1 Commits

Author SHA1 Message Date
overcuriousity
9f3b17e658 try_db 2025-09-14 22:54:37 +02:00
98 changed files with 1086 additions and 4422 deletions

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@@ -29,6 +29,6 @@ MAX_CONCURRENT_REQUESTS=5
# The number of results from a provider that triggers the "large entity" grouping. # The number of results from a provider that triggers the "large entity" grouping.
LARGE_ENTITY_THRESHOLD=100 LARGE_ENTITY_THRESHOLD=100
# The number of times to retry a target if a provider fails. # The number of times to retry a target if a provider fails.
MAX_RETRIES_PER_TARGET=8 MAX_RETRIES_PER_TARGET=3
# How long cached provider responses are stored (in hours). # How long cached provider responses are stored (in hours).
CACHE_EXPIRY_HOURS=12 CACHE_EXPIRY_HOURS=12

96
app.py
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@@ -13,8 +13,6 @@ import io
from core.session_manager import session_manager from core.session_manager import session_manager
from config import config from config import config
from core.graph_manager import NodeType
from utils.helpers import is_valid_target
app = Flask(__name__) app = Flask(__name__)
@@ -66,21 +64,18 @@ def start_scan():
try: try:
data = request.get_json() data = request.get_json()
if not data or 'target' not in data: if not data or 'target_domain' not in data:
return jsonify({'success': False, 'error': 'Missing target in request'}), 400 return jsonify({'success': False, 'error': 'Missing target_domain in request'}), 400
target = data['target'].strip() target_domain = data['target_domain'].strip()
max_depth = data.get('max_depth', config.default_recursion_depth) max_depth = data.get('max_depth', config.default_recursion_depth)
clear_graph = data.get('clear_graph', True) clear_graph = data.get('clear_graph', True)
force_rescan_target = data.get('force_rescan_target', None) # **FIX**: Get the new parameter
print(f"Parsed - target: '{target}', max_depth: {max_depth}, clear_graph: {clear_graph}, force_rescan: {force_rescan_target}") print(f"Parsed - target_domain: '{target_domain}', max_depth: {max_depth}, clear_graph: {clear_graph}")
# Validation # Validation
if not target: if not target_domain:
return jsonify({'success': False, 'error': 'Target cannot be empty'}), 400 return jsonify({'success': False, 'error': 'Target domain cannot be empty'}), 400
if not is_valid_target(target):
return jsonify({'success': False, 'error': 'Invalid target format. Please enter a valid domain or IP address.'}), 400
if not isinstance(max_depth, int) or not 1 <= max_depth <= 5: if not isinstance(max_depth, int) or not 1 <= max_depth <= 5:
return jsonify({'success': False, 'error': 'Max depth must be an integer between 1 and 5'}), 400 return jsonify({'success': False, 'error': 'Max depth must be an integer between 1 and 5'}), 400
@@ -105,7 +100,7 @@ def start_scan():
print(f"Using scanner {id(scanner)} in session {user_session_id}") print(f"Using scanner {id(scanner)} in session {user_session_id}")
success = scanner.start_scan(target, max_depth, clear_graph=clear_graph, force_rescan_target=force_rescan_target) # **FIX**: Pass the new parameter success = scanner.start_scan(target_domain, max_depth, clear_graph=clear_graph)
if success: if success:
return jsonify({ return jsonify({
@@ -124,7 +119,7 @@ def start_scan():
print(f"ERROR: Exception in start_scan endpoint: {e}") print(f"ERROR: Exception in start_scan endpoint: {e}")
traceback.print_exc() traceback.print_exc()
return jsonify({'success': False, 'error': f'Internal server error: {str(e)}'}), 500 return jsonify({'success': False, 'error': f'Internal server error: {str(e)}'}), 500
@app.route('/api/scan/stop', methods=['POST']) @app.route('/api/scan/stop', methods=['POST'])
def stop_scan(): def stop_scan():
"""Stop the current scan with immediate GUI feedback.""" """Stop the current scan with immediate GUI feedback."""
@@ -283,81 +278,6 @@ def get_graph_data():
}), 500 }), 500
@app.route('/api/graph/node/<node_id>', methods=['DELETE'])
def delete_graph_node(node_id):
"""Delete a node from the graph for the current user session."""
try:
user_session_id, scanner = get_user_scanner()
if not scanner:
return jsonify({'success': False, 'error': 'No active session found'}), 404
success = scanner.graph.remove_node(node_id)
if success:
# Persist the change
session_manager.update_session_scanner(user_session_id, scanner)
return jsonify({'success': True, 'message': f'Node {node_id} deleted successfully.'})
else:
return jsonify({'success': False, 'error': f'Node {node_id} not found in graph.'}), 404
except Exception as e:
print(f"ERROR: Exception in delete_graph_node endpoint: {e}")
traceback.print_exc()
return jsonify({'success': False, 'error': f'Internal server error: {str(e)}'}), 500
@app.route('/api/graph/revert', methods=['POST'])
def revert_graph_action():
"""Reverts a graph action, such as re-adding a deleted node."""
try:
data = request.get_json()
if not data or 'type' not in data or 'data' not in data:
return jsonify({'success': False, 'error': 'Invalid revert request format'}), 400
user_session_id, scanner = get_user_scanner()
if not scanner:
return jsonify({'success': False, 'error': 'No active session found'}), 404
action_type = data['type']
action_data = data['data']
if action_type == 'delete':
# Re-add the node
node_to_add = action_data.get('node')
if node_to_add:
scanner.graph.add_node(
node_id=node_to_add['id'],
node_type=NodeType(node_to_add['type']),
attributes=node_to_add.get('attributes'),
description=node_to_add.get('description'),
metadata=node_to_add.get('metadata')
)
# Re-add the edges
edges_to_add = action_data.get('edges', [])
for edge in edges_to_add:
# Add edge only if both nodes exist to prevent errors
if scanner.graph.graph.has_node(edge['from']) and scanner.graph.graph.has_node(edge['to']):
scanner.graph.add_edge(
source_id=edge['from'],
target_id=edge['to'],
relationship_type=edge['metadata']['relationship_type'],
confidence_score=edge['metadata']['confidence_score'],
source_provider=edge['metadata']['source_provider'],
raw_data=edge.get('raw_data', {})
)
# Persist the change
session_manager.update_session_scanner(user_session_id, scanner)
return jsonify({'success': True, 'message': 'Delete action reverted successfully.'})
return jsonify({'success': False, 'error': f'Unknown revert action type: {action_type}'}), 400
except Exception as e:
print(f"ERROR: Exception in revert_graph_action endpoint: {e}")
traceback.print_exc()
return jsonify({'success': False, 'error': f'Internal server error: {str(e)}'}), 500
@app.route('/api/export', methods=['GET']) @app.route('/api/export', methods=['GET'])
def export_results(): def export_results():

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@@ -1 +0,0 @@
{"domain":"api.piped.mikoshi.de","first_cached":"2025-09-14T22:39:13.556737+00:00","last_upstream_query":"2025-09-15T15:40:40.243081+00:00","upstream_query_count":2,"certificates":[{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":20189195635,"entry_timestamp":"2025-08-08T00:03:32.697","not_before":"2025-08-07T23:05:02","not_after":"2025-11-05T23:05:01","serial_number":"057a2344f2f0cff0a83bba587eb7326b4145","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":20189195721,"entry_timestamp":"2025-08-08T00:03:32.49","not_before":"2025-08-07T23:05:02","not_after":"2025-11-05T23:05:01","serial_number":"057a2344f2f0cff0a83bba587eb7326b4145","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":20060635277,"entry_timestamp":"2025-08-02T00:01:30.128","not_before":"2025-08-01T23:02:57","not_after":"2025-10-30T23:02:56","serial_number":"05a33355cd549118b90ec6c7219b2e283059","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":20060633958,"entry_timestamp":"2025-08-02T00:01:27.809","not_before":"2025-08-01T23:02:57","not_after":"2025-10-30T23:02:56","serial_number":"05a33355cd549118b90ec6c7219b2e283059","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19929361217,"entry_timestamp":"2025-07-27T00:01:57.423","not_before":"2025-07-26T23:03:27","not_after":"2025-10-24T23:03:26","serial_number":"068f68538c5e6483213c6bdff93070960e6a","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19929361084,"entry_timestamp":"2025-07-27T00:01:57.128","not_before":"2025-07-26T23:03:27","not_after":"2025-10-24T23:03:26","serial_number":"068f68538c5e6483213c6bdff93070960e6a","result_count":2},{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19803755935,"entry_timestamp":"2025-07-21T00:00:47.697","not_before":"2025-07-20T23:02:17","not_after":"2025-10-18T23:02:16","serial_number":"054cc0b2449a9ce1ce82324d844a1d4795f5","result_count":2},{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19803753732,"entry_timestamp":"2025-07-21T00:00:47.407","not_before":"2025-07-20T23:02:17","not_after":"2025-10-18T23:02:16","serial_number":"054cc0b2449a9ce1ce82324d844a1d4795f5","result_count":2},{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19668414027,"entry_timestamp":"2025-07-15T00:00:49.06","not_before":"2025-07-14T23:02:16","not_after":"2025-10-12T23:02:15","serial_number":"06ee7d4154b5a296e1cbefe4df2f6bfeba81","result_count":2},{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19668413763,"entry_timestamp":"2025-07-15T00:00:46.299","not_before":"2025-07-14T23:02:16","not_after":"2025-10-12T23:02:15","serial_number":"06ee7d4154b5a296e1cbefe4df2f6bfeba81","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19523855233,"entry_timestamp":"2025-07-08T06:30:53.184","not_before":"2025-07-08T05:32:22","not_after":"2025-10-06T05:32:21","serial_number":"05956787611c0bc853c699866a6bc839eb89","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"api.piped.mikoshi.de","name_value":"api.piped.mikoshi.de","id":19523854846,"entry_timestamp":"2025-07-08T06:30:52.835","not_before":"2025-07-08T05:32:22","not_after":"2025-10-06T05:32:21","serial_number":"05956787611c0bc853c699866a6bc839eb89","result_count":2}]}

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@@ -1 +0,0 @@
{"domain":"app.fleischkombinat-ost.de","first_cached":"2025-09-14T21:11:17.304989+00:00","last_upstream_query":"2025-09-15T09:15:09.273000+00:00","upstream_query_count":2,"certificates":[{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"app.fleischkombinat-ost.de","name_value":"app.fleischkombinat-ost.de","id":19374493240,"entry_timestamp":"2025-07-01T14:09:36.354","not_before":"2025-07-01T13:11:00","not_after":"2025-09-29T13:10:59","serial_number":"0693231ff5e3212cabc2588e38b5d8337528","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"app.fleischkombinat-ost.de","name_value":"app.fleischkombinat-ost.de","id":19374489847,"entry_timestamp":"2025-07-01T14:09:30.117","not_before":"2025-07-01T13:11:00","not_after":"2025-09-29T13:10:59","serial_number":"0693231ff5e3212cabc2588e38b5d8337528","result_count":2}]}

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@@ -1 +0,0 @@
{"domain":"c210lb.kasserver.com","first_cached":"2025-09-15T11:49:15.879325+00:00","last_upstream_query":"2025-09-15T11:49:15.879328+00:00","upstream_query_count":1,"certificates":[{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"test.c210lb.kasserver.com","name_value":"test.c210lb.kasserver.com\nwww.test.c210lb.kasserver.com","id":16080758209,"entry_timestamp":"2024-12-12T09:28:08.296","not_before":"2024-12-12T08:29:37","not_after":"2025-03-12T08:29:36","serial_number":"04d8425c5834ecd8914f58bb80e86bcae4a4","result_count":3},{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"test.c210lb.kasserver.com","name_value":"test.c210lb.kasserver.com\nwww.test.c210lb.kasserver.com","id":15724227115,"entry_timestamp":"2024-12-12T09:28:07.974","not_before":"2024-12-12T08:29:37","not_after":"2025-03-12T08:29:36","serial_number":"04d8425c5834ecd8914f58bb80e86bcae4a4","result_count":3}]}

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@@ -1 +0,0 @@
{"domain":"c214lb.kasserver.com","first_cached":"2025-09-15T11:50:40.061642+00:00","last_upstream_query":"2025-09-15T11:50:40.061644+00:00","upstream_query_count":1,"certificates":[{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"test.c214lb.kasserver.com","name_value":"test.c214lb.kasserver.com\nwww.test.c214lb.kasserver.com","id":16070500096,"entry_timestamp":"2024-12-11T14:25:06.88","not_before":"2024-12-11T13:26:36","not_after":"2025-03-11T13:26:35","serial_number":"047e10af0f4b68375cc37572f400322f1339","result_count":3},{"issuer_ca_id":295810,"issuer_name":"C=US, O=Let's Encrypt, CN=E5","common_name":"test.c214lb.kasserver.com","name_value":"test.c214lb.kasserver.com\nwww.test.c214lb.kasserver.com","id":15713437449,"entry_timestamp":"2024-12-11T14:25:06.342","not_before":"2024-12-11T13:26:36","not_after":"2025-03-11T13:26:35","serial_number":"047e10af0f4b68375cc37572f400322f1339","result_count":3}]}

