MemOpt #18
+21
-18
@@ -132,8 +132,8 @@ def menu_prepare_to_enforce():
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first_policy = " "
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second_policy = " "
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parentpolicy = " "
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childpolicy = " "
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parentallowlist = " "
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childallowlist = " "
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df_aggregated_combo = pd.DataFrame()
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#If the directorys where we're going to store our output dont exist, make them.
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@@ -231,13 +231,13 @@ def menu_prepare_to_enforce():
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print(ct.colorText(" [✗] Preflight hash approval list has not been generated","red"))
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print(ct.colorText(f"5. Choose the destination parent and child policy allow list", "cyan"))
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if childpolicy == " " and parentpolicy == " ":
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if childallowlist == " " and parentallowlist == " ":
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print(ct.colorText(f" [✗] No policies have been chosen","red"))
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elif parentpolicy != " " and childpolicy != " " and parentpolicy is childpolicy:
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print(ct.colorText(f" [✓] [✗] Only {parentpolicy} has been selected this is unusual, but potentially valid case, double check before proceeding,", "yellow"))
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elif parentpolicy != " " and childpolicy != " " and parentpolicy is not childpolicy:
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print(ct.colorText(f" [✓] {parentpolicy} has been selected as Parent Policy","green"))
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print(ct.colorText(f" [✓] {childpolicy} has been selected as Child Policy","green"))
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elif parentallowlist != " " and childallowlist != " " and parentallowlist is childallowlist:
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print(ct.colorText(f" [✓] [✗] Only {parentallowlist} has been selected this is unusual, but potentially valid case, double check before proceeding,", "yellow"))
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elif parentallowlist != " " and childallowlist != " " and parentallowlist is not childallowlist:
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print(ct.colorText(f" [✓] {parentallowlist} has been selected as Parent Policy","green"))
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print(ct.colorText(f" [✓] {childallowlist} has been selected as Child Policy","green"))
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print(ct.colorText(f"6. Liftoff ------------------------------------------------------", "cyan"))
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print(ct.colorText(f" Apply path exclusions according to allowed and approved paths", "cyan"))
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@@ -369,14 +369,17 @@ def menu_prepare_to_enforce():
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elif choice == "5":
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parent_policy_tuple = utils.allowlist.listPolicies(url)
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parentpolicy = parent_policy_tuple[1][parent_policy_tuple[0]]
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print(ct.colorText(f"Please choose Parent Allowlist","white"))
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allowlist_parent_tuple = utils.allowlist.listAllowlists(url)
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allowlist_parent = allowlist_parent_tuple[1][allowlist_parent_tuple[0]]
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child_policy_tuple = utils.allowlist.listPolicies(url)
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childpolicy = child_policy_tuple[1][child_policy_tuple[0]]
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print(ct.colorText(f"Please choose Child Allowlist","white"))
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allowlist_child_tuple = utils.allowlist.listAllowlists(url)
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allowlist_child = allowlist_child_tuple[1][allowlist_child_tuple[0]]
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elif choice == "6":
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if os.path.exists(f"preflight\\final_pathexclusions_{first_policy}_{second_policy}.csv") and os.path.exists(f"preflight\\final_hash_approvals_{first_policy}_{second_policy}.csv") and parentpolicy != " " and childpolicy != " ":
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if os.path.exists(f"preflight\\final_pathexclusions_{first_policy}_{second_policy}.csv") and os.path.exists(f"preflight\\final_hash_approvals_{first_policy}_{second_policy}.csv") and parentallowlist != " " and childallowlist != " ":
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pathexclusions = tryToReadCSV(f"preflight\\final_pathexclusions_{first_policy}_{second_policy}.csv")
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allowbyhash = tryToReadCSV(f"preflight\\final_hash_approvals_{first_policy}_{second_policy}.csv")
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@@ -393,13 +396,13 @@ def menu_prepare_to_enforce():
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print(ct.colorText("Proceeding with the code...", "yellow"))
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pathexcludelist = pathexclusions['longestcfp'].unique().tolist
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utils.policyfunctions.addPath(childpolicy,pathexcludelist)
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utils.policyfunctions.addPath(childallowlist,pathexcludelist)
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parentpolicyhashlist = allowbyhash[allowbyhash['reputation_status'] == 'KNOWN']['target_column'].tolist()
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utils.policyfunctions.addHash(parentpolicy,parentpolicyhashlist)
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parentallowlisthashlist = allowbyhash[allowbyhash['reputation_status'] == 'KNOWN']['target_column'].tolist()
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utils.policyfunctions.addHash(parentallowlist,parentallowlisthashlist)
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childpolicyhashlist = allowbyhash[allowbyhash['reputation_status'] == 'UNKNOWN']['target_column'].tolist()
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utils.policyfunctions.addHash(childpolicy,childpolicyhashlist)
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childallowlisthashlist = allowbyhash[allowbyhash['reputation_status'] == 'UNKNOWN']['target_column'].tolist()
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utils.policyfunctions.addHash(childallowlist,childallowlisthashlist)
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else:
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print(ct.colorText("Operation aborted. You MUST EXPLICITLY AGREE to proceed.", "red"))
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@@ -95,3 +95,55 @@ def listPolicies(url):
