Manipulate Date and Time with the Datetime Module in Python

Have you ever wondered about working with Date and Time with Python? If you have then you must have noticed that Python does not provide any built-in method to work with either Date or Time. But thanks to the DateTime module that comes pre-loaded with Python’s standard utility modules we can easily manipulate date and time according to our own need. We can even perform operations like getting a current date, adding or subtracting date and time, and much more.In this article, we will learn all the operations that can be performed on the Date and Time using the DateTime module in Python. So before starting let’s see the basics of the DateTime module and the classes it contains.The datetime classes are categorized into 6 main classes –date – An idealized naive date, assuming the current Gregorian calendar always was, and always will be, in effect. Its attributes are year, month and day.time – An idealized time, independent of any particular day, assuming that every day has exactly 24*60*60 seconds. Its attributes are hour, minute, second, microsecond, and tzinfo.datetime – Its a combination of date and time along with the attributes year, month, day, hour, minute, second, microsecond, and tzinfo.timedelta – A duration expressing the difference between two date, time, or datetime instances to microsecond resolution.tzinfo – It provides time zone information objects.timezone – A class that implements the tzinfo abstract base class as a fixed offset from the UTC (New in version 3.2).Getting the Current Date and TimeTo get both the current Date and Time method is used. It returns the local current date and      import datetime       current_time =       print (“Time now at greenwich meridian is : “, end = “”) print (current_time) Output:Time now at greenwich meridian is : 2021-03-16 17:59:03.837572The now() function has various attributes that can give the desired detail from the above output. Some of the attributes are year, month, date, hour, minute, second. See the below example for a better understanding.Example:Python3      import datetime       current_time =       print (“The attributes of now() are : “)       print (“Year : “, end = “”) print (current_time.year)       print (“Month : “, end = “”) print (current_time.month)       print (“Day : “, end = “”) print (       print (“Hour : “, end = “”) print (current_time.hour)       print (“Minute : “, end = “”) print (current_time.minute)       print (“Second : “, end = “”) print (current_time.second)       print (“Microsecond : “, end = “”) print (current_time.microsecond)Output:The attributes of now() are :
Year : 2021
Month : 3
Day : 16
Hour : 18
Minute : 1
Second : 59
Microsecond : 490402Getting only current DateDateTime module also provides another method called today() that only prints the value of today’s date.Example:Python3    from datetime import date     today = print(“Today date is: “, today)Output:Today date is: 2021-03-16Getting Only current TimeWe can create a time object using the time() function. Consider the below example.Example:Python3from datetime import datetime   time =   print(“Current Time =”, time)Output:Current Time = 18:13:35.003918Refer to the below articles to get detailed information about getting the current date and time.Formatting Date and TimeAcross various regions in the world, different types of date formats are used. DateTime provides strftime() method to deal with such formatting. This function is used to convert date and time objects to their string representation. It takes one or more input of formatted code and returns the string representation.Syntax:strftime(format)Example:Python3    from datetime import datetime  now = print(“Without formatting”, now)   s = now.strftime(“%a %m %y”) print(‘nExample 1:’, s)   s = now.strftime(“%A %-m %Y”) print(‘nExample 2:’, s)   s = now.strftime(“%-I %p %S”) print(‘nExample 3:’, s)   s = now.strftime(“%-j”) print(‘nExample 4:’, s)Output:Without formatting 2021-03-16 18:28:59.055609