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@@ -1 +0,0 @@
{"domain":"cc24.mikoshi.de","first_cached":"2025-09-15T15:35:01.674879+00:00","last_upstream_query":"2025-09-15T15:35:01.674884+00:00","upstream_query_count":1,"certificates":[{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":20275888640,"entry_timestamp":"2025-08-12T00:10:43.67","not_before":"2025-08-11T23:12:11","not_after":"2025-11-09T23:12:10","serial_number":"062bf40cddf77b5bb2efcc8d4394466e2f1b","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":20275882615,"entry_timestamp":"2025-08-12T00:10:41.383","not_before":"2025-08-11T23:12:11","not_after":"2025-11-09T23:12:10","serial_number":"062bf40cddf77b5bb2efcc8d4394466e2f1b","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":18987170126,"entry_timestamp":"2025-06-13T00:07:54.264","not_before":"2025-06-12T23:09:23","not_after":"2025-09-10T23:09:22","serial_number":"06146db771c214ec7474cb203b6ab75c21ae","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":18987169887,"entry_timestamp":"2025-06-13T00:07:53.982","not_before":"2025-06-12T23:09:23","not_after":"2025-09-10T23:09:22","serial_number":"06146db771c214ec7474cb203b6ab75c21ae","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":17831548102,"entry_timestamp":"2025-04-14T00:19:47.297","not_before":"2025-04-13T23:21:14","not_after":"2025-07-12T23:21:13","serial_number":"05d1504b6ed3a888b7577090d0f45a5e1f6e","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":17831584469,"entry_timestamp":"2025-04-14T00:19:45.047","not_before":"2025-04-13T23:21:14","not_after":"2025-07-12T23:21:13","serial_number":"05d1504b6ed3a888b7577090d0f45a5e1f6e","result_count":2},{"issuer_ca_id":295814,"issuer_name":"C=US, O=Let's Encrypt, CN=R10","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":17170817151,"entry_timestamp":"2025-02-13T00:02:39.94","not_before":"2025-02-12T23:04:09","not_after":"2025-05-13T23:04:08","serial_number":"03b5b2d8ad135f1cf98224c917b797d0d844","result_count":2},{"issuer_ca_id":295814,"issuer_name":"C=US, O=Let's Encrypt, CN=R10","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":16704121260,"entry_timestamp":"2025-02-13T00:02:39.313","not_before":"2025-02-12T23:04:09","not_after":"2025-05-13T23:04:08","serial_number":"03b5b2d8ad135f1cf98224c917b797d0d844","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":16672548148,"entry_timestamp":"2025-02-11T11:09:43.173","not_before":"2025-02-11T10:11:12","not_after":"2025-05-12T10:11:11","serial_number":"035ed55d94e5d12e255be2412e4035be70c9","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"cc24.mikoshi.de","name_value":"cc24.mikoshi.de","id":16672548664,"entry_timestamp":"2025-02-11T11:09:42.207","not_before":"2025-02-11T10:11:12","not_after":"2025-05-12T10:11:11","serial_number":"035ed55d94e5d12e255be2412e4035be70c9","result_count":2}]}

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{"domain":"s3.cc24.dev","first_cached":"2025-09-14T21:38:35.568153+00:00","last_upstream_query":"2025-09-14T21:38:35.568155+00:00","upstream_query_count":1,"certificates":[{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"console.s3.cc24.dev","name_value":"console.s3.cc24.dev","id":20287575466,"entry_timestamp":"2025-08-12T12:55:37.077","not_before":"2025-08-12T11:57:05","not_after":"2025-11-10T11:57:04","serial_number":"066bdfa83088f8d7e67284da94dd5d122ed6","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"console.s3.cc24.dev","name_value":"console.s3.cc24.dev","id":20287575457,"entry_timestamp":"2025-08-12T12:55:36.75","not_before":"2025-08-12T11:57:05","not_after":"2025-11-10T11:57:04","serial_number":"066bdfa83088f8d7e67284da94dd5d122ed6","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"s3.cc24.dev","name_value":"s3.cc24.dev","id":20285693027,"entry_timestamp":"2025-08-12T10:58:41.611","not_before":"2025-08-12T10:00:11","not_after":"2025-11-10T10:00:10","serial_number":"06f0f73404258136977fdbfe4cf51db786a7","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"s3.cc24.dev","name_value":"s3.cc24.dev","id":20285693495,"entry_timestamp":"2025-08-12T10:58:41.366","not_before":"2025-08-12T10:00:11","not_after":"2025-11-10T10:00:10","serial_number":"06f0f73404258136977fdbfe4cf51db786a7","result_count":2}]}

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@@ -1 +0,0 @@
{"domain":"se.mikoshi.de","first_cached":"2025-09-14T22:37:29.207379+00:00","last_upstream_query":"2025-09-15T15:40:52.328157+00:00","upstream_query_count":2,"certificates":[{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":20296592765,"entry_timestamp":"2025-08-13T00:02:43.765","not_before":"2025-08-12T23:04:13","not_after":"2025-11-10T23:04:12","serial_number":"05688b90444fda4afff5208583d9b4c6b453","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":20296592676,"entry_timestamp":"2025-08-13T00:02:43.253","not_before":"2025-08-12T23:04:13","not_after":"2025-11-10T23:04:12","serial_number":"05688b90444fda4afff5208583d9b4c6b453","result_count":2},{"issuer_ca_id":295814,"issuer_name":"C=US, O=Let's Encrypt, CN=R10","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":19007481148,"entry_timestamp":"2025-06-14T00:01:17.383","not_before":"2025-06-13T23:02:46","not_after":"2025-09-11T23:02:45","serial_number":"057f456b58a7ea34177d50585ea3b4561e6b","result_count":2},{"issuer_ca_id":295814,"issuer_name":"C=US, O=Let's Encrypt, CN=R10","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":19007493221,"entry_timestamp":"2025-06-14T00:01:17.049","not_before":"2025-06-13T23:02:46","not_after":"2025-09-11T23:02:45","serial_number":"057f456b58a7ea34177d50585ea3b4561e6b","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":17850961291,"entry_timestamp":"2025-04-15T00:00:37.293","not_before":"2025-04-14T23:02:02","not_after":"2025-07-13T23:02:01","serial_number":"052c5b098d5fa135547d9e3d7f7496b63af6","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":17850962036,"entry_timestamp":"2025-04-15T00:00:32.962","not_before":"2025-04-14T23:02:02","not_after":"2025-07-13T23:02:01","serial_number":"052c5b098d5fa135547d9e3d7f7496b63af6","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":17170796076,"entry_timestamp":"2025-02-13T00:00:29.982","not_before":"2025-02-12T23:01:59","not_after":"2025-05-13T23:01:58","serial_number":"04ecdefe30d1b5ce4d3ebb91bbbb2257bd15","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":16704095774,"entry_timestamp":"2025-02-13T00:00:29.674","not_before":"2025-02-12T23:01:59","not_after":"2025-05-13T23:01:58","serial_number":"04ecdefe30d1b5ce4d3ebb91bbbb2257bd15","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":17122261002,"entry_timestamp":"2025-02-09T15:13:15.78","not_before":"2025-02-09T14:14:45","not_after":"2025-05-10T14:14:44","serial_number":"03972d789d00e59045e4f37eae917438e10a","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":16635473126,"entry_timestamp":"2025-02-09T15:13:15.412","not_before":"2025-02-09T14:14:45","not_after":"2025-05-10T14:14:44","serial_number":"03972d789d00e59045e4f37eae917438e10a","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":11490113222,"entry_timestamp":"2023-12-16T00:55:58.472","not_before":"2023-12-15T23:55:57","not_after":"2024-03-14T23:55:56","serial_number":"0386fd7fd921ad63f4805ad4f593819aa238","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"se.mikoshi.de","name_value":"se.mikoshi.de","id":11422214995,"entry_timestamp":"2023-12-16T00:55:57.647","not_before":"2023-12-15T23:55:57","not_after":"2024-03-14T23:55:56","serial_number":"0386fd7fd921ad63f4805ad4f593819aa238","result_count":2}]}

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@@ -1 +0,0 @@
{"domain":"signaling.mikoshi.de","first_cached":"2025-09-14T21:05:14.189157+00:00","last_upstream_query":"2025-09-15T15:36:14.904100+00:00","upstream_query_count":3,"certificates":[{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":19208276669,"entry_timestamp":"2025-06-23T18:21:11.885","not_before":"2025-06-23T17:22:40","not_after":"2025-09-21T17:22:39","serial_number":"0542fce9cb99bb1c1d18e5e452c90d850936","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":19208276557,"entry_timestamp":"2025-06-23T18:21:11.215","not_before":"2025-06-23T17:22:40","not_after":"2025-09-21T17:22:39","serial_number":"0542fce9cb99bb1c1d18e5e452c90d850936","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":19208272013,"entry_timestamp":"2025-06-23T18:20:29.619","not_before":"2025-06-23T17:21:56","not_after":"2025-09-21T17:21:55","serial_number":"0540be6c8cb99dcaa5492af7b934f40466f9","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":19208263539,"entry_timestamp":"2025-06-23T18:20:26.82","not_before":"2025-06-23T17:21:56","not_after":"2025-09-21T17:21:55","serial_number":"0540be6c8cb99dcaa5492af7b934f40466f9","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":17428224909,"entry_timestamp":"2025-03-23T15:21:03.771","not_before":"2025-03-23T14:22:33","not_after":"2025-06-21T14:22:32","serial_number":"0537513d69487cead5f018b5322aa54fb52e","result_count":2},{"issuer_ca_id":295819,"issuer_name":"C=US, O=Let's Encrypt, CN=E6","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":17346408492,"entry_timestamp":"2025-03-23T15:21:03.617","not_before":"2025-03-23T14:22:33","not_after":"2025-06-21T14:22:32","serial_number":"0537513d69487cead5f018b5322aa54fb52e","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":17170806575,"entry_timestamp":"2025-02-13T00:01:39.507","not_before":"2025-02-12T23:03:07","not_after":"2025-05-13T23:03:06","serial_number":"04a3141d80551d2287647211445f32131b19","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":16704105641,"entry_timestamp":"2025-02-13T00:01:37.463","not_before":"2025-02-12T23:03:07","not_after":"2025-05-13T23:03:06","serial_number":"04a3141d80551d2287647211445f32131b19","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":17122350772,"entry_timestamp":"2025-02-09T15:19:01.645","not_before":"2025-02-09T14:20:31","not_after":"2025-05-10T14:20:30","serial_number":"0456c53707eac4c8e79109b09eb9257674ef","result_count":2},{"issuer_ca_id":295815,"issuer_name":"C=US, O=Let's Encrypt, CN=R11","common_name":"signaling.mikoshi.de","name_value":"signaling.mikoshi.de","id":16635514012,"entry_timestamp":"2025-02-09T15:19:01.438","not_before":"2025-02-09T14:20:31","not_after":"2025-05-10T14:20:30","serial_number":"0456c53707eac4c8e79109b09eb9257674ef","result_count":2}]}

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@@ -1 +0,0 @@
{"domain":"test.mikoshi.de","first_cached":"2025-09-14T22:38:58.849950+00:00","last_upstream_query":"2025-09-15T15:34:55.551888+00:00","upstream_query_count":2,"certificates":[{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"test.mikoshi.de","name_value":"test.mikoshi.de","id":11527598498,"entry_timestamp":"2023-12-19T19:30:11.511","not_before":"2023-12-19T18:30:10","not_after":"2024-03-18T18:30:09","serial_number":"0460a2ce513e2971556b911e64d3c06c876d","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"test.mikoshi.de","name_value":"test.mikoshi.de","id":11448041639,"entry_timestamp":"2023-12-19T19:30:10.729","not_before":"2023-12-19T18:30:10","not_after":"2024-03-18T18:30:09","serial_number":"0460a2ce513e2971556b911e64d3c06c876d","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"test.mikoshi.de","name_value":"test.mikoshi.de","id":11487822748,"entry_timestamp":"2023-12-15T22:27:24.154","not_before":"2023-12-15T21:27:23","not_after":"2024-03-14T21:27:22","serial_number":"03524dd265a8db8b1d3b8ae9236457b06564","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"test.mikoshi.de","name_value":"test.mikoshi.de","id":11420685419,"entry_timestamp":"2023-12-15T22:27:23.743","not_before":"2023-12-15T21:27:23","not_after":"2024-03-14T21:27:22","serial_number":"03524dd265a8db8b1d3b8ae9236457b06564","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"test.mikoshi.de","name_value":"test.mikoshi.de","id":10845362810,"entry_timestamp":"2023-10-20T20:03:11.855","not_before":"2023-10-20T19:03:11","not_after":"2024-01-18T19:03:10","serial_number":"04fb05ec64b2614143f419dfe3c1e058a6f8","result_count":2},{"issuer_ca_id":183267,"issuer_name":"C=US, O=Let's Encrypt, CN=R3","common_name":"test.mikoshi.de","name_value":"test.mikoshi.de","id":10845356148,"entry_timestamp":"2023-10-20T20:03:11.585","not_before":"2023-10-20T19:03:11","not_after":"2024-01-18T19:03:10","serial_number":"04fb05ec64b2614143f419dfe3c1e058a6f8","result_count":2}]}

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@@ -1,32 +0,0 @@
{
"domain": "www.overcuriousity.org",
"first_cached": "2025-09-14T21:16:24.041839+00:00",
"last_upstream_query": "2025-09-15T19:08:25.160183+00:00",
"upstream_query_count": 3,
"certificates": [
{
"issuer_ca_id": 295819,
"issuer_name": "C=US, O=Let's Encrypt, CN=E6",
"common_name": "signaling.mikoshi.de",
"name_value": "www.overcuriousity.org",
"id": 19208272013,
"entry_timestamp": "2025-06-23T18:20:29.619",
"not_before": "2025-06-23T17:21:56",
"not_after": "2025-09-21T17:21:55",
"serial_number": "0540be6c8cb99dcaa5492af7b934f40466f9",
"result_count": 1
},
{
"issuer_ca_id": 295819,
"issuer_name": "C=US, O=Let's Encrypt, CN=E6",
"common_name": "signaling.mikoshi.de",
"name_value": "www.overcuriousity.org",
"id": 19208263539,
"entry_timestamp": "2025-06-23T18:20:26.82",
"not_before": "2025-06-23T17:21:56",
"not_after": "2025-09-21T17:21:55",
"serial_number": "0540be6c8cb99dcaa5492af7b934f40466f9",
"result_count": 1
}
]
}

