csirtgadgets/verbose-robot

View on GitHub
cif/httpd/app.py

Summary

Maintainability
D
2 days
Test Coverage

Possible hardcoded password: 'TEST-TOKEN'
Open

        session['token'] = 'TEST-TOKEN'
Severity: Info
Found in cif/httpd/app.py by bandit

Use of assert detected. The enclosed code will be removed when compiling to optimised byte code.
Open

        assert request.method == method
Severity: Info
Found in cif/httpd/app.py by bandit

Cyclomatic complexity is too high in function firehose. (13)
Open

@sockets.route('/firehose')
@api.response(401, 'Unauthorized')
@api.response(200, 'OK')
@api.doc('firehose')
def firehose(ws):
Severity: Minor
Found in cif/httpd/app.py by radon

Cyclomatic Complexity

Cyclomatic Complexity corresponds to the number of decisions a block of code contains plus 1. This number (also called McCabe number) is equal to the number of linearly independent paths through the code. This number can be used as a guide when testing conditional logic in blocks.

Radon analyzes the AST tree of a Python program to compute Cyclomatic Complexity. Statements have the following effects on Cyclomatic Complexity:

Construct Effect on CC Reasoning
if +1 An if statement is a single decision.
elif +1 The elif statement adds another decision.
else +0 The else statement does not cause a new decision. The decision is at the if.
for +1 There is a decision at the start of the loop.
while +1 There is a decision at the while statement.
except +1 Each except branch adds a new conditional path of execution.
finally +0 The finally block is unconditionally executed.
with +1 The with statement roughly corresponds to a try/except block (see PEP 343 for details).
assert +1 The assert statement internally roughly equals a conditional statement.
Comprehension +1 A list/set/dict comprehension of generator expression is equivalent to a for loop.
Boolean Operator +1 Every boolean operator (and, or) adds a decision point.

Source: http://radon.readthedocs.org/en/latest/intro.html

Cyclomatic complexity is too high in function before_request. (12)
Open

@app.before_request
def before_request():
    """
    Grab the API token from headers

Severity: Minor
Found in cif/httpd/app.py by radon

Cyclomatic Complexity

Cyclomatic Complexity corresponds to the number of decisions a block of code contains plus 1. This number (also called McCabe number) is equal to the number of linearly independent paths through the code. This number can be used as a guide when testing conditional logic in blocks.

Radon analyzes the AST tree of a Python program to compute Cyclomatic Complexity. Statements have the following effects on Cyclomatic Complexity:

Construct Effect on CC Reasoning
if +1 An if statement is a single decision.
elif +1 The elif statement adds another decision.
else +0 The else statement does not cause a new decision. The decision is at the if.
for +1 There is a decision at the start of the loop.
while +1 There is a decision at the while statement.
except +1 Each except branch adds a new conditional path of execution.
finally +0 The finally block is unconditionally executed.
with +1 The with statement roughly corresponds to a try/except block (see PEP 343 for details).
assert +1 The assert statement internally roughly equals a conditional statement.
Comprehension +1 A list/set/dict comprehension of generator expression is equivalent to a for loop.
Boolean Operator +1 Every boolean operator (and, or) adds a decision point.

Source: http://radon.readthedocs.org/en/latest/intro.html

Function firehose has a Cognitive Complexity of 19 (exceeds 5 allowed). Consider refactoring.
Open

def firehose(ws):
    """Firehose"""

    t = pull_token()

Severity: Minor
Found in cif/httpd/app.py - About 2 hrs to fix

Cognitive Complexity

Cognitive Complexity is a measure of how difficult a unit of code is to intuitively understand. Unlike Cyclomatic Complexity, which determines how difficult your code will be to test, Cognitive Complexity tells you how difficult your code will be to read and comprehend.

A method's cognitive complexity is based on a few simple rules:

  • Code is not considered more complex when it uses shorthand that the language provides for collapsing multiple statements into one
  • Code is considered more complex for each "break in the linear flow of the code"
  • Code is considered more complex when "flow breaking structures are nested"

Further reading

Cyclomatic complexity is too high in function _search_bulk. (8)
Open

def _search_bulk(filters):
    try:
        with Client(ROUTER_ADDR, session['token']) as client:
            r = client.indicators_search(filters)

Severity: Minor
Found in cif/httpd/app.py by radon

Cyclomatic Complexity

Cyclomatic Complexity corresponds to the number of decisions a block of code contains plus 1. This number (also called McCabe number) is equal to the number of linearly independent paths through the code. This number can be used as a guide when testing conditional logic in blocks.

