speed_table = pd.DataFrame(
{
"Total Pages Crawled": [total_pages_crawled],
"Total Crawl Time (seconds)": [total_crawl_time],
"Pages per Minute": [pages_per_minute],
}
)
print("\nCrawl Speed in terms of Pages per Minute:")
print(speed_table)
fig, ax = plt.subplots(figsize=(8, 4))
ax.axis("tight")
ax.axis("off")
ax.table(
cellText=speed_table.values,
colLabels=speed_table.columns,
cellLoc="center",
loc="center",
)
plt.savefig("crawlspeed.png")
crawl_ratio_table = pd.DataFrame(
{
"Total Pages Crawled": [total_pages_crawled],
"Pages Left to Crawl": [len(self.url_queue)],
"Crawl Ratio": [{self.counter.value / len(self.url_queue)}],
}
)
fig, ax = plt.subplots(figsize=(8, 4))
ax.axis("tight")
ax.axis("off")
ax.table(
cellText=crawl_ratio_table.values,
colLabels=crawl_ratio_table.columns,
cellLoc="center",
loc="center",
)
plt.savefig("crawl_ratio_table.png")
2024-01-26 12:28:51 -05:00
if __name__ == "__main__":
2024-01-26 19:31:47 -05:00
parser = argparse.ArgumentParser(
description="Crawler to crawl forward from a seed URL"
)
2024-01-26 12:28:51 -05:00
parser.add_argument("seed_url", help="URL to start the crawling from")
parser.add_argument(
"--pages_to_parse",
help="Upper limit of how many pages that need to be parsed",
default=1000,
)
args = parser.parse_args()
seed_url = args.seed_url
pages_to_parse = int(args.pages_to_parse)
web_crawler = WebCrawler(seed_url)
print(f"Seed Url: {seed_url} \nNumber of Pages to Parse {pages_to_parse}")
print("Initiating Crawler....")
2024-01-26 19:31:47 -05:00
web_crawler.crawler(pages_to_parse)