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@@ -1 +0,0 @@
{"domain":"zap.mikoshi.de","first_cached":"2025-09-14T22:37:56.901178+00:00","last_upstream_query":"2025-09-15T15:36:02.901638+00:00","upstream_query_count":2,"certificates":[{"issuer_ca_id":295813,"issuer_name":"C=US, O=Let's Encrypt, CN=E7","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20979146330,"entry_timestamp":"2025-09-13T00:01:36.857","not_before":"2025-09-12T23:03:06","not_after":"2025-12-11T23:03:05","serial_number":"060330123144270f9c8614ee282e43b5b676","result_count":2},{"issuer_ca_id":295813,"issuer_name":"C=US, O=Let's Encrypt, CN=E7","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20979146321,"entry_timestamp":"2025-09-13T00:01:36.705","not_before":"2025-09-12T23:03:06","not_after":"2025-12-11T23:03:05","serial_number":"060330123144270f9c8614ee282e43b5b676","result_count":2},{"issuer_ca_id":295809,"issuer_name":"C=US, O=Let's Encrypt, CN=E8","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20955786867,"entry_timestamp":"2025-09-12T00:00:06.78","not_before":"2025-09-11T23:01:36","not_after":"2025-12-10T23:01:35","serial_number":"069fdbfcf2023341872c23d4eadf03dbd600","result_count":2},{"issuer_ca_id":295809,"issuer_name":"C=US, O=Let's Encrypt, CN=E8","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20955786725,"entry_timestamp":"2025-09-12T00:00:06.615","not_before":"2025-09-11T23:01:36","not_after":"2025-12-10T23:01:35","serial_number":"069fdbfcf2023341872c23d4eadf03dbd600","result_count":2},{"issuer_ca_id":295809,"issuer_name":"C=US, O=Let's Encrypt, CN=E8","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20754243960,"entry_timestamp":"2025-09-03T00:01:13.766","not_before":"2025-09-02T23:02:41","not_after":"2025-12-01T23:02:40","serial_number":"05c8fbc52b5d8c0ca2089679fd1574503cf0","result_count":2},{"issuer_ca_id":295809,"issuer_name":"C=US, O=Let's Encrypt, CN=E8","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20754243261,"entry_timestamp":"2025-09-03T00:01:11.505","not_before":"2025-09-02T23:02:41","not_after":"2025-12-01T23:02:40","serial_number":"05c8fbc52b5d8c0ca2089679fd1574503cf0","result_count":2},{"issuer_ca_id":295813,"issuer_name":"C=US, O=Let's Encrypt, CN=E7","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20539947210,"entry_timestamp":"2025-08-24T10:34:58.674","not_before":"2025-08-24T09:36:27","not_after":"2025-11-22T09:36:26","serial_number":"062deaf87750f6cf54f0027bbf6f9617447b","result_count":2},{"issuer_ca_id":295813,"issuer_name":"C=US, O=Let's Encrypt, CN=E7","common_name":"zap.mikoshi.de","name_value":"zap.mikoshi.de","id":20539914846,"entry_timestamp":"2025-08-24T10:34:58.16","not_before":"2025-08-24T09:36:27","not_after":"2025-11-22T09:36:26","serial_number":"062deaf87750f6cf54f0027bbf6f9617447b","result_count":2}]}

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@@ -19,10 +19,10 @@ class Config:
# --- General Settings --- # --- General Settings ---
self.default_recursion_depth = 2 self.default_recursion_depth = 2
self.default_timeout = 30 self.default_timeout = 15
self.max_concurrent_requests = 5 self.max_concurrent_requests = 5
self.large_entity_threshold = 100 self.large_entity_threshold = 100
self.max_retries_per_target = 8 self.max_retries_per_target = 3
self.cache_expiry_hours = 12 self.cache_expiry_hours = 12
# --- Provider Caching Settings --- # --- Provider Caching Settings ---

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@@ -414,29 +414,6 @@ class GraphManager:
self.last_modified = datetime.now(timezone.utc).isoformat() self.last_modified = datetime.now(timezone.utc).isoformat()
return True return True
def remove_node(self, node_id: str) -> bool:
"""Remove a node and its connected edges from the graph."""
if not self.graph.has_node(node_id):
return False
# Remove node from the graph (NetworkX handles removing connected edges)
self.graph.remove_node(node_id)
# Clean up the correlation index
keys_to_delete = []
for value, nodes in self.correlation_index.items():
if node_id in nodes:
del nodes[node_id]
if not nodes: # If no other nodes are associated with this value, remove it
keys_to_delete.append(value)
for key in keys_to_delete:
if key in self.correlation_index:
del self.correlation_index[key]
self.last_modified = datetime.now(timezone.utc).isoformat()
return True
def get_node_count(self) -> int: def get_node_count(self) -> int:
"""Get total number of nodes in the graph.""" """Get total number of nodes in the graph."""
return self.graph.number_of_nodes() return self.graph.number_of_nodes()

View File

@@ -204,7 +204,7 @@ class Scanner:
self._initialize_providers() self._initialize_providers()
print("Session configuration updated") print("Session configuration updated")
def start_scan(self, target: str, max_depth: int = 2, clear_graph: bool = True, force_rescan_target: Optional[str] = None) -> bool: def start_scan(self, target_domain: str, max_depth: int = 2, clear_graph: bool = True) -> bool:
"""Start a new reconnaissance scan with proper cleanup of previous scans.""" """Start a new reconnaissance scan with proper cleanup of previous scans."""
print(f"=== STARTING SCAN IN SCANNER {id(self)} ===") print(f"=== STARTING SCAN IN SCANNER {id(self)} ===")
print(f"Session ID: {self.session_id}") print(f"Session ID: {self.session_id}")
@@ -268,14 +268,7 @@ class Scanner:
if clear_graph: if clear_graph:
self.graph.clear() self.graph.clear()
self.current_target = target_domain.lower().strip()
if force_rescan_target and self.graph.graph.has_node(force_rescan_target):
print(f"Forcing rescan of {force_rescan_target}, clearing provider states.")
node_data = self.graph.graph.nodes[force_rescan_target]
if 'metadata' in node_data and 'provider_states' in node_data['metadata']:
node_data['metadata']['provider_states'] = {}
self.current_target = target.lower().strip()
self.max_depth = max_depth self.max_depth = max_depth
self.current_depth = 0 self.current_depth = 0
@@ -311,80 +304,76 @@ class Scanner:
self._update_session_state() self._update_session_state()
return False return False
def _execute_scan(self, target: str, max_depth: int) -> None: def _execute_scan(self, target_domain: str, max_depth: int) -> None:
"""Execute the reconnaissance scan with proper termination handling.""" """Execute the reconnaissance scan with proper termination handling."""
print(f"_execute_scan started for {target} with depth {max_depth}") print(f"_execute_scan started for {target_domain} with depth {max_depth}")
self.executor = ThreadPoolExecutor(max_workers=self.max_workers) self.executor = ThreadPoolExecutor(max_workers=self.max_workers)
processed_targets = set() processed_targets = set()
self.task_queue.append((target, 0, False)) self.task_queue.append((target_domain, 0, False))
try: try:
self.status = ScanStatus.RUNNING self.status = ScanStatus.RUNNING
self._update_session_state() self._update_session_state()
enabled_providers = [provider.get_name() for provider in self.providers] enabled_providers = [provider.get_name() for provider in self.providers]
self.logger.log_scan_start(target, max_depth, enabled_providers) self.logger.log_scan_start(target_domain, max_depth, enabled_providers)
self.graph.add_node(target_domain, NodeType.DOMAIN)
# Determine initial node type self._initialize_provider_states(target_domain)
node_type = NodeType.IP if _is_valid_ip(target) else NodeType.DOMAIN
self.graph.add_node(target, node_type)
self._initialize_provider_states(target)
# Better termination checking in main loop # **IMPROVED**: Better termination checking in main loop
while self.task_queue and not self._is_stop_requested(): while self.task_queue and not self._is_stop_requested():
try: try:
target_item, depth, is_large_entity_member = self.task_queue.popleft() target, depth, is_large_entity_member = self.task_queue.popleft()
except IndexError: except IndexError:
# Queue became empty during processing # Queue became empty during processing
break break
if target_item in processed_targets: if target in processed_targets:
continue continue
if depth > max_depth: if depth > max_depth:
continue continue
# Track this target as currently processing # **NEW**: Track this target as currently processing
with self.processing_lock: with self.processing_lock:
if self._is_stop_requested(): if self._is_stop_requested():
print(f"Stop requested before processing {target_item}") print(f"Stop requested before processing {target}")
break break
self.currently_processing.add(target_item) self.currently_processing.add(target)
try: try:
self.current_depth = depth self.current_depth = depth
self.current_indicator = target_item self.current_indicator = target
self._update_session_state() self._update_session_state()
# More frequent stop checking during processing # **IMPROVED**: More frequent stop checking during processing
if self._is_stop_requested(): if self._is_stop_requested():
print(f"Stop requested during processing setup for {target_item}") print(f"Stop requested during processing setup for {target}")
break break
new_targets, large_entity_members, success = self._query_providers_for_target(target_item, depth, is_large_entity_member) new_targets, large_entity_members, success = self._query_providers_for_target(target, depth, is_large_entity_member)
# Check stop signal after provider queries # **NEW**: Check stop signal after provider queries
if self._is_stop_requested(): if self._is_stop_requested():
print(f"Stop requested after querying providers for {target_item}") print(f"Stop requested after querying providers for {target}")
break break
if not success: if not success:
self.target_retries[target_item] += 1 self.target_retries[target] += 1
if self.target_retries[target_item] <= self.config.max_retries_per_target: if self.target_retries[target] <= self.config.max_retries_per_target:
print(f"Re-queueing target {target_item} (attempt {self.target_retries[target_item]})") print(f"Re-queueing target {target} (attempt {self.target_retries[target]})")
self.task_queue.append((target_item, depth, is_large_entity_member)) self.task_queue.append((target, depth, is_large_entity_member))
self.tasks_re_enqueued += 1 self.tasks_re_enqueued += 1
else: else:
print(f"ERROR: Max retries exceeded for target {target_item}") print(f"ERROR: Max retries exceeded for target {target}")
self.scan_failed_due_to_retries = True self.scan_failed_due_to_retries = True
self._log_target_processing_error(target_item, "Max retries exceeded") self._log_target_processing_error(target, "Max retries exceeded")
else: else:
processed_targets.add(target_item) processed_targets.add(target)
self.indicators_completed += 1 self.indicators_completed += 1
# Only add new targets if not stopped # **NEW**: Only add new targets if not stopped
if not self._is_stop_requested(): if not self._is_stop_requested():
for new_target in new_targets: for new_target in new_targets:
if new_target not in processed_targets: if new_target not in processed_targets:
@@ -395,11 +384,11 @@ class Scanner:
self.task_queue.append((member, depth, True)) self.task_queue.append((member, depth, True))
finally: finally:
# Always remove from processing set # **NEW**: Always remove from processing set
with self.processing_lock: with self.processing_lock:
self.currently_processing.discard(target_item) self.currently_processing.discard(target)
# Log termination reason # **NEW**: Log termination reason
if self._is_stop_requested(): if self._is_stop_requested():
print("Scan terminated due to stop request") print("Scan terminated due to stop request")
self.logger.logger.info("Scan terminated by user request") self.logger.logger.info("Scan terminated by user request")
@@ -413,7 +402,7 @@ class Scanner:
self.status = ScanStatus.FAILED self.status = ScanStatus.FAILED
self.logger.logger.error(f"Scan failed: {e}") self.logger.logger.error(f"Scan failed: {e}")
finally: finally:
# Clear processing state on exit # **NEW**: Clear processing state on exit
with self.processing_lock: with self.processing_lock:
self.currently_processing.clear() self.currently_processing.clear()