Radon analyzes the AST tree of a Python program to compute Cyclomatic Complexity. Statements have the following effects on Cyclomatic Complexity:

Construct Effect on CC Reasoning
if +1 An if statement is a single decision.
elif +1 The elif statement adds another decision.
else +0 The else statement does not cause a new decision. The decision is at the if.
for +1 There is a decision at the start of the loop.
while +1 There is a decision at the while statement.
except +1 Each except branch adds a new conditional path of execution.
finally +0 The finally block is unconditionally executed.
with +1 The with statement roughly corresponds to a try/except block (see PEP 343 for details).
assert +1 The assert statement internally roughly equals a conditional statement.
Comprehension +1 A list/set/dict comprehension of generator expression is equivalent to a for loop.
Boolean Operator +1 Every boolean operator (and, or) adds a decision point.

Source: http://radon.readthedocs.org/en/latest/intro.html

Cyclomatic complexity is too high in function main. (7)
Open

def main():
    from gevent import pywsgi, pool
    from geventwebsocket.handler import WebSocketHandler

    p = get_argument_parser()
Severity: Minor
Found in cif/httpd/app.py by radon

Cyclomatic Complexity

Cyclomatic Complexity corresponds to the number of decisions a block of code contains plus 1. This number (also called McCabe number) is equal to the number of linearly independent paths through the code. This number can be used as a guide when testing conditional logic in blocks.

Radon analyzes the AST tree of a Python program to compute Cyclomatic Complexity. Statements have the following effects on Cyclomatic Complexity:

Construct Effect on CC Reasoning
if +1 An if statement is a single decision.
elif +1 The elif statement adds another decision.
else +0 The else statement does not cause a new decision. The decision is at the if.
for +1 There is a decision at the start of the loop.
while +1 There is a decision at the while statement.
except +1 Each except branch adds a new conditional path of execution.
finally +0 The finally block is unconditionally executed.
with +1 The with statement roughly corresponds to a try/except block (see PEP 343 for details).
assert +1 The assert statement internally roughly equals a conditional statement.
Comprehension +1 A list/set/dict comprehension of generator expression is equivalent to a for loop.
Boolean Operator +1 Every boolean operator (and, or) adds a decision point.

Source: http://radon.readthedocs.org/en/latest/intro.html

Function main has a Cognitive Complexity of 8 (exceeds 5 allowed). Consider refactoring.
Open

def main():
    from gevent import pywsgi, pool
    from geventwebsocket.handler import WebSocketHandler

    p = get_argument_parser()
Severity: Minor
Found in cif/httpd/app.py - About 45 mins to fix

Cognitive Complexity

Cognitive Complexity is a measure of how difficult a unit of code is to intuitively understand. Unlike Cyclomatic Complexity, which determines how difficult your code will be to test, Cognitive Complexity tells you how difficult your code will be to read and comprehend.

A method's cognitive complexity is based on a few simple rules:

  • Code is not considered more complex when it uses shorthand that the language provides for collapsing multiple statements into one
  • Code is considered more complex for each "break in the linear flow of the code"
  • Code is considered more complex when "flow breaking structures are nested"

Further reading

Function _search_bulk has a Cognitive Complexity of 8 (exceeds 5 allowed). Consider refactoring.
Open

def _search_bulk(filters):
    try:
        with Client(ROUTER_ADDR, session['token']) as client:
            r = client.indicators_search(filters)

Severity: Minor
Found in cif/httpd/app.py - About 45 mins to fix

Cognitive Complexity

Cognitive Complexity is a measure of how difficult a unit of code is to intuitively understand. Unlike Cyclomatic Complexity, which determines how difficult your code will be to test, Cognitive Complexity tells you how difficult your code will be to read and comprehend.