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choice = input(ct.colorText("Select Policy Group: ", "white"))
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choice = int(choice) - 1
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return choice, policiesnames
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def listAllowlists(url):
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endpoint = url + '/v1/application'
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print(ct.colorText("[+] Grabbing All Allowlists", "cyan"))
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payload = {}
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headers = {
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"X-APIKey": os.getenv('APIKEY')
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}
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response = requests.request("POST", endpoint, headers=headers, data=payload, verify=False)
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parse_text = json.loads(response.text)
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policiesnames = []
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policyids = []
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for index, list in enumerate(parse_text['response']['applications'], start=1):
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print(ct.colorText(f"{index}. {list['name']}", "yellow"))
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policiesnames.append(list['name'])
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policyids.append(list['applicationid'])
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choice = int(input(ct.colorText("Select allowlist: ", "white")))
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if choice < 38:
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print(ct.colorText("Please only choose an allowlist designed for this use - '38+'","red"))
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elif choice >= 38:
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choice = int(choice) - 1
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return choice, policiesnames
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#Need else and catch for upper bound
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def listCategories(url):
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endpoint = url + '/v1/application/categories'
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print(ct.colorText("[+] Grabbing All Categories", "cyan"))
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payload = {}
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headers = {
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"X-APIKey": os.getenv('APIKEY')
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}
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response = requests.request("POST", endpoint, headers=headers, data=payload, verify=False)
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parse_text = json.loads(response.text)
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policiesnames = []
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policyids = []
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for index, list in enumerate(parse_text['response']['categories'], start=1):
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print(ct.colorText(f"{index}. {list['name']}", "yellow"))
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policiesnames.append(list['name'])
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policyids.append(list['categoryid'])
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choice = input(ct.colorText("Select Policy Group: ", "white"))
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choice = int(choice) - 1
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return choice, policiesnames
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else:
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print(ct.colorText("Please choose only 38 or Aboove", "red"))
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+16
-2
@@ -81,13 +81,26 @@ def export_groups_for_review(df, col="filename_x", group_col="longestcfp"):
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return grouped, df
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def mask_from_csv(df, csv_path, filepath_col):
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"""
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Reads reviewed CSV of groups, keeps only files in approved groups.
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"""
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review_df = pd.read_csv(csv_path)
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# Convert string representation of lists back to actual lists
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review_df[filepath_col] = review_df[filepath_col].apply(ast.literal_eval)
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def parse_paths(val):
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if isinstance(val, str):
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try:
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# Try to parse as a list
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parsed = ast.literal_eval(val)
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# If it's not a list, wrap it
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return parsed if isinstance(parsed, list) else [parsed]
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except (ValueError, SyntaxError):
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# If parsing fails, treat it as a single path
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return [val]
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return [val]
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review_df[filepath_col] = review_df[filepath_col].apply(parse_paths)
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# Flatten all approved file paths into a set for masking
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approved_files = set()
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@@ -99,6 +112,7 @@ def mask_from_csv(df, csv_path, filepath_col):
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remainder = df[~df[filepath_col].isin(approved_files)].copy()
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return masked_df, remainder
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def filter_and_drop(approved, eligiblepaths, min_hashes):
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"""
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Filters eligiblepaths to rows where all hashes are in approved,
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@@ -16,7 +16,9 @@
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def addHash(policy, hash):
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pass
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print(f"Adding the following hashes to {policy}:")
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print(hash)
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def addPath(policy, hash):
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pass
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print(f"Adding the following Path Exclusions to {policy}:")
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print(hash)
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