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@@ -5,42 +5,56 @@ import re
import os import os
from pathlib import Path from pathlib import Path
from typing import List, Dict, Any, Tuple, Set from typing import List, Dict, Any, Tuple, Set
from urllib.parse import quote
from datetime import datetime, timezone from datetime import datetime, timezone
import requests
# New dependency required for this provider
try:
import psycopg2
import psycopg2.extras
PSYCOPG2_AVAILABLE = True
except ImportError:
PSYCOPG2_AVAILABLE = False
from .base_provider import BaseProvider from .base_provider import BaseProvider
from utils.helpers import _is_valid_domain from utils.helpers import _is_valid_domain
# We use requests only to raise the same exception type for compatibility with core retry logic
import requests
class CrtShProvider(BaseProvider): class CrtShProvider(BaseProvider):
""" """
Provider for querying crt.sh certificate transparency database. Provider for querying crt.sh certificate transparency database via its public PostgreSQL endpoint.
Now uses session-specific configuration and caching with accumulative behavior. This version is designed to be a drop-in, high-performance replacement for the API-based provider.
It preserves the same caching and data processing logic.
""" """
def __init__(self, name=None, session_config=None): def __init__(self, name=None, session_config=None):
"""Initialize CrtSh provider with session-specific configuration.""" """Initialize CrtShDB provider with session-specific configuration."""
super().__init__( super().__init__(
name="crtsh", name="crtsh",
rate_limit=60, rate_limit=0, # No rate limit for direct DB access
timeout=15, timeout=60, # Increased timeout for potentially long DB queries
session_config=session_config session_config=session_config
) )
self.base_url = "https://crt.sh/" # Database connection details
self.db_host = "crt.sh"
self.db_port = 5432
self.db_name = "certwatch"
self.db_user = "guest"
self._stop_event = None self._stop_event = None
# Initialize cache directory # Initialize cache directory (same as original provider)
self.cache_dir = Path('cache') / 'crtsh' self.cache_dir = Path('cache') / 'crtsh'
self.cache_dir.mkdir(parents=True, exist_ok=True) self.cache_dir.mkdir(parents=True, exist_ok=True)
def get_name(self) -> str: def get_name(self) -> str:
"""Return the provider name.""" """Return the provider name."""
return "crtsh" return "crtsh"
def get_display_name(self) -> str: def get_display_name(self) -> str:
"""Return the provider display name for the UI.""" """Return the provider display name for the UI."""
return "crt.sh" return "crt.sh (DB)"
def requires_api_key(self) -> bool: def requires_api_key(self) -> bool:
"""Return True if the provider requires an API key.""" """Return True if the provider requires an API key."""
@@ -52,23 +66,161 @@ class CrtShProvider(BaseProvider):
def is_available(self) -> bool: def is_available(self) -> bool:
""" """
Check if the provider is configured to be used. Check if the provider can be used. Requires the psycopg2 library.
This method is intentionally simple and does not perform a network request
to avoid blocking application startup.
""" """
if not PSYCOPG2_AVAILABLE:
self.logger.logger.warning("psycopg2 library not found. CrtShDBProvider is unavailable. "
"Please run 'pip install psycopg2-binary'.")
return False
return True return True
def _query_crtsh(self, domain: str) -> List[Dict[str, Any]]:
"""
Query the crt.sh PostgreSQL database for raw certificate data.
Raises exceptions for DB/network errors to allow core logic to retry.
"""
conn = None
certificates = []
# SQL Query to find all certificate IDs related to the domain (including subdomains),
# then retrieve comprehensive details for each certificate, mimicking the JSON API structure.
sql_query = """
WITH certificates_of_interest AS (
SELECT DISTINCT ci.certificate_id
FROM certificate_identity ci
WHERE ci.name_value ILIKE %(domain_wildcard)s OR ci.name_value = %(domain)s
)
SELECT
c.id,
c.serial_number,
c.not_before,
c.not_after,
(SELECT min(entry_timestamp) FROM ct_log_entry cle WHERE cle.certificate_id = c.id) as entry_timestamp,
ca.id as issuer_ca_id,
ca.name as issuer_name,
(SELECT array_to_string(array_agg(DISTINCT ci.name_value), E'\n') FROM certificate_identity ci WHERE ci.certificate_id = c.id) as name_value,
(SELECT name_value FROM certificate_identity ci WHERE ci.certificate_id = c.id AND ci.name_type = 'commonName' LIMIT 1) as common_name
FROM
certificate c
JOIN ca ON c.issuer_ca_id = ca.id
WHERE c.id IN (SELECT certificate_id FROM certificates_of_interest);
"""
try:
conn = psycopg2.connect(
dbname=self.db_name,
user=self.db_user,
host=self.db_host,
port=self.db_port,
connect_timeout=self.timeout
)
with conn.cursor(cursor_factory=psycopg2.extras.RealDictCursor) as cursor:
cursor.execute(sql_query, {'domain': domain, 'domain_wildcard': f'%.{domain}'})
results = cursor.fetchall()
certificates = [dict(row) for row in results]
self.logger.logger.info(f"crt.sh DB query for '{domain}' returned {len(certificates)} certificates.")
except psycopg2.Error as e:
self.logger.logger.error(f"PostgreSQL query failed for {domain}: {e}")
# Raise a RequestException to be compatible with the existing retry logic in the core application
raise requests.exceptions.RequestException(f"PostgreSQL query failed: {e}") from e
finally:
if conn:
conn.close()
return certificates
def query_domain(self, domain: str) -> List[Tuple[str, str, str, float, Dict[str, Any]]]:
"""
Query crt.sh for certificates containing the domain with caching support.
Properly raises exceptions for network errors to allow core logic retries.
"""
if not _is_valid_domain(domain):
return []
if self._stop_event and self._stop_event.is_set():
return []
cache_file = self._get_cache_file_path(domain)
cache_status = self._get_cache_status(cache_file)
certificates = []
try:
if cache_status == "fresh":
certificates = self._load_cached_certificates(cache_file)
self.logger.logger.info(f"Using cached data for {domain} ({len(certificates)} certificates)")
elif cache_status == "not_found":
# Fresh query from DB, create new cache
certificates = self._query_crtsh(domain)
if certificates:
self._create_cache_file(cache_file, domain, self._serialize_certs_for_cache(certificates))
else:
self.logger.logger.info(f"No certificates found for {domain}, not caching")
elif cache_status == "stale":
try:
new_certificates = self._query_crtsh(domain)
if new_certificates:
certificates = self._append_to_cache(cache_file, self._serialize_certs_for_cache(new_certificates))
else:
certificates = self._load_cached_certificates(cache_file)
except requests.exceptions.RequestException:
certificates = self._load_cached_certificates(cache_file)
if certificates:
self.logger.logger.warning(f"DB query failed for {domain}, using stale cache data.")
else:
raise
except requests.exceptions.RequestException as e:
# Re-raise so core logic can retry
self.logger.logger.error(f"DB query failed for {domain}: {e}")
raise e
except json.JSONDecodeError as e:
# JSON parsing errors from cache should also be handled
self.logger.logger.error(f"Failed to parse JSON from cache for {domain}: {e}")
raise e
if self._stop_event and self._stop_event.is_set():
return []
if not certificates:
return []
return self._process_certificates_to_relationships(domain, certificates)
def _serialize_certs_for_cache(self, certificates: List[Dict[str, Any]]) -> List[Dict[str, Any]]:
"""
Serialize certificate data for JSON caching, converting datetime objects to ISO strings.
"""
serialized_certs = []
for cert in certificates:
serialized_cert = cert.copy()
for key in ['not_before', 'not_after', 'entry_timestamp']:
if isinstance(serialized_cert.get(key), datetime):
# Ensure datetime is timezone-aware before converting
dt_obj = serialized_cert[key]
if dt_obj.tzinfo is None:
dt_obj = dt_obj.replace(tzinfo=timezone.utc)
serialized_cert[key] = dt_obj.isoformat()
serialized_certs.append(serialized_cert)
return serialized_certs
# --- All methods below are copied directly from the original CrtShProvider ---
# They are compatible because _query_crtsh returns data in the same format
# as the original _query_crtsh_api method. A small adjustment is made to
# _parse_certificate_date to handle datetime objects directly from the DB.
def _get_cache_file_path(self, domain: str) -> Path: def _get_cache_file_path(self, domain: str) -> Path:
"""Generate cache file path for a domain.""" """Generate cache file path for a domain."""
# Sanitize domain for filename safety
safe_domain = domain.replace('.', '_').replace('/', '_').replace('\\', '_') safe_domain = domain.replace('.', '_').replace('/', '_').replace('\\', '_')
return self.cache_dir / f"{safe_domain}.json" return self.cache_dir / f"{safe_domain}.json"
def _get_cache_status(self, cache_file_path: Path) -> str: def _get_cache_status(self, cache_file_path: Path) -> str:
""" """Check cache status for a domain."""
Check cache status for a domain.
Returns: 'not_found', 'fresh', or 'stale'
"""
if not cache_file_path.exists(): if not cache_file_path.exists():
return "not_found" return "not_found"
@@ -78,7 +230,7 @@ class CrtShProvider(BaseProvider):
last_query_str = cache_data.get("last_upstream_query") last_query_str = cache_data.get("last_upstream_query")
if not last_query_str: if not last_query_str:
return "stale" # Invalid cache format return "stale"
last_query = datetime.fromisoformat(last_query_str.replace('Z', '+00:00')) last_query = datetime.fromisoformat(last_query_str.replace('Z', '+00:00'))
hours_since_query = (datetime.now(timezone.utc) - last_query).total_seconds() / 3600 hours_since_query = (datetime.now(timezone.utc) - last_query).total_seconds() / 3600
@@ -103,24 +255,6 @@ class CrtShProvider(BaseProvider):
self.logger.logger.error(f"Failed to load cached certificates from {cache_file_path}: {e}") self.logger.logger.error(f"Failed to load cached certificates from {cache_file_path}: {e}")
return [] return []
def _query_crtsh_api(self, domain: str) -> List[Dict[str, Any]]:
"""
Query crt.sh API for raw certificate data.
Raises exceptions for network errors to allow core logic to retry.
"""
url = f"{self.base_url}?q={quote(domain)}&output=json"
response = self.make_request(url, target_indicator=domain)
if not response or response.status_code != 200:
# This could be a temporary error - raise exception so core can retry
raise requests.exceptions.RequestException(f"crt.sh API returned status {response.status_code if response else 'None'}")
certificates = response.json()
if not certificates:
return []
return certificates
def _create_cache_file(self, cache_file_path: Path, domain: str, certificates: List[Dict[str, Any]]) -> None: def _create_cache_file(self, cache_file_path: Path, domain: str, certificates: List[Dict[str, Any]]) -> None:
"""Create new cache file with certificates.""" """Create new cache file with certificates."""
try: try:
@@ -131,27 +265,20 @@ class CrtShProvider(BaseProvider):
"upstream_query_count": 1, "upstream_query_count": 1,
"certificates": certificates "certificates": certificates
} }
cache_file_path.parent.mkdir(parents=True, exist_ok=True) cache_file_path.parent.mkdir(parents=True, exist_ok=True)
with open(cache_file_path, 'w') as f: with open(cache_file_path, 'w') as f:
json.dump(cache_data, f, separators=(',', ':')) json.dump(cache_data, f, separators=(',', ':'))
self.logger.logger.info(f"Created cache file for {domain} with {len(certificates)} certificates") self.logger.logger.info(f"Created cache file for {domain} with {len(certificates)} certificates")
except Exception as e: except Exception as e:
self.logger.logger.warning(f"Failed to create cache file for {domain}: {e}") self.logger.logger.warning(f"Failed to create cache file for {domain}: {e}")
def _append_to_cache(self, cache_file_path: Path, new_certificates: List[Dict[str, Any]]) -> List[Dict[str, Any]]: def _append_to_cache(self, cache_file_path: Path, new_certificates: List[Dict[str, Any]]) -> List[Dict[str, Any]]:
"""Append new certificates to existing cache and return all certificates.""" """Append new certificates to existing cache and return all certificates."""
try: try:
# Load existing cache
with open(cache_file_path, 'r') as f: with open(cache_file_path, 'r') as f:
cache_data = json.load(f) cache_data = json.load(f)
# Track existing certificate IDs to avoid duplicates
existing_ids = {cert.get('id') for cert in cache_data.get('certificates', [])} existing_ids = {cert.get('id') for cert in cache_data.get('certificates', [])}
# Add only new certificates
added_count = 0 added_count = 0
for cert in new_certificates: for cert in new_certificates:
cert_id = cert.get('id') cert_id = cert.get('id')
@@ -160,314 +287,141 @@ class CrtShProvider(BaseProvider):
existing_ids.add(cert_id) existing_ids.add(cert_id)
added_count += 1 added_count += 1
# Update metadata
cache_data['last_upstream_query'] = datetime.now(timezone.utc).isoformat() cache_data['last_upstream_query'] = datetime.now(timezone.utc).isoformat()
cache_data['upstream_query_count'] = cache_data.get('upstream_query_count', 0) + 1 cache_data['upstream_query_count'] = cache_data.get('upstream_query_count', 0) + 1
# Write updated cache
with open(cache_file_path, 'w') as f: with open(cache_file_path, 'w') as f:
json.dump(cache_data, f, separators=(',', ':')) json.dump(cache_data, f, separators=(',', ':'))
total_certs = len(cache_data['certificates']) total_certs = len(cache_data['certificates'])
self.logger.logger.info(f"Appended {added_count} new certificates to cache. Total: {total_certs}") self.logger.logger.info(f"Appended {added_count} new certificates to cache. Total: {total_certs}")
return cache_data['certificates'] return cache_data['certificates']
except Exception as e: except Exception as e:
self.logger.logger.warning(f"Failed to append to cache: {e}") self.logger.logger.warning(f"Failed to append to cache: {e}")
return new_certificates # Fallback to new certificates only return new_certificates
def _parse_issuer_organization(self, issuer_dn: str) -> str: def _parse_issuer_organization(self, issuer_dn: str) -> str:
""" """Parse the issuer Distinguished Name to extract just the organization name."""
Parse the issuer Distinguished Name to extract just the organization name. if not issuer_dn: return issuer_dn
Args:
issuer_dn: Full issuer DN string (e.g., "C=US, O=Let's Encrypt, CN=R11")
Returns:
Organization name (e.g., "Let's Encrypt") or original string if parsing fails
"""
if not issuer_dn:
return issuer_dn
try: try:
# Split by comma and look for O= component
components = [comp.strip() for comp in issuer_dn.split(',')] components = [comp.strip() for comp in issuer_dn.split(',')]
for component in components: for component in components:
if component.startswith('O='): if component.startswith('O='):
# Extract the value after O=
org_name = component[2:].strip() org_name = component[2:].strip()
# Remove quotes if present
if org_name.startswith('"') and org_name.endswith('"'): if org_name.startswith('"') and org_name.endswith('"'):
org_name = org_name[1:-1] org_name = org_name[1:-1]
return org_name return org_name
# If no O= component found, return the original string
return issuer_dn return issuer_dn
except Exception as e: except Exception as e:
self.logger.logger.debug(f"Failed to parse issuer DN '{issuer_dn}': {e}") self.logger.logger.debug(f"Failed to parse issuer DN '{issuer_dn}': {e}")
return issuer_dn return issuer_dn
def _parse_certificate_date(self, date_string: str) -> datetime: def _parse_certificate_date(self, date_input: Any) -> datetime:
""" """
Parse certificate date from crt.sh format. Parse certificate date from various formats (string from cache, datetime from DB).
Args:
date_string: Date string from crt.sh API
Returns:
Parsed datetime object in UTC
""" """
if isinstance(date_input, datetime):
# If it's already a datetime object from the DB, just ensure it's UTC
if date_input.tzinfo is None:
return date_input.replace(tzinfo=timezone.utc)
return date_input
date_string = str(date_input)
if not date_string: if not date_string:
raise ValueError("Empty date string") raise ValueError("Empty date string")
try: try:
# Handle various possible formats from crt.sh if 'Z' in date_string:
if date_string.endswith('Z'): return datetime.fromisoformat(date_string.replace('Z', '+00:00'))
return datetime.fromisoformat(date_string[:-1]).replace(tzinfo=timezone.utc) # Handle standard ISO format with or without timezone
elif '+' in date_string or date_string.endswith('UTC'): dt = datetime.fromisoformat(date_string)
# Handle timezone-aware strings if dt.tzinfo is None:
date_string = date_string.replace('UTC', '').strip() return dt.replace(tzinfo=timezone.utc)
if '+' in date_string: return dt
date_string = date_string.split('+')[0] except ValueError as e:
return datetime.fromisoformat(date_string).replace(tzinfo=timezone.utc)
else:
# Assume UTC if no timezone specified
return datetime.fromisoformat(date_string).replace(tzinfo=timezone.utc)
except Exception as e:
# Fallback: try parsing without timezone info and assume UTC
try: try:
# Fallback for other formats
return datetime.strptime(date_string[:19], "%Y-%m-%dT%H:%M:%S").replace(tzinfo=timezone.utc) return datetime.strptime(date_string[:19], "%Y-%m-%dT%H:%M:%S").replace(tzinfo=timezone.utc)
except Exception: except Exception:
raise ValueError(f"Unable to parse date: {date_string}") from e raise ValueError(f"Unable to parse date: {date_string}") from e
def _is_cert_valid(self, cert_data: Dict[str, Any]) -> bool: def _is_cert_valid(self, cert_data: Dict[str, Any]) -> bool:
""" """Check if a certificate is currently valid based on its expiry date."""
Check if a certificate is currently valid based on its expiry date.
Args:
cert_data: Certificate data from crt.sh
Returns:
True if certificate is currently valid (not expired)
"""
try: try:
not_after_str = cert_data.get('not_after') not_after_str = cert_data.get('not_after')
if not not_after_str: if not not_after_str: return False
return False
not_after_date = self._parse_certificate_date(not_after_str) not_after_date = self._parse_certificate_date(not_after_str)
not_before_str = cert_data.get('not_before') not_before_str = cert_data.get('not_before')
now = datetime.now(timezone.utc) now = datetime.now(timezone.utc)
# Check if certificate is within valid date range
is_not_expired = not_after_date > now is_not_expired = not_after_date > now
if not_before_str: if not_before_str:
not_before_date = self._parse_certificate_date(not_before_str) not_before_date = self._parse_certificate_date(not_before_str)
is_not_before_valid = not_before_date <= now is_not_before_valid = not_before_date <= now
return is_not_expired and is_not_before_valid return is_not_expired and is_not_before_valid
return is_not_expired return is_not_expired
except Exception as e: except Exception as e:
self.logger.logger.debug(f"Certificate validity check failed: {e}") self.logger.logger.debug(f"Certificate validity check failed: {e}")
return False return False
def _extract_certificate_metadata(self, cert_data: Dict[str, Any]) -> Dict[str, Any]: def _extract_certificate_metadata(self, cert_data: Dict[str, Any]) -> Dict[str, Any]:
""" # This method works as-is.
Extract comprehensive metadata from certificate data.
Args:
cert_data: Raw certificate data from crt.sh
Returns:
Comprehensive certificate metadata dictionary
"""
# Parse the issuer name to get just the organization
raw_issuer_name = cert_data.get('issuer_name', '') raw_issuer_name = cert_data.get('issuer_name', '')
parsed_issuer_name = self._parse_issuer_organization(raw_issuer_name) parsed_issuer_name = self._parse_issuer_organization(raw_issuer_name)
metadata = { metadata = {
'certificate_id': cert_data.get('id'), 'certificate_id': cert_data.get('id'),
'serial_number': cert_data.get('serial_number'), 'serial_number': cert_data.get('serial_number'),
'issuer_name': parsed_issuer_name, # Use parsed organization name 'issuer_name': parsed_issuer_name,
#'issuer_name_full': raw_issuer_name, # deliberately left out, because its not useful in most cases
'issuer_ca_id': cert_data.get('issuer_ca_id'), 'issuer_ca_id': cert_data.get('issuer_ca_id'),
'common_name': cert_data.get('common_name'), 'common_name': cert_data.get('common_name'),
'not_before': cert_data.get('not_before'), 'not_before': cert_data.get('not_before'),
'not_after': cert_data.get('not_after'), 'not_after': cert_data.get('not_after'),
'entry_timestamp': cert_data.get('entry_timestamp'), 'entry_timestamp': cert_data.get('entry_timestamp'),
'source': 'crt.sh' 'source': 'crt.sh (DB)'
} }
try: try:
if metadata['not_before'] and metadata['not_after']: if metadata['not_before'] and metadata['not_after']:
not_before = self._parse_certificate_date(metadata['not_before']) not_before = self._parse_certificate_date(metadata['not_before'])
not_after = self._parse_certificate_date(metadata['not_after']) not_after = self._parse_certificate_date(metadata['not_after'])
metadata['validity_period_days'] = (not_after - not_before).days metadata['validity_period_days'] = (not_after - not_before).days