A method's cognitive complexity is based on a few simple rules:

  • Code is not considered more complex when it uses shorthand that the language provides for collapsing multiple statements into one
  • Code is considered more complex for each "break in the linear flow of the code"
  • Code is considered more complex when "flow breaking structures are nested"

Further reading

Function before_request has a Cognitive Complexity of 7 (exceeds 5 allowed). Consider refactoring.
Open

def before_request():
    """
    Grab the API token from headers

    :return: 401 if no token is present
Severity: Minor
Found in cif/httpd/app.py - About 35 mins to fix

Cognitive Complexity

Cognitive Complexity is a measure of how difficult a unit of code is to intuitively understand. Unlike Cyclomatic Complexity, which determines how difficult your code will be to test, Cognitive Complexity tells you how difficult your code will be to read and comprehend.

A method's cognitive complexity is based on a few simple rules:

  • Code is not considered more complex when it uses shorthand that the language provides for collapsing multiple statements into one
  • Code is considered more complex for each "break in the linear flow of the code"
  • Code is considered more complex when "flow breaking structures are nested"

Further reading

Avoid too many return statements within this function.
Open

    return r
Severity: Major
Found in cif/httpd/app.py - About 30 mins to fix

    Avoid too many return statements within this function.
    Open

            return api.abort(500)
    Severity: Major
    Found in cif/httpd/app.py - About 30 mins to fix

      Refactor this function to reduce its Cognitive Complexity from 20 to the 15 allowed.
      Open

      def firehose(ws):
      Severity: Critical
      Found in cif/httpd/app.py by sonar-python

      Cognitive Complexity is a measure of how hard the control flow of a function is to understand. Functions with high Cognitive Complexity will be difficult to maintain.

      See

      Remove this commented out code.
      Open

      #firehose_api = Namespace('firehose', description='Firehose (WebSockets)')
      Severity: Major
      Found in cif/httpd/app.py by sonar-python

      Programmers should not comment out code as it bloats programs and reduces readability.

      Unused code should be deleted and can be retrieved from source control history if required.

      See

      • MISRA C:2004, 2.4 - Sections of code should not be "commented out".
      • MISRA C++:2008, 2-7-2 - Sections of code shall not be "commented out" using C-style comments.
      • MISRA C++:2008, 2-7-3 - Sections of code should not be "commented out" using C++ comments.
      • MISRA C:2012, Dir. 4.4 - Sections of code should not be "commented out"

      Remove this commented out code.
      Open

      # from .stats import api as stats_api
      Severity: Major
      Found in cif/httpd/app.py by sonar-python

      Programmers should not comment out code as it bloats programs and reduces readability.

      Unused code should be deleted and can be retrieved from source control history if required.

      See

      • MISRA C:2004, 2.4 - Sections of code should not be "commented out".
      • MISRA C++:2008, 2-7-2 - Sections of code shall not be "commented out" using C-style comments.
      • MISRA C++:2008, 2-7-3 - Sections of code should not be "commented out" using C++ comments.
      • MISRA C:2012, Dir. 4.4 - Sections of code should not be "commented out"

      Identical blocks of code found in 2 locations. Consider refactoring.
      Open

      def _search_bulk(filters):
          try:
              with Client(ROUTER_ADDR, session['token']) as client:
                  r = client.indicators_search(filters)
      
      
      Severity: Major
      Found in cif/httpd/app.py and 1 other location - About 1 day to fix
      cif/httpd/indicators.py on lines 103..127

      Duplicated Code

      Duplicated code can lead to software that is hard to understand and difficult to change. The Don't Repeat Yourself (DRY) principle states:

      Every piece of knowledge must have a single, unambiguous, authoritative representation within a system.

      When you violate DRY, bugs and maintenance problems are sure to follow. Duplicated code has a tendency to both continue to replicate and also to diverge (leaving bugs as two similar implementations differ in subtle ways).

      Tuning

      This issue has a mass of 159.

      We set useful threshold defaults for the languages we support but you may want to adjust these settings based on your project guidelines.

      The threshold configuration represents the minimum mass a code block must have to be analyzed for duplication. The lower the threshold, the more fine-grained the comparison.

      If the engine is too easily reporting duplication, try raising the threshold. If you suspect that the engine isn't catching enough duplication, try lowering the threshold. The best setting tends to differ from language to language.

      See codeclimate-duplication's documentation for more information about tuning the mass threshold in your .codeclimate.yml.

      Refactorings

      Further Reading

      There are no issues that match your filters.

      Category
      Status