Example 1: Tue 03 21

Example 2: Tuesday 3 2021

Example 3: 6 PM 59

Example 4: 75Refer to the below article to get detailed information about formatting date and time in Python.Handling timedelta objectsPython timedelta() function is present under datetime library which is generally used for calculating differences in dates and also can be used for date manipulations in Python.Syntax:timedelta(days=0, seconds=0, microseconds=0, milliseconds=0, minutes=0, hours=0, weeks=0)Example:Python3from datetime import timedelta  d1 = timedelta(weeks=1)  d2 = timedelta(days=30)  print(d1)print(d2)Output:7 days, 0:00:00
30 days, 0:00:00We can also use the + and – operators to add or subtract the timedelta objects from datetime objects.Example:Python3      from datetime import datetime, timedelta             ini_time_for_now =       print (“initial_date”, str(ini_time_for_now))       future_date_after_2yrs = ini_time_for_now + timedelta(days = 730)       future_date_after_2days = ini_time_for_now + timedelta(days = 2)       print(‘future_date_after_2yrs:’, str(future_date_after_2yrs)) print(‘future_date_after_2days:’, str(future_date_after_2days)) Output:initial_date 2021-03-16 18:47:53.103230
future_date_after_2yrs: 2023-03-16 18:47:53.103230
future_date_after_2days: 2021-03-18 18:47:53.103230Note: The output will be a DateTime object.Difference Between two datesAs discussed above, timedelta object represents the difference between the two dates. We can subtract one date from another and the resultant will be a timedelta object.Example 1:Python3from datetime import date    d1 = date(2021, 3, 16)d2 = date(2021, 3, 31)  diff = d2 – d1  print(“Difference: “, diff.days)Output:Difference: 15Example 2:Python3from datetime import datetime    d1 = datetime(2021, 3, 16, 19, 6, 6)d2 = datetime(2021, 3, 31, 12, 2, 2)  diff = d2 – d1  print(“Difference: “, diff)Output:Difference: 14 days, 16:55:56Refer to the below articles to get detailed information about finding differences in date.Comparing DatesThe dates can also be compared using comparison operators (like , =, != etc.)Example 1: Using comparison operatorsPython3  import datetime   d1 = datetime.datetime(2018, 5, 3) d2 = datetime.datetime(2018, 6, 1)   print(“d1 is greater than d2 : “, d1 > d2) print(“d1 is less than d2 : “, d1 < d2) print("d1 is not equal to d2 : ", d1 != d2)Output:d1 is greater than d2 : False d1 is less than d2 : True d1 is not equal to d2 : TrueRefer to the below article to get detailed information about comparing dates.Working with Different TimezonesThe does not have any information about the time zones. It just uses the current system time. In some situations, the time zone details may be needed. In such cases the tzinfo abstract class is used. tzinfo is an abstract base class. It cannot be instantiated directly. A concrete subclass has to derive it and implement the methods provided by this abstract class.Naive and Aware datetime objectsA datetime object which does not contain any information on time zone is said to be a naive datetime object. For a naive datetime object, datetime_object.tzinfo will be None. An Aware datetime object contains the time zone information embedded in it.The methods available for implementation in tzinfo base class are :utcoffset(): It returns the offset of the datetime instance passed as an argument. It refers to the time zone offset which denotes how many hours the time zone is ahead of the Coordinated Universal Time or Universal Time Coordinate (UTC). The offset is written as +00:00. For example: for Asia/Taipei, it is written as UTC +08:00.dst(): It is abbreviated as Day-light Saving Time. It denotes advancing the clock 1 hour in the summertime so that darkness falls later according to the clock. It is set to on or off. It is checked based on a tuple containing 9 elements as follows :(dt.year, dt.month,, dt.hour, dt.minute, dt.second, dt.weekday(), 0, 0)tzname(): This is used to find the time zone name of the datetime object passed. It returns a Python String object.fromutc(): This function takes up the date and time of the object in UTC and returns the equivalent local time. It is used mostly for adjusting the date and time. It is called from default datetime.astimezone() implementation. The dt.tzinfo will be passed as self, dt’s date and time data will be returned as an equivalent local time.Example:Python3import datetime as dt from dateutil import tz     tz_string =   print(" :", tz_string)   NYC = tz.gettz('Europe / Berlin') dt1 = dt.datetime(2015, 5, 21, 12, 0) dt2 = dt.datetime(2015, 12, 21, 12, 0, tzinfo = NYC)   print("Naive Object :", dt1.tzname()) print("Aware Object :", dt2.tzname()) : UTC Naive Object : None Aware Object : CETWe can also use pytz module to deal with cross-timezones conversion. Let’s see how it works.Using PytzPytz brings the Olson tz database into Python and thus supports almost all time zones. This module serves the date-time conversion functionalities and helps user serving international client’s base.By using astimezone() function we can convert the time into a different timezone.Syntax:astimezone(t)Example:Python3from datetime import datetime from pytz import timezone   format = "%Y-%m-%d %H:%M:%S %Z%z"  now_utc ='UTC')) print(now_utc.strftime(format))   now_asia = now_utc.astimezone(timezone('Asia/Kolkata')) print(now_asia.strftime(format))Output:2021-03-17 07:41:19 UTC+0000 2021-03-17 13:11:19 IST+0530Refer to the below articles to get detailed information about working with timezones. Attention geek! Strengthen your foundations with the Python Programming Foundation Course and learn the basics.  To begin with, your interview preparations Enhance your Data Structures concepts with the Python DS Course. And to begin with your Machine Learning Journey, join the Machine Learning – Basic Level Course