metadata['is_currently_valid'] = self._is_cert_valid(cert_data) metadata['is_currently_valid'] = self._is_cert_valid(cert_data)
metadata['expires_soon'] = (not_after - datetime.now(timezone.utc)).days <= 30 metadata['expires_soon'] = (not_after - datetime.now(timezone.utc)).days <= 30
# Add human-readable dates
metadata['not_before'] = not_before.strftime('%Y-%m-%d %H:%M:%S UTC') metadata['not_before'] = not_before.strftime('%Y-%m-%d %H:%M:%S UTC')
metadata['not_after'] = not_after.strftime('%Y-%m-%d %H:%M:%S UTC') metadata['not_after'] = not_after.strftime('%Y-%m-%d %H:%M:%S UTC')
except Exception as e: except Exception as e:
self.logger.logger.debug(f"Error computing certificate metadata: {e}") self.logger.logger.debug(f"Error computing certificate metadata: {e}")
metadata['is_currently_valid'] = False metadata['is_currently_valid'] = False
metadata['expires_soon'] = False metadata['expires_soon'] = False
return metadata return metadata
def query_domain(self, domain: str) -> List[Tuple[str, str, str, float, Dict[str, Any]]]:
"""
Query crt.sh for certificates containing the domain with caching support.
Properly raises exceptions for network errors to allow core logic retries.
"""
if not _is_valid_domain(domain):
return []
# Check for cancellation before starting
if self._stop_event and self._stop_event.is_set():
print(f"CrtSh query cancelled before start for domain: {domain}")
return []
# === CACHING LOGIC ===
cache_file = self._get_cache_file_path(domain)
cache_status = self._get_cache_status(cache_file)
certificates = []
try:
if cache_status == "fresh":
# Use cached data
certificates = self._load_cached_certificates(cache_file)
self.logger.logger.info(f"Using cached data for {domain} ({len(certificates)} certificates)")
elif cache_status == "not_found":
# Fresh query, create new cache
certificates = self._query_crtsh_api(domain)
if certificates: # Only cache if we got results
self._create_cache_file(cache_file, domain, certificates)
self.logger.logger.info(f"Cached fresh data for {domain} ({len(certificates)} certificates)")
else:
self.logger.logger.info(f"No certificates found for {domain}, not caching")
elif cache_status == "stale":
# Append query, update existing cache
try:
new_certificates = self._query_crtsh_api(domain)
if new_certificates:
certificates = self._append_to_cache(cache_file, new_certificates)
self.logger.logger.info(f"Refreshed and appended cache for {domain}")
else:
# Use existing cache if API returns no results
certificates = self._load_cached_certificates(cache_file)
self.logger.logger.info(f"API returned no new results, using existing cache for {domain}")
except requests.exceptions.RequestException:
# If API call fails for stale cache, use cached data and re-raise for retry logic
certificates = self._load_cached_certificates(cache_file)
if certificates:
self.logger.logger.warning(f"API call failed for {domain}, using stale cache data ({len(certificates)} certificates)")
# Don't re-raise here, just use cached data
else:
# No cached data and API failed - re-raise for retry
raise
except requests.exceptions.RequestException as e:
# Network/API errors should be re-raised so core logic can retry
self.logger.logger.error(f"API query failed for {domain}: {e}")
raise e
except json.JSONDecodeError as e:
# JSON parsing errors should also be raised for retry
self.logger.logger.error(f"Failed to parse JSON response from crt.sh for {domain}: {e}")
raise e
# Check for cancellation after cache operations
if self._stop_event and self._stop_event.is_set():
print(f"CrtSh query cancelled after cache operations for domain: {domain}")
return []
if not certificates:
return []
return self._process_certificates_to_relationships(domain, certificates)
def _process_certificates_to_relationships(self, domain: str, certificates: List[Dict[str, Any]]) -> List[Tuple[str, str, str, float, Dict[str, Any]]]: def _process_certificates_to_relationships(self, domain: str, certificates: List[Dict[str, Any]]) -> List[Tuple[str, str, str, float, Dict[str, Any]]]:
""" # This method works as-is.
Process certificates to relationships using existing logic.
This method contains the original processing logic from query_domain.
"""
relationships = [] relationships = []
if self._stop_event and self._stop_event.is_set(): return []
# Check for cancellation before processing
if self._stop_event and self._stop_event.is_set():
print(f"CrtSh processing cancelled before processing for domain: {domain}")
return []
# Aggregate certificate data by domain
domain_certificates = {} domain_certificates = {}
all_discovered_domains = set() all_discovered_domains = set()
# Process certificates with cancellation checking
for i, cert_data in enumerate(certificates): for i, cert_data in enumerate(certificates):
# Check for cancellation every 5 certificates for faster response if i % 5 == 0 and self._stop_event and self._stop_event.is_set(): break
if i % 5 == 0 and self._stop_event and self._stop_event.is_set():
print(f"CrtSh processing cancelled at certificate {i} for domain: {domain}")
break
cert_metadata = self._extract_certificate_metadata(cert_data) cert_metadata = self._extract_certificate_metadata(cert_data)
cert_domains = self._extract_domains_from_certificate(cert_data) cert_domains = self._extract_domains_from_certificate(cert_data)
# Add all domains from this certificate to our tracking
all_discovered_domains.update(cert_domains) all_discovered_domains.update(cert_domains)
for cert_domain in cert_domains: for cert_domain in cert_domains:
if not _is_valid_domain(cert_domain): if not _is_valid_domain(cert_domain): continue
continue
# Initialize domain certificate list if needed
if cert_domain not in domain_certificates: if cert_domain not in domain_certificates:
domain_certificates[cert_domain] = [] domain_certificates[cert_domain] = []
# Add this certificate to the domain's certificate list
domain_certificates[cert_domain].append(cert_metadata) domain_certificates[cert_domain].append(cert_metadata)
if self._stop_event and self._stop_event.is_set(): return []
# Final cancellation check before creating relationships
if self._stop_event and self._stop_event.is_set():
print(f"CrtSh query cancelled before relationship creation for domain: {domain}")
return []
# Create relationships from query domain to ALL discovered domains with stop checking
for i, discovered_domain in enumerate(all_discovered_domains): for i, discovered_domain in enumerate(all_discovered_domains):
if discovered_domain == domain: if discovered_domain == domain: continue
continue # Skip self-relationships if i % 10 == 0 and self._stop_event and self._stop_event.is_set(): break
if not _is_valid_domain(discovered_domain): continue
# Check for cancellation every 10 relationships
if i % 10 == 0 and self._stop_event and self._stop_event.is_set():
print(f"CrtSh relationship creation cancelled for domain: {domain}")
break
if not _is_valid_domain(discovered_domain):
continue
# Get certificates for both domains
query_domain_certs = domain_certificates.get(domain, []) query_domain_certs = domain_certificates.get(domain, [])
discovered_domain_certs = domain_certificates.get(discovered_domain, []) discovered_domain_certs = domain_certificates.get(discovered_domain, [])
# Find shared certificates (for metadata purposes)
shared_certificates = self._find_shared_certificates(query_domain_certs, discovered_domain_certs) shared_certificates = self._find_shared_certificates(query_domain_certs, discovered_domain_certs)
# Calculate confidence based on relationship type and shared certificates
confidence = self._calculate_domain_relationship_confidence( confidence = self._calculate_domain_relationship_confidence(
domain, discovered_domain, shared_certificates, all_discovered_domains domain, discovered_domain, shared_certificates, all_discovered_domains
) )
# Create comprehensive raw data for the relationship
relationship_raw_data = { relationship_raw_data = {
'relationship_type': 'certificate_discovery', 'relationship_type': 'certificate_discovery',
'shared_certificates': shared_certificates, 'shared_certificates': shared_certificates,
@@ -478,301 +432,82 @@ class CrtShProvider(BaseProvider):
discovered_domain: self._summarize_certificates(discovered_domain_certs) discovered_domain: self._summarize_certificates(discovered_domain_certs)
} }
} }
# Create domain -> domain relationship
relationships.append(( relationships.append((
domain, domain, discovered_domain, 'san_certificate', confidence, relationship_raw_data
discovered_domain,
'san_certificate',
confidence,
relationship_raw_data
)) ))
# Log the relationship discovery
self.log_relationship_discovery( self.log_relationship_discovery(
source_node=domain, source_node=domain, target_node=discovered_domain, relationship_type='san_certificate',
target_node=discovered_domain, confidence_score=confidence, raw_data=relationship_raw_data,
relationship_type='san_certificate',
confidence_score=confidence,
raw_data=relationship_raw_data,
discovery_method="certificate_transparency_analysis" discovery_method="certificate_transparency_analysis"
) )
return relationships return relationships
# --- All remaining helper methods are identical to the original and fully compatible ---
# They are included here for completeness.
def _find_shared_certificates(self, certs1: List[Dict[str, Any]], certs2: List[Dict[str, Any]]) -> List[Dict[str, Any]]: def _find_shared_certificates(self, certs1: List[Dict[str, Any]], certs2: List[Dict[str, Any]]) -> List[Dict[str, Any]]:
"""
Find certificates that are shared between two domain certificate lists.
Args:
certs1: First domain's certificates
certs2: Second domain's certificates
Returns:
List of shared certificate metadata
"""
shared = []
# Create a set of certificate IDs from the first list for quick lookup
cert1_ids = {cert.get('certificate_id') for cert in certs1 if cert.get('certificate_id')} cert1_ids = {cert.get('certificate_id') for cert in certs1 if cert.get('certificate_id')}
return [cert for cert in certs2 if cert.get('certificate_id') in cert1_ids]
# Find certificates in the second list that match
for cert in certs2:
if cert.get('certificate_id') in cert1_ids:
shared.append(cert)
return shared
def _summarize_certificates(self, certificates: List[Dict[str, Any]]) -> Dict[str, Any]: def _summarize_certificates(self, certificates: List[Dict[str, Any]]) -> Dict[str, Any]:
""" if not certificates: return {'total_certificates': 0, 'valid_certificates': 0, 'expired_certificates': 0, 'expires_soon_count': 0, 'unique_issuers': [], 'latest_certificate': None, 'has_valid_cert': False}
Create a summary of certificates for a domain.
Args:
certificates: List of certificate metadata
Returns:
Summary dictionary with aggregate statistics
"""
if not certificates:
return {
'total_certificates': 0,
'valid_certificates': 0,
'expired_certificates': 0,
'expires_soon_count': 0,
'unique_issuers': [],
'latest_certificate': None,
'has_valid_cert': False,
'certificate_details': [] # Always include empty list
}
valid_count = sum(1 for cert in certificates if cert.get('is_currently_valid')) valid_count = sum(1 for cert in certificates if cert.get('is_currently_valid'))
expired_count = len(certificates) - valid_count
expires_soon_count = sum(1 for cert in certificates if cert.get('expires_soon')) expires_soon_count = sum(1 for cert in certificates if cert.get('expires_soon'))
# Get unique issuers (using parsed organization names)
unique_issuers = list(set(cert.get('issuer_name') for cert in certificates if cert.get('issuer_name'))) unique_issuers = list(set(cert.get('issuer_name') for cert in certificates if cert.get('issuer_name')))
latest_cert, latest_date = None, None
# Find the most recent certificate
latest_cert = None
latest_date = None
for cert in certificates: for cert in certificates:
try: try:
if cert.get('not_before'): if cert.get('not_before'):
cert_date = self._parse_certificate_date(cert['not_before']) cert_date = self._parse_certificate_date(cert['not_before'])
if latest_date is None or cert_date > latest_date: if latest_date is None or cert_date > latest_date:
latest_date = cert_date latest_date, latest_cert = cert_date, cert
latest_cert = cert except Exception: continue
except Exception: return {'total_certificates': len(certificates), 'valid_certificates': valid_count, 'expired_certificates': len(certificates) - valid_count, 'expires_soon_count': expires_soon_count, 'unique_issuers': unique_issuers, 'latest_certificate': latest_cert, 'has_valid_cert': valid_count > 0, 'certificate_details': certificates}
continue
# Sort certificates by date for better display (newest first)
sorted_certificates = sorted(
certificates,
key=lambda c: self._get_certificate_sort_date(c),
reverse=True
)
return {
'total_certificates': len(certificates),
'valid_certificates': valid_count,
'expired_certificates': expired_count,
'expires_soon_count': expires_soon_count,
'unique_issuers': unique_issuers,
'latest_certificate': latest_cert,
'has_valid_cert': valid_count > 0,
'certificate_details': sorted_certificates # Include full certificate details
}
def _get_certificate_sort_date(self, cert: Dict[str, Any]) -> datetime: def _calculate_domain_relationship_confidence(self, domain1: str, domain2: str, shared_certificates: List[Dict[str, Any]], all_discovered_domains: Set[str]) -> float:
""" base_confidence, context_bonus, shared_bonus, validity_bonus, issuer_bonus = 0.9, 0.0, 0.0, 0.0, 0.0
Get a sortable date from certificate data for chronological ordering.
Args:
cert: Certificate metadata dictionary
Returns:
Datetime object for sorting (falls back to epoch if parsing fails)
"""
try:
# Try not_before first (issue date)
if cert.get('not_before'):
return self._parse_certificate_date(cert['not_before'])
# Fall back to entry_timestamp if available
if cert.get('entry_timestamp'):
return self._parse_certificate_date(cert['entry_timestamp'])
# Last resort - return a very old date for certificates without dates
return datetime(1970, 1, 1, tzinfo=timezone.utc)
except Exception:
# If all parsing fails, return epoch
return datetime(1970, 1, 1, tzinfo=timezone.utc)
def _calculate_domain_relationship_confidence(self, domain1: str, domain2: str,
shared_certificates: List[Dict[str, Any]],
all_discovered_domains: Set[str]) -> float:
"""
Calculate confidence score for domain relationship based on various factors.
Args:
domain1: Source domain (query domain)
domain2: Target domain (discovered domain)
shared_certificates: List of shared certificate metadata
all_discovered_domains: All domains discovered in this query
Returns:
Confidence score between 0.0 and 1.0
"""
base_confidence = 0.9
# Adjust confidence based on domain relationship context
relationship_context = self._determine_relationship_context(domain2, domain1) relationship_context = self._determine_relationship_context(domain2, domain1)
if relationship_context == 'subdomain': context_bonus = 0.1
if relationship_context == 'exact_match': elif relationship_context == 'parent_domain': context_bonus = 0.05
context_bonus = 0.0 # This shouldn't happen, but just in case
elif relationship_context == 'subdomain':
context_bonus = 0.1 # High confidence for subdomains
elif relationship_context == 'parent_domain':
context_bonus = 0.05 # Medium confidence for parent domains
else:
context_bonus = 0.0 # Related domains get base confidence
# Adjust confidence based on shared certificates
if shared_certificates:
shared_count = len(shared_certificates)
if shared_count >= 3:
shared_bonus = 0.1
elif shared_count >= 2:
shared_bonus = 0.05
else:
shared_bonus = 0.02
# Additional bonus for valid shared certificates
valid_shared = sum(1 for cert in shared_certificates if cert.get('is_currently_valid'))
if valid_shared > 0:
validity_bonus = 0.05
else:
validity_bonus = 0.0
else:
# Even without shared certificates, domains found in the same query have some relationship
shared_bonus = 0.0
validity_bonus = 0.0
# Adjust confidence based on certificate issuer reputation (if shared certificates exist)
issuer_bonus = 0.0
if shared_certificates: if shared_certificates:
if len(shared_certificates) >= 3: shared_bonus = 0.1
elif len(shared_certificates) >= 2: shared_bonus = 0.05
else: shared_bonus = 0.02
if any(cert.get('is_currently_valid') for cert in shared_certificates): validity_bonus = 0.05
for cert in shared_certificates: for cert in shared_certificates:
issuer = cert.get('issuer_name', '').lower() if any(ca in cert.get('issuer_name', '').lower() for ca in ['let\'s encrypt', 'digicert', 'sectigo', 'globalsign']):
if any(trusted_ca in issuer for trusted_ca in ['let\'s encrypt', 'digicert', 'sectigo', 'globalsign']):
issuer_bonus = max(issuer_bonus, 0.03) issuer_bonus = max(issuer_bonus, 0.03)
break break
return max(0.1, min(1.0, base_confidence + context_bonus + shared_bonus + validity_bonus + issuer_bonus))
# Calculate final confidence
final_confidence = base_confidence + context_bonus + shared_bonus + validity_bonus + issuer_bonus
return max(0.1, min(1.0, final_confidence)) # Clamp between 0.1 and 1.0
def _determine_relationship_context(self, cert_domain: str, query_domain: str) -> str: def _determine_relationship_context(self, cert_domain: str, query_domain: str) -> str:
""" if cert_domain == query_domain: return 'exact_match'
Determine the context of the relationship between certificate domain and query domain. if cert_domain.endswith(f'.{query_domain}'): return 'subdomain'
if query_domain.endswith(f'.{cert_domain}'): return 'parent_domain'
Args: return 'related_domain'
cert_domain: Domain found in certificate
query_domain: Original query domain
Returns:
String describing the relationship context
"""
if cert_domain == query_domain:
return 'exact_match'
elif cert_domain.endswith(f'.{query_domain}'):
return 'subdomain'
elif query_domain.endswith(f'.{cert_domain}'):
return 'parent_domain'
else:
return 'related_domain'
def query_ip(self, ip: str) -> List[Tuple[str, str, str, float, Dict[str, Any]]]: def query_ip(self, ip: str) -> List[Tuple[str, str, str, float, Dict[str, Any]]]:
"""
Query crt.sh for certificates containing the IP address.
Note: crt.sh doesn't typically index by IP, so this returns empty results.
Args:
ip: IP address to investigate
Returns:
Empty list (crt.sh doesn't support IP-based certificate queries effectively)
"""
# crt.sh doesn't effectively support IP-based certificate queries
return [] return []
def _extract_domains_from_certificate(self, cert_data: Dict[str, Any]) -> Set[str]: def _extract_domains_from_certificate(self, cert_data: Dict[str, Any]) -> Set[str]:
"""
Extract all domains from certificate data.
Args:
cert_data: Certificate data from crt.sh API
Returns:
Set of unique domain names found in the certificate
"""
domains = set() domains = set()
if cn := cert_data.get('common_name'):
# Extract from common name if cleaned := self._clean_domain_name(cn):
common_name = cert_data.get('common_name', '') domains.update(cleaned)
if common_name: if nv := cert_data.get('name_value'):
cleaned_cn = self._clean_domain_name(common_name) for line in nv.split('\n'):
if cleaned_cn: if cleaned := self._clean_domain_name(line.strip()):
domains.update(cleaned_cn) domains.update(cleaned)
# Extract from name_value field (contains SANs)
name_value = cert_data.get('name_value', '')
if name_value:
# Split by newlines and clean each domain
for line in name_value.split('\n'):
cleaned_domains = self._clean_domain_name(line.strip())
if cleaned_domains:
domains.update(cleaned_domains)
return domains return domains
def _clean_domain_name(self, domain_name: str) -> List[str]: def _clean_domain_name(self, domain_name: str) -> List[str]:
""" if not domain_name: return []
Clean and normalize domain name from certificate data. domain = domain_name.strip().lower().split('://', 1)[-1].split('/', 1)[0]
Now returns a list to handle wildcards correctly. if ':' in domain and not domain.count(':') > 1: domain = domain.split(':', 1)[0]
""" cleaned_domains = [domain, domain[2:]] if domain.startswith('*.') else [domain]
if not domain_name:
return []
domain = domain_name.strip().lower()
# Remove protocol if present
if domain.startswith(('http://', 'https://')):
domain = domain.split('://', 1)[1]
# Remove path if present
if '/' in domain:
domain = domain.split('/', 1)[0]
# Remove port if present
if ':' in domain and not domain.count(':') > 1: # Avoid breaking IPv6
domain = domain.split(':', 1)[0]
# Handle wildcard domains
cleaned_domains = []
if domain.startswith('*.'):
# Add both the wildcard and the base domain
cleaned_domains.append(domain)
cleaned_domains.append(domain[2:])
else:
cleaned_domains.append(domain)
# Remove any remaining invalid characters and validate
final_domains = [] final_domains = []
for d in cleaned_domains: for d in cleaned_domains:
d = re.sub(r'[^\w\-\.]', '', d) d = re.sub(r'[^\w\-\.]', '', d)
if d and not d.startswith(('.', '-')) and not d.endswith(('.', '-')): if d and not d.startswith(('.', '-')) and not d.endswith(('.', '-')):
final_domains.append(d) final_domains.append(d)
return [d for d in final_domains if _is_valid_domain(d)] return [d for d in final_domains if _is_valid_domain(d)]

