1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
|
Python Documentation: https://docs.python.org
curl https://bootstrap.pypa.io/get-pip.py -o get-pip.py
python get-pip.py
use this in nvim :help python
pip --version
Planning to develop some python application or python package your best option is use virtual environments.
Try virtualenv or even conda
Use poetry much better option to manage application from start to finish. It is a much better option than requirements.txt + setup.py.
Another more simple option is use python-virtualenv. This can bring portability to the code and maintain old packages as well. Install it with
sudo pacman -S python-virtualenv
and then do this
virtualenv -p /usr/bin/python3 yourenv
source yourenv/bin/activate
pip install package-name
When you create this environment yourenv, you will setup pip to install packages only into this environment, not to the entire system.
Basic Syntax
Comments
python
# This is a single-line comment
"""
This is a
multi-line comment
"""
Variables
python
# Declaration and initialization
x = 10
# Declaration without initialization
y = None
Data Types
Data Type Description
int Integer Represents whole numbers without a fractional component
float Float Represents real numbers with a single-precision format
str String Represents a sequence of characters
bool Boolean Represents a logical value, either True or False
list List Represents an ordered, mutable collection of elements
tuple Tuple Represents an ordered, immutable collection of elements
dict Dictionary Represents a collection of key-value pairs
set Set Represents an unordered collection of unique elements
Arithmetic Operators
Addition: x + y
Subtraction: x - y
Multiplication: x * y
Division: x / y
Modulus: x % y
Exponentiation: x ** y
Floor Division: x // y
String Operations
python
string = "Hello, World!"
len(string) # Length of string
string.upper() # Convert to uppercase
string.lower() # Convert to lowercase
string.strip() # Remove whitespace
string.split(",") # Split by comma
Control Flow
Conditional Statements
python
if condition:
# Code to execute if condition is true
elif another_condition:
# Code to execute if another_condition is true
else:
# Code to execute if neither condition is true
Loops
python
for item in iterable:
# Code to execute for each item in iterable
while condition:
# Code to execute while condition is true
Functions
python
def function_name(parameter1, parameter2):
# Code to execute
return result # Optional return statement
Data Structures
Lists
python
my_list = [1, 2, 3, 4, 5]
my_list.append(6) # Add item to the end of the list
my_list.insert(0, 0) # Insert item at a specific index
my_list.remove(3) # Remove item from the list
my_list.pop() # Remove and return the last item
my_list.sort() # Sort the list
Dictionaries
python
my_dict = {"key1": "value1", "key2": "value2"}
my_dict["key3"] = "value3" # Add a new key-value pair
del my_dict["key2"] # Delete a key-value pair
my_dict.keys() # Get all keys
my_dict.values() # Get all values
my_dict.items() # Get all key-value pairs
Sets
python
my_set = {1, 2, 3}
my_set.add(4) # Add an element to the set
my_set.remove(3) # Remove an element from the set
Python is case-sensitive (e.g., variable and Variable are different).
Python uses indentation (usually four spaces) to define code blocks. Indentation is important for the structure and readability of your code.
Statements are terminated with a newline. However, you can use a backslash (\) to continue a statement to the next line.
Python follows the "PEP 8" style guide, which suggests guidelines for writing Python code. Some key points include:
Use descriptive variable and function names.
Use lowercase letters with words separated by underscores for variable and function names (e.g., my_variable, my_function).
Use uppercase letters with words separated by underscores for constants (e.g., MY_CONSTANT).
Use spaces around operators and after commas (e.g., x = 5 + 2, my_function(arg1, arg2)).
Limit line length to 79 characters.
Python supports both single-quoted (') and double-quoted (") strings. Use whichever is more appropriate for your case, but be consistent.
Python uses zero-based indexing for lists, tuples, and strings. The first element is accessed with index 0.
Python allows for multiple assignment in a single line, e.g., x, y = 10, 20.
Python has no mandatory declaration of variables. Variables are created when a value is assigned to them.
Python uses the None value to represent the absence of a value or a null value.
Python has a dynamic type system, meaning you can reassign variables to different types.
Python is an interpreted language, which means it is not compiled but executed line by line.
Use meaningful comments to explain the purpose and functionality of your code.
Python uses the # symbol to denote single-line comments.
Use docstrings (multi-line comments enclosed in triple quotes) to provide documentation for functions, classes, and modules.
Use the backslash (\) to continue a statement onto the next line when necessary.
Use parentheses to group expressions and clarify the order of operations.
Avoid using single-character variable names, except in cases where the purpose is clear (e.g., loop counters).
Follow the DRY (Don't Repeat Yourself) principle and avoid duplicating code. Instead, use functions or loops to encapsulate and reuse code.
Use meaningful names for variables, functions, and classes that reflect their purpose and intent.
Use snake_case naming convention for functions, variables, and modules (e.g., my_function, my_variable, my_module.py).
Use CamelCase naming convention for classes (e.g., MyClass).
Use appropriate spacing around operators and after commas to enhance readability.
Follow proper code formatting by using consistent indentation and line breaks.
Avoid unnecessary or excessive code comments that only restate the code itself.
Make use of white space to improve code readability, such as adding blank lines between functions or sections of code.
Use built-in functions and libraries whenever possible to leverage existing functionality and improve code efficiency.
Use a consistent naming convention for constants, such as using uppercase letters with underscores (e.g., MAX_VALUE).
Avoid using global variables whenever possible, as they can lead to code complexity and make debugging difficult.
curl -OJL https://docs.python.org/3/archives/python-3.9.7-docs-html.tar.bz2
tar -xvf python-3.9.7-docs-html.tar.bz2
After extraction, you can navigate to the extracted directory and open the index.html file in a web browser to access the offline Python documentation.
or to generate the documentation for a specific Python module or package, use the following command:
pydoc -w module_name
Replace module_name with the name of the module or package for which you want to generate documentation. For example, to generate documentation for the os module, you can use:
pydoc -w os
Additionally, you can use the -p option with pydoc to launch a local web server and view the documentation in your web browser. For example:
pydoc -p 5000
This command will start a web server on port 5000, and you can access the documentation by opening your browser and navigating to http://localhost:5000.
|