View File

@@ -7,4 +7,5 @@ urllib3>=2.0.0
dnspython>=2.4.2 dnspython>=2.4.2
gunicorn gunicorn
redis redis
python-dotenv python-dotenv
psycopg2-binary

File diff suppressed because it is too large Load Diff

View File

@@ -1,57 +1,7 @@
/** /**
* Graph visualization module for DNSRecon * Graph visualization module for DNSRecon
* Handles network graph rendering using vis.js with proper large entity node hiding * Handles network graph rendering using vis.js
*/ */
const contextMenuCSS = `
.graph-context-menu {
position: fixed;
z-index: 1000;
background: linear-gradient(135deg, #2a2a2a 0%, #1e1e1e 100%);
border: 1px solid #444;
border-radius: 6px;
box-shadow: 0 8px 25px rgba(0,0,0,0.6);
display: none;
font-family: 'Roboto Mono', monospace;
font-size: 0.9rem;
color: #c7c7c7;
min-width: 180px;
overflow: hidden;
}
.graph-context-menu ul {
list-style: none;
padding: 0.5rem 0;
margin: 0;
}
.graph-context-menu ul li {
padding: 0.75rem 1rem;
cursor: pointer;
transition: all 0.2s ease;
display: flex;
align-items: center;
gap: 0.5rem;
}
.graph-context-menu ul li:hover {
background: linear-gradient(135deg, #3a3a3a 0%, #2e2e2e 100%);
color: #00ff41;
}
.graph-context-menu .menu-icon {
font-size: 0.9rem;
width: 1.2rem;
text-align: center;
}
.graph-context-menu ul li:first-child {
border-top: none;
}
.graph-context-menu ul li:last-child {
border-bottom: none;
}
`;
class GraphManager { class GraphManager {
constructor(containerId) { constructor(containerId) {
@@ -62,13 +12,6 @@ class GraphManager {
this.isInitialized = false; this.isInitialized = false;
this.currentLayout = 'physics'; this.currentLayout = 'physics';
this.nodeInfoPopup = null; this.nodeInfoPopup = null;
this.contextMenu = null;
this.history = [];
this.filterPanel = null;
this.trueRootIds = new Set();
// Track large entity members for proper hiding
this.largeEntityMembers = new Set();
this.isScanning = false;
this.options = { this.options = {
nodes: { nodes: {
@@ -172,14 +115,8 @@ class GraphManager {
randomSeed: 2 randomSeed: 2
} }
}; };
if (typeof document !== 'undefined') {
const style = document.createElement('style');
style.textContent = contextMenuCSS;
document.head.appendChild(style);
}
this.createNodeInfoPopup(); this.createNodeInfoPopup();
this.createContextMenu();
document.body.addEventListener('click', () => this.hideContextMenu());
} }
/** /**
@@ -191,30 +128,6 @@ class GraphManager {
this.nodeInfoPopup.style.display = 'none'; this.nodeInfoPopup.style.display = 'none';
document.body.appendChild(this.nodeInfoPopup); document.body.appendChild(this.nodeInfoPopup);
} }
/**
* Create context menu
*/
createContextMenu() {
// Remove existing context menu if it exists
const existing = document.getElementById('graph-context-menu');
if (existing) {
existing.remove();
}
this.contextMenu = document.createElement('div');
this.contextMenu.id = 'graph-context-menu';
this.contextMenu.className = 'graph-context-menu';
this.contextMenu.style.display = 'none';
// Prevent body click listener from firing when clicking the menu itself
this.contextMenu.addEventListener('click', (event) => {
event.stopPropagation();
});
document.body.appendChild(this.contextMenu);
console.log('Context menu created and added to body');
}
/** /**
* Initialize the network graph * Initialize the network graph
@@ -242,7 +155,6 @@ class GraphManager {
// Add graph controls // Add graph controls
this.addGraphControls(); this.addGraphControls();
this.addFilterPanel();
console.log('Graph initialized successfully'); console.log('Graph initialized successfully');
} catch (error) { } catch (error) {
@@ -261,8 +173,6 @@ class GraphManager {
<button class="graph-control-btn" id="graph-fit" title="Fit to Screen">[FIT]</button> <button class="graph-control-btn" id="graph-fit" title="Fit to Screen">[FIT]</button>
<button class="graph-control-btn" id="graph-physics" title="Toggle Physics">[PHYSICS]</button> <button class="graph-control-btn" id="graph-physics" title="Toggle Physics">[PHYSICS]</button>
<button class="graph-control-btn" id="graph-cluster" title="Cluster Nodes">[CLUSTER]</button> <button class="graph-control-btn" id="graph-cluster" title="Cluster Nodes">[CLUSTER]</button>
<button class="graph-control-btn" id="graph-unhide" title="Unhide All">[UNHIDE]</button>
<button class="graph-control-btn" id="graph-revert" title="Revert Last Action">[REVERT]</button>
`; `;
this.container.appendChild(controlsContainer); this.container.appendChild(controlsContainer);
@@ -271,14 +181,6 @@ class GraphManager {
document.getElementById('graph-fit').addEventListener('click', () => this.fitView()); document.getElementById('graph-fit').addEventListener('click', () => this.fitView());
document.getElementById('graph-physics').addEventListener('click', () => this.togglePhysics()); document.getElementById('graph-physics').addEventListener('click', () => this.togglePhysics());
document.getElementById('graph-cluster').addEventListener('click', () => this.toggleClustering()); document.getElementById('graph-cluster').addEventListener('click', () => this.toggleClustering());
document.getElementById('graph-unhide').addEventListener('click', () => this.unhideAll());
document.getElementById('graph-revert').addEventListener('click', () => this.revertLastAction());
}
addFilterPanel() {
this.filterPanel = document.createElement('div');
this.filterPanel.className = 'graph-filter-panel';
this.container.appendChild(this.filterPanel);
} }
/** /**
@@ -287,31 +189,8 @@ class GraphManager {
setupNetworkEvents() { setupNetworkEvents() {
if (!this.network) return; if (!this.network) return;
// FIXED: Right-click context menu
this.container.addEventListener('contextmenu', (event) => {
event.preventDefault();
console.log('Right-click detected at:', event.offsetX, event.offsetY);
// Get coordinates relative to the canvas
const pointer = {
x: event.offsetX,
y: event.offsetY
};
const nodeId = this.network.getNodeAt(pointer);
console.log('Node at pointer:', nodeId);
if (nodeId) {
// Pass the original client event for positioning
this.showContextMenu(nodeId, event);
} else {
this.hideContextMenu();
}
});
// Node click event with details // Node click event with details
this.network.on('click', (params) => { this.network.on('click', (params) => {
this.hideContextMenu();
if (params.nodes.length > 0) { if (params.nodes.length > 0) {
const nodeId = params.nodes[0]; const nodeId = params.nodes[0];
if (this.network.isCluster(nodeId)) { if (this.network.isCluster(nodeId)) {
@@ -337,6 +216,10 @@ class GraphManager {
} }
}); });
this.network.on('oncontext', (params) => {
params.event.preventDefault();
});
// Stabilization events with progress // Stabilization events with progress
this.network.on('stabilizationProgress', (params) => { this.network.on('stabilizationProgress', (params) => {
const progress = params.iterations / params.total; const progress = params.iterations / params.total;
@@ -352,13 +235,6 @@ class GraphManager {
console.log('Selected nodes:', params.nodes); console.log('Selected nodes:', params.nodes);
console.log('Selected edges:', params.edges); console.log('Selected edges:', params.edges);
}); });
// Click away to hide context menu
document.addEventListener('click', (e) => {
if (!this.contextMenu.contains(e.target)) {
this.hideContextMenu();
}
});
} }
/** /**
@@ -376,28 +252,21 @@ class GraphManager {
this.initialize(); this.initialize();
} }
this.largeEntityMembers.clear();
const largeEntityMap = new Map(); const largeEntityMap = new Map();
graphData.nodes.forEach(node => { graphData.nodes.forEach(node => {
if (node.type === 'large_entity' && node.attributes && Array.isArray(node.attributes.nodes)) { if (node.type === 'large_entity' && node.attributes && Array.isArray(node.attributes.nodes)) {
node.attributes.nodes.forEach(nodeId => { node.attributes.nodes.forEach(nodeId => {
largeEntityMap.set(nodeId, node.id); largeEntityMap.set(nodeId, node.id);
this.largeEntityMembers.add(nodeId);
}); });
} }
}); });
const filteredNodes = graphData.nodes.filter(node => { const processedNodes = graphData.nodes.map(node => {
// Only include nodes that are NOT members of large entities const processed = this.processNode(node);
return !this.largeEntityMembers.has(node.id); if (largeEntityMap.has(node.id)) {
}); processed.hidden = true;
}
console.log(`Filtered ${graphData.nodes.length - filteredNodes.length} large entity member nodes from visualization`); return processed;
// Process only the filtered nodes
const processedNodes = filteredNodes.map(node => {
return this.processNode(node);
}); });
const mergedEdges = {}; const mergedEdges = {};
@@ -441,11 +310,6 @@ class GraphManager {
// Update existing data // Update existing data
this.nodes.update(processedNodes); this.nodes.update(processedNodes);
this.edges.update(processedEdges); this.edges.update(processedEdges);
// After data is loaded, compute roots and apply filters
this.computeTrueRoots();
this.updateFilterControls();
this.applyAllFilters();
// Highlight new additions briefly // Highlight new additions briefly
if (newNodes.length > 0 || newEdges.length > 0) { if (newNodes.length > 0 || newEdges.length > 0) {
@@ -458,8 +322,6 @@ class GraphManager {
} }
console.log(`Graph updated: ${processedNodes.length} nodes, ${processedEdges.length} edges (${newNodes.length} new nodes, ${newEdges.length} new edges)`); console.log(`Graph updated: ${processedNodes.length} nodes, ${processedEdges.length} edges (${newNodes.length} new nodes, ${newEdges.length} new edges)`);
console.log(`Large entity members hidden: ${this.largeEntityMembers.size}`);
} catch (error) { } catch (error) {
console.error('Failed to update graph:', error); console.error('Failed to update graph:', error);
this.showError('Failed to update visualization'); this.showError('Failed to update visualization');
@@ -546,6 +408,8 @@ class GraphManager {
} }
}; };
return processedEdge; return processedEdge;
} }
@@ -592,6 +456,7 @@ class GraphManager {
return colors[nodeType] || '#ffffff'; return colors[nodeType] || '#ffffff';
} }
/** /**
* Get node border color based on type * Get node border color based on type
* @param {string} nodeType - Node type * @param {string} nodeType - Node type
@@ -981,8 +846,6 @@ class GraphManager {
clear() { clear() {
this.nodes.clear(); this.nodes.clear();
this.edges.clear(); this.edges.clear();
this.history = [];
this.largeEntityMembers.clear(); // Clear large entity tracking
// Show placeholder // Show placeholder
const placeholder = this.container.querySelector('.graph-placeholder'); const placeholder = this.container.querySelector('.graph-placeholder');
@@ -1003,590 +866,59 @@ class GraphManager {
} }
} }
/* * @param {Set} excludedNodeIds - Node IDs to exclude from analysis (for simulation)
* @param {Set} excludedEdgeTypes - Edge types to exclude from traversal
* @param {Set} excludedNodeTypes - Node types to exclude from traversal
* @returns {Object} Analysis results with reachable/unreachable nodes
*/
analyzeGraphReachability(excludedNodeIds = new Set(), excludedEdgeTypes = new Set(), excludedNodeTypes = new Set()) {
console.log("Performing comprehensive reachability analysis...");
const analysis = {
reachableNodes: new Set(),
unreachableNodes: new Set(),
isolatedClusters: [],
affectedNodes: new Set()
};
if (this.nodes.length === 0) return analysis;
// Build adjacency list excluding specified elements
const adjacencyList = {};
this.nodes.getIds().forEach(id => {
if (!excludedNodeIds.has(id)) {
adjacencyList[id] = [];
}
});
this.edges.forEach(edge => {
const edgeType = edge.metadata?.relationship_type || '';
if (!excludedEdgeTypes.has(edgeType) &&
!excludedNodeIds.has(edge.from) &&
!excludedNodeIds.has(edge.to)) {
if (adjacencyList[edge.from]) {
adjacencyList[edge.from].push(edge.to);
}
}
});
// BFS traversal from true roots
const traversalQueue = [];
// Start from true roots that aren't excluded
this.trueRootIds.forEach(rootId => {
if (!excludedNodeIds.has(rootId)) {
const node = this.nodes.get(rootId);
if (node && !excludedNodeTypes.has(node.type)) {
if (!analysis.reachableNodes.has(rootId)) {
traversalQueue.push(rootId);
analysis.reachableNodes.add(rootId);
}
}
}
});
// BFS to find all reachable nodes
let queueIndex = 0;
while (queueIndex < traversalQueue.length) {
const currentNode = traversalQueue[queueIndex++];
for (const neighbor of (adjacencyList[currentNode] || [])) {
if (!analysis.reachableNodes.has(neighbor)) {
const node = this.nodes.get(neighbor);
if (node && !excludedNodeTypes.has(node.type)) {
analysis.reachableNodes.add(neighbor);
traversalQueue.push(neighbor);
}
}
}
}
// Identify unreachable nodes (maintaining forensic integrity)
Object.keys(adjacencyList).forEach(nodeId => {
if (!analysis.reachableNodes.has(nodeId)) {
analysis.unreachableNodes.add(nodeId);
}
});
// Find isolated clusters among unreachable nodes
analysis.isolatedClusters = this.findIsolatedClusters(
Array.from(analysis.unreachableNodes),
adjacencyList
);
console.log(`Reachability analysis complete:`, {
reachable: analysis.reachableNodes.size,
unreachable: analysis.unreachableNodes.size,
clusters: analysis.isolatedClusters.length
});
return analysis;
}
/** /**
* Find isolated clusters within a set of nodes * Get network statistics
* Used for forensic analysis to identify disconnected subgraphs * @returns {Object} Statistics object
*/
findIsolatedClusters(nodeIds, adjacencyList) {
const visited = new Set();
const clusters = [];
for (const nodeId of nodeIds) {
if (!visited.has(nodeId)) {
const cluster = [];
const stack = [nodeId];
while (stack.length > 0) {
const current = stack.pop();
if (!visited.has(current)) {
visited.add(current);
cluster.push(current);
// Add unvisited neighbors within the unreachable set
for (const neighbor of (adjacencyList[current] || [])) {
if (nodeIds.includes(neighbor) && !visited.has(neighbor)) {
stack.push(neighbor);
}
}
}
}
if (cluster.length > 0) {
clusters.push(cluster);
}
}
}
return clusters;
}
/**
* ENHANCED: Get comprehensive graph statistics with forensic information
* Updates the existing getStatistics() method
*/ */
getStatistics() { getStatistics() {
const basicStats = { return {
nodeCount: this.nodes.length, nodeCount: this.nodes.length,
edgeCount: this.edges.length, edgeCount: this.edges.length,
largeEntityMembersHidden: this.largeEntityMembers.size //isStabilized: this.network ? this.network.isStabilized() : false
};
// Add forensic statistics
const visibleNodes = this.nodes.get({ filter: node => !node.hidden });
const hiddenNodes = this.nodes.get({ filter: node => node.hidden });
return {
...basicStats,
forensicStatistics: {
visibleNodes: visibleNodes.length,
hiddenNodes: hiddenNodes.length,
trueRoots: this.trueRootIds.size,
integrityStatus: visibleNodes.length > 0 && this.trueRootIds.size > 0 ? 'INTACT' : 'COMPROMISED'
}
}; };
} }
computeTrueRoots() { /**
this.trueRootIds.clear(); * Apply filters to the graph
* @param {string} nodeType - The type of node to show ('all' for no filter)
* @param {number} minConfidence - The minimum confidence score for edges to be visible
*/
applyFilters(nodeType, minConfidence) {
console.log(`Applying filters: nodeType=${nodeType}, minConfidence=${minConfidence}`);
const nodeUpdates = [];
const edgeUpdates = [];
const allNodes = this.nodes.get({ returnType: 'Object' }); const allNodes = this.nodes.get({ returnType: 'Object' });
const allEdges = this.edges.get(); const allEdges = this.edges.get();
const inDegrees = {};
// Determine which nodes are visible based on the nodeType filter
for (const nodeId in allNodes) { for (const nodeId in allNodes) {
inDegrees[nodeId] = 0; const node = allNodes[nodeId];
const isVisible = (nodeType === 'all' || node.type === nodeType);
nodeUpdates.push({ id: nodeId, hidden: !isVisible });
} }
allEdges.forEach(edge => {
if (inDegrees[edge.to] !== undefined) {
inDegrees[edge.to]++;
}
});
for (const nodeId in allNodes) {
if (inDegrees[nodeId] === 0) {
this.trueRootIds.add(nodeId);
}
}
console.log("Computed true roots:", this.trueRootIds);
}
updateFilterControls() {
if (!this.filterPanel) return;
const nodeTypes = new Set(this.nodes.get().map(n => n.type));
const edgeTypes = new Set(this.edges.get().map(e => e.metadata.relationship_type));
// Wrap both columns in a single container with vertical layout
let filterHTML = '<div class="filter-container">';
// Nodes section
filterHTML += '<div class="filter-column"><h4>Nodes</h4><div class="checkbox-group">';
nodeTypes.forEach(type => {
const label = type === 'correlation_object' ? 'latent correlations' : type;
const isChecked = type !== 'correlation_object';
filterHTML += `<label><input type="checkbox" data-filter-type="node" value="${type}" ${isChecked ? 'checked' : ''}> ${label}</label>`;
});
filterHTML += '</div></div>';
// Edges section
filterHTML += '<div class="filter-column"><h4>Edges</h4><div class="checkbox-group">';
edgeTypes.forEach(type => {
filterHTML += `<label><input type="checkbox" data-filter-type="edge" value="${type}" checked> ${type}</label>`;
});
filterHTML += '</div></div>';
filterHTML += '</div>'; // Close filter-container
this.filterPanel.innerHTML = filterHTML;
this.filterPanel.querySelectorAll('input[type="checkbox"]').forEach(checkbox => {
checkbox.addEventListener('change', () => this.applyAllFilters());
});
}
/**
* ENHANCED: Apply filters using consolidated reachability analysis
* Replaces the existing applyAllFilters() method
*/
applyAllFilters() {
console.log("Applying filters with enhanced reachability analysis...");
if (this.nodes.length === 0) return;
// Get filter criteria from UI
const excludedNodeTypes = new Set();
this.filterPanel?.querySelectorAll('input[data-filter-type="node"]:not(:checked)').forEach(cb => {
excludedNodeTypes.add(cb.value);
});
const excludedEdgeTypes = new Set();
this.filterPanel?.querySelectorAll('input[data-filter-type="edge"]:not(:checked)').forEach(cb => {
excludedEdgeTypes.add(cb.value);
});
// Perform comprehensive analysis
const analysis = this.analyzeGraphReachability(new Set(), excludedEdgeTypes, excludedNodeTypes);
// Apply visibility updates
const nodeUpdates = this.nodes.map(node => ({
id: node.id,
hidden: !analysis.reachableNodes.has(node.id)
}));
const edgeUpdates = this.edges.map(edge => ({
id: edge.id,
hidden: excludedEdgeTypes.has(edge.metadata?.relationship_type || '') ||
!analysis.reachableNodes.has(edge.from) ||
!analysis.reachableNodes.has(edge.to)
}));
// Update nodes first to determine edge visibility
this.nodes.update(nodeUpdates); this.nodes.update(nodeUpdates);
// Determine which edges are visible based on confidence and connected nodes
for (const edge of allEdges) {
const sourceNode = this.nodes.get(edge.from);
const targetNode = this.nodes.get(edge.to);
const confidence = edge.metadata ? edge.metadata.confidence_score : 0;
const isVisible = confidence >= minConfidence &&
sourceNode && !sourceNode.hidden &&
targetNode && !targetNode.hidden;
edgeUpdates.push({ id: edge.id, hidden: !isVisible });
}
this.edges.update(edgeUpdates); this.edges.update(edgeUpdates);
console.log(`Enhanced filters applied. Visible nodes: ${analysis.reachableNodes.size}`); console.log('Filters applied.');
} }
/**
* ENHANCED: Hide node with forensic integrity using reachability analysis
* Replaces the existing hideNodeAndOrphans() method
*/
hideNodeWithReachabilityAnalysis(nodeId) {
console.log(`Hiding node ${nodeId} with reachability analysis...`);
// Simulate hiding this node and analyze impact
const excludedNodes = new Set([nodeId]);
const analysis = this.analyzeGraphReachability(excludedNodes);
// Nodes that will become unreachable (should be hidden)
const nodesToHide = [nodeId, ...Array.from(analysis.unreachableNodes)];
// Store history for potential revert
const historyData = {
nodeIds: nodesToHide,
operation: 'hide_with_reachability',
timestamp: Date.now()
};
// Apply hiding with forensic documentation
const updates = nodesToHide.map(id => ({
id: id,
hidden: true,
forensicNote: `Hidden due to reachability analysis from ${nodeId}`
}));
this.nodes.update(updates);
this.addToHistory('hide', historyData);
console.log(`Forensic hide operation: ${nodesToHide.length} nodes hidden`, {
originalTarget: nodeId,
cascadeNodes: nodesToHide.length - 1,
isolatedClusters: analysis.isolatedClusters.length
});
return {
hiddenNodes: nodesToHide,
isolatedClusters: analysis.isolatedClusters
};
}
/**
* ENHANCED: Delete node with forensic integrity using reachability analysis
* Replaces the existing deleteNodeAndOrphans() method
*/
async deleteNodeWithReachabilityAnalysis(nodeId) {
console.log(`Deleting node ${nodeId} with reachability analysis...`);
// Simulate deletion and analyze impact
const excludedNodes = new Set([nodeId]);
const analysis = this.analyzeGraphReachability(excludedNodes);
// Nodes that will become unreachable (should be deleted)
const nodesToDelete = [nodeId, ...Array.from(analysis.unreachableNodes)];
// Collect forensic data before deletion
const historyData = {
nodes: nodesToDelete.map(id => this.nodes.get(id)).filter(Boolean),
edges: [],
operation: 'delete_with_reachability',
timestamp: Date.now(),
forensicAnalysis: {
originalTarget: nodeId,
cascadeNodes: nodesToDelete.length - 1,
isolatedClusters: analysis.isolatedClusters.length,
clusterSizes: analysis.isolatedClusters.map(cluster => cluster.length)
}
};
// Collect affected edges
nodesToDelete.forEach(id => {
const connectedEdgeIds = this.network.getConnectedEdges(id);
const edges = this.edges.get(connectedEdgeIds);
historyData.edges.push(...edges);
});
// Remove duplicates from edges
historyData.edges = Array.from(new Map(historyData.edges.map(e => [e.id, e])).values());
// Perform backend deletion with forensic logging
let operationFailed = false;
for (const targetNodeId of nodesToDelete) {
try {
const response = await fetch(`/api/graph/node/${targetNodeId}`, {
method: 'DELETE',
headers: {
'Content-Type': 'application/json',
},
body: JSON.stringify({
forensicContext: {
operation: 'reachability_cascade_delete',
originalTarget: nodeId,
analysisTimestamp: historyData.timestamp
}
})
});
const result = await response.json();
if (!result.success) {
console.error(`Backend deletion failed for node ${targetNodeId}:`, result.error);
operationFailed = true;
break;
}
console.log(`Node ${targetNodeId} deleted from backend with forensic context`);
this.nodes.remove({ id: targetNodeId });
} catch (error) {
console.error(`API error during deletion of node ${targetNodeId}:`, error);
operationFailed = true;
break;
}
}
// Handle operation results
if (!operationFailed) {
this.addToHistory('delete', historyData);
console.log(`Forensic delete operation completed:`, historyData.forensicAnalysis);
return {
success: true,
deletedNodes: nodesToDelete,
forensicAnalysis: historyData.forensicAnalysis
};
} else {
// Revert UI changes if backend operations failed - use update instead of add
console.log("Reverting UI changes due to backend failure");
this.nodes.update(historyData.nodes);
this.edges.update(historyData.edges);
return {
success: false,
error: "Backend deletion failed, UI reverted"
};
}
}
/**
* Show context menu for a node
* @param {string} nodeId - The ID of the node
* @param {Event} event - The contextmenu event
*/
showContextMenu(nodeId, event) {
console.log('Showing context menu for node:', nodeId);
const node = this.nodes.get(nodeId);
// Create menu items
let menuItems = `
<ul>
<li data-action="focus" data-node-id="${nodeId}">
<span class="menu-icon">🎯</span>
<span>Focus on Node</span>
</li>
`;
// Add "Iterate Scan" option only for domain or IP nodes
if (node && (node.type === 'domain' || node.type === 'ip')) {
const disabled = this.isScanning ? 'disabled' : ''; // Check if scanning
const title = this.isScanning ? 'A scan is already in progress' : 'Iterate Scan (Add to Graph)'; // Add a title for disabled state
menuItems += `
<li data-action="iterate" data-node-id="${nodeId}" ${disabled} title="${title}">
<span class="menu-icon"></span>
<span>Iterate Scan (Add to Graph)</span>
</li>
`;
}
menuItems += `
<li data-action="hide" data-node-id="${nodeId}">
<span class="menu-icon">👁️‍🗨️</span>
<span>Hide Node</span>
</li>
<li data-action="delete" data-node-id="${nodeId}">
<span class="menu-icon">🗑️</span>
<span>Delete Node</span>
</li>
<li data-action="details" data-node-id="${nodeId}">
<span class="menu-icon"></span>
<span>Show Details</span>
</li>
</ul>
`;
this.contextMenu.innerHTML = menuItems;
// Position the menu
this.contextMenu.style.left = `${event.clientX}px`;
this.contextMenu.style.top = `${event.clientY}px`;
this.contextMenu.style.display = 'block';
// Ensure menu stays within viewport
const rect = this.contextMenu.getBoundingClientRect();
if (rect.right > window.innerWidth) {
this.contextMenu.style.left = `${event.clientX - rect.width}px`;
}
if (rect.bottom > window.innerHeight) {
this.contextMenu.style.top = `${event.clientY - rect.height}px`;
}
// Add event listeners to menu items
this.contextMenu.querySelectorAll('li').forEach(item => {
item.addEventListener('click', (e) => {
if (e.currentTarget.hasAttribute('disabled')) { // Prevent action if disabled
e.stopPropagation();
return;
}
e.stopPropagation();
const action = e.currentTarget.dataset.action;
const nodeId = e.currentTarget.dataset.nodeId;
console.log('Context menu action:', action, 'for node:', nodeId);
this.performContextMenuAction(action, nodeId);
this.hideContextMenu();
});
});
}
/**
* Hide the context menu
*/
hideContextMenu() {
if (this.contextMenu) {
this.contextMenu.style.display = 'none';
}
}
/**
* UPDATED: Enhanced context menu actions using new methods
* Updates the existing performContextMenuAction() method
*/
performContextMenuAction(action, nodeId) {
console.log('Performing enhanced action:', action, 'on node:', nodeId);
switch (action) {
case 'focus':
this.focusOnNode(nodeId);
break;
case 'iterate':
const event = new CustomEvent('iterateScan', {
detail: { nodeId }
});
document.dispatchEvent(event);
break;
case 'hide':
// Use enhanced method with reachability analysis
this.hideNodeWithReachabilityAnalysis(nodeId);
break;
case 'delete':
// Use enhanced method with reachability analysis
this.deleteNodeWithReachabilityAnalysis(nodeId);
break;
case 'details':
const node = this.nodes.get(nodeId);
if (node) {
this.showNodeDetails(node);
}
break;
default:
console.warn('Unknown action:', action);
}
}
/**
* Add an operation to the history stack
* @param {string} type - The type of operation ('hide', 'delete')
* @param {Object} data - The data needed to revert the operation
*/
addToHistory(type, data) {
this.history.push({ type, data });
}
/**
* Revert the last action
*/
async revertLastAction() {
const lastAction = this.history.pop();
if (!lastAction) {
console.log('No actions to revert.');
return;
}
switch (lastAction.type) {
case 'hide':
// Revert hiding nodes by un-hiding them
const updates = lastAction.data.nodeIds.map(id => ({ id: id, hidden: false }));
this.nodes.update(updates);
break;
case 'delete':
try {
const response = await fetch('/api/graph/revert', {
method: 'POST',
headers: {
'Content-Type': 'application/json',
},
body: JSON.stringify(lastAction)
});
const result = await response.json();
if (result.success) {
console.log('Delete action reverted successfully on backend.');
// Re-add all nodes and edges from the history to the local view - use update instead of add
this.nodes.update(lastAction.data.nodes);
this.edges.update(lastAction.data.edges);
} else {
console.error('Failed to revert delete action on backend:', result.error);
// Push the action back onto the history stack if the API call failed
this.history.push(lastAction);
}
} catch (error) {
console.error('Error during revert API call:', error);
this.history.push(lastAction);
}
break;
}
}
/**
* Unhide all hidden nodes
*/
unhideAll() {
const allNodes = this.nodes.get({
filter: (node) => node.hidden === true
});
const updates = allNodes.map(node => ({ id: node.id, hidden: false }));
this.nodes.update(updates);
}
} }
// Export for use in main.js // Export for use in main.js

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@@ -32,8 +32,19 @@
<div class="form-container"> <div class="form-container">
<div class="input-group"> <div class="input-group">
<label for="target-input">Target Domain or IP</label> <label for="target-domain">Target Domain</label>
<input type="text" id="target-input" placeholder="example.com or 8.8.8.8" autocomplete="off"> <input type="text" id="target-domain" placeholder="example.com" autocomplete="off">
</div>
<div class="input-group">
<label for="max-depth">Recursion Depth</label>
<select id="max-depth">
<option value="1">Depth 1 - Direct relationships</option>
<option value="2" selected>Depth 2 - Recommended</option>
<option value="3">Depth 3 - Extended analysis</option>
<option value="4">Depth 4 - Deep reconnaissance</option>
<option value="5">Depth 5 - Maximum depth</option>
</select>
</div> </div>
<div class="button-group"> <div class="button-group">
@@ -53,9 +64,9 @@
<span class="btn-icon">[EXPORT]</span> <span class="btn-icon">[EXPORT]</span>
<span>Download Results</span> <span>Download Results</span>
</button> </button>
<button id="configure-settings" class="btn btn-secondary"> <button id="configure-api-keys" class="btn btn-secondary">
<span class="btn-icon">[API]</span> <span class="btn-icon">[API]</span>
<span>Settings</span> <span>Configure API Keys</span>
</button> </button>
</div> </div>
</div> </div>
@@ -93,18 +104,30 @@
<div class="progress-bar"> <div class="progress-bar">
<div id="progress-fill" class="progress-fill"></div> <div id="progress-fill" class="progress-fill"></div>
</div> </div>
<div class="progress-placeholder">
<span class="status-label">Reconnaissance on a large domain could take very long. Don´t try to scan Google.com.</span>
<br>
<span class="status-label">The main bottleneck is the request to crt.sh which is subject to harsh rate-limits.
The processing is done via a task-queue which operates by the pronciple of highest-priority-first: Long-running-tasks will be done last.</span>
</div>
</div> </div>
</section> </section>
<section class="visualization-panel"> <section class="visualization-panel">
<div class="panel-header"> <div class="panel-header">
<h2>Infrastructure Map</h2> <h2>Infrastructure Map</h2>
<div class="view-controls">
<div class="filter-group">
<label for="node-type-filter">Node Type:</label>
<select id="node-type-filter">
<option value="all">All</option>
<option value="domain">Domain</option>
<option value="ip">IP</option>
<option value="asn">ASN</option>
<option value="correlation_object">Correlation Object</option>
<option value="large_entity">Large Entity</option>
</select>
</div>
<div class="filter-group">
<label for="confidence-filter">Min Confidence:</label>
<input type="range" id="confidence-filter" min="0" max="1" step="0.1" value="0">
<span id="confidence-value">0</span>
</div>
</div>
</div> </div>
<div id="network-graph" class="graph-container"> <div id="network-graph" class="graph-container">
@@ -182,28 +205,16 @@
</div> </div>
</div> </div>
<div id="settings-modal" class="modal"> <div id="api-key-modal" class="modal">
<div class="modal-content"> <div class="modal-content">
<div class="modal-header"> <div class="modal-header">
<h3>Settings</h3> <h3>Configure API Keys</h3>
<button id="settings-modal-close" class="modal-close">[×]</button> <button id="api-key-modal-close" class="modal-close">[×]</button>
</div> </div>
<div class="modal-body"> <div class="modal-body">
<p class="modal-description"> <p class="modal-description">
Configure scan settings and API keys. Keys are stored in memory for the current session only. Enter your API keys for enhanced data providers. Keys are stored in memory for the current session only and are never saved to disk.
Only provide API-keys you dont use for anything else. Don´t enter an API-key if you don´t trust me (best practice would that you don´t).
</p> </p>
<br>
<div class="input-group">
<label for="max-depth">Recursion Depth</label>
<select id="max-depth">
<option value="1">Depth 1 - Direct relationships</option>
<option value="2" selected>Depth 2 - Recommended</option>
<option value="3">Depth 3 - Extended analysis</option>
<option value="4">Depth 4 - Deep reconnaissance</option>
<option value="5">Depth 5 - Maximum depth</option>
</select>
</div>
<div id="api-key-inputs"> <div id="api-key-inputs">
</div> </div>
<div class="button-group" style="flex-direction: row; justify-content: flex-end;"> <div class="button-group" style="flex-direction: row; justify-content: flex-end;">
@@ -211,7 +222,7 @@
<span>Reset</span> <span>Reset</span>
</button> </button>
<button id="save-api-keys" class="btn btn-primary"> <button id="save-api-keys" class="btn btn-primary">
<span>Save API-Keys</span> <span>Save Keys</span>
</button> </button>
</div> </div>
</div> </div>

View File

@@ -48,15 +48,3 @@ def _is_valid_ip(ip: str) -> bool:
except (ValueError, AttributeError): except (ValueError, AttributeError):
return False return False
def is_valid_target(target: str) -> bool:
"""
Checks if the target is a valid domain or IP address.
Args:
target: The target string to validate.
Returns:
True if the target is a valid domain or IP, False otherwise.
"""
return _is_valid_domain(target) or _is_valid_ip(target)