What is a Hashtable/Hashmap?

A hashtable is a data structure that with a collection of key-value pairs, where each key maps to a value, and the keys must be unique and hashable.

  • In Python there is a built in hashtable known as a Dictionary.

The primary purpose of a hashtable is to provide efficient lookup, insertion, and deletion operations. When an element is to be inserted into the hashtable, a hash function is used to map the key to a specific index in the underlying array that is used to store the key-value pairs. The value is then stored at that index. When searching for a value, the hash function is used again to find the index where the value is stored.

The key advantage of a hashtable over other data structures like arrays and linked lists is its average-case time complexity for lookup, insertion, and deletion operations.

  • The typical time complexity of a hashtable is O.

What is Hashing and Collision?

Hashing is the process of mapping a given key to a value in a hash table or hashmap, using a hash function. The hash function takes the key as input and produces a hash value or hash code, which is then used to determine the index in the underlying array where the value is stored. The purpose of hashing is to provide a quick and efficient way to access data, by eliminating the need to search through an entire data structure to find a value.

However, it is possible for two different keys to map to the same hash value, resulting in a collision. When a collision occurs, there are different ways to resolve it, depending on the collision resolution strategy used.

Python's dictionary implementation is optimized to handle collisions efficiently, and the performance of the dictionary is generally very good, even in the presence of collisions. However, if the number of collisions is very high, the performance of the dictionary can degrade, so it is important to choose a good hash function that minimizes collisions when designing a Python dictionary.

What is a Set?

my_set = set([1, 2, 3, 2, 1])
print(my_set)  

# What do you notice in the output?
# Every value only appears once / no duplicates


# Why do you think Sets are in the same tech talk as Hashmaps/Hashtables?
# This set only prints one of each value in the same way that hashtables can only have 1 of each key.

Dictionary Example

Below are just some basic features of a dictionary. As always, documentation is always the main source for all the full capablilties.

lover_album = {
    "title": "Lover",
    "artist": "Taylor Swift",
    "year": 2019,
    "genre": ["Pop", "Synth-pop"],
    "tracks": {
        1: "I Forgot That You Existed",
        2: "Cruel Summer",
        3: "Lover",
        4: "The Man",
        5: "The Archer",
        6: "I Think He Knows",
        7: "Miss Americana & The Heartbreak Prince",
        8: "Paper Rings",
        9: "Cornelia Street",
        10: "Death By A Thousand Cuts",
        11: "London Boy",
        12: "Soon You'll Get Better (feat. Dixie Chicks)",
        13: "False God",
        14: "You Need To Calm Down",
        15: "Afterglow",
        16: "Me! (feat. Brendon Urie of Panic! At The Disco)",
        17: "It's Nice To Have A Friend",
        18: "Daylight"
    }
}

# What data structures do you see?
# a list and two Dictionaries

# Printing the dictionary
print(lover_album)
print(lover_album.get('tracks'))
# or
print(lover_album['tracks'])
print(lover_album.get('tracks')[4])
# or
print(lover_album['tracks'][4])
lover_album["producer"] = set(['Taylor Swift', 'Jack Antonoff', 'Joel Little', 'Taylor Swift', 'Louis Bell', 'Frank Dukes'])

# What can you change to make sure there are no duplicate producers?
# Make it a set

# Printing the dictionary
print(lover_album)
lover_album["tracks"].update({19: "All Of The Girls You Loved Before"})

# How would add an additional genre to the dictionary, like electropop? 
# `lover_album["genre"].update({"electropop"})`

# Printing the dictionary
print(lover_album)
for k,v in lover_album.items(): # iterate using a for loop for key and value
    print(str(k) + ": " + str(v))

# Write your own code to print tracks in readable format

for k,v in lover_album["tracks"].items():
    print(str(k) + ": " + str(v))
def search():
    search = input("What would you like to know about the album?")
    if lover_album.get(search.lower()) == None:
        print("Invalid Search")
    else:
        print(lover_album.get(search.lower()))

#search()

# This is a very basic code segment, how can you improve upon this code?

def bettersearch():
    search = input("What would you like to know about the album?")
    if lover_album.get(search.lower()) == None:
        print("Invalid Search")
    else:
        if search.lower() == 'tracks':
            for k,v in lover_album[search.lower()].items():
                print(str(k) + ": " + str(v))
        if search.lower() == 'producer' or 'genre':
            print(search,':',lover_album.get(search.lower()))
        else:
            print(lover_album.get(search.lower()))

# I used my formatting from earlier to make the output more readable

bettersearch()

Hacks

  • Answer ALL questions in the code segments
  • Create a diagram or comparison illustration (Canva).
    • What are the pro and cons of using this data structure?
    • Dictionary vs List
  • Expand upon the code given to you, possible improvements in comments
  • Build your own album showing features of a python dictionary

  • For Mr. Yeung's class: Justify your favorite Taylor Swift song, answer may effect seed

    Blank space is kinda fire, tho tbh I havent listened to taylor in a few years.

albums = {
    "spirit phone":{
        "title": "Spirit Phone",
        "artist": "Lemon Demon",
        "spotify": "https://open.spotify.com/album/4ocal2JegUDVQdP6KN1roI?si=Gd4etRpWT1-citDh_bKCnA",
        "year": 2016,
        "genre": ["New Wave","Pop", "Synth-Pop","Synthpunk","Electronic Rock","Electropop"],
        "tracks": {
            1: "Lifetime Achievement Award",
            2: "Touch Tone Telephone",
            3: "Cabinet Man",
            4: "No Eyed Girl",
            5: "When He Died",
            6: "Sweet Bod",
            7: "Eighth Wonder",
            8: "Ancient Aliens",
            9: "Soft Fuzzy Man",
            10: "As Your Father I Expressly Forbid It",
            11: "I Earn My Life",
            12: "Reganomics",
            13: "Man-Made Object",
            14: "Spiral of Ants"
        },
        "bonus tracks": {
            1: "Crisis Actors",
            2: "Redesign Your Logo",
            3: "Pizza Heroes",
            4: "You're At The Party",
            5: "Angry People",
            6: "Geocities",
            7: "Angelfire",
            8: "Gravitron",
            9: "Moon's Request",
            10: "Sweet Bod (Demo)",
            11: "Cat Hacks",
            12: "Cabinet Man (Demo)",
            13: "Kubrick and the Beast"
        }
    },
    "pebble brain":{
        "title": "Pebble Brain",
        "artist": "Lovejoy",
        "spotify": "https://open.spotify.com/album/43yKUvEVZ2dTy2vOrozS2j?si=BjmsQPX4Tlebh72ZZstmJw",
        "year": 2021,
        "genre": ["Indie Rock","Pop-Punk"],
        "tracks": {
            1: "Oh yeah, You Gonna Cry?",
            2: "Model Buses",
            3: "Concrete",
            4: "Perfume",
            5: "You'll Understand When You're Older",
            6: "The Fall",
            7: "It's All Futile! It's All Pointless!"
        }
    },
    "bitter tongues":{
        "title": "Bitter Tongues",
        "artist": "James Marriot",
        "spotify": "https://open.spotify.com/album/0Q2LN4KSzWYWbMxyb2rCfO?si=BuJaN4m8S7al4Sh7ZbkUHQ",
        "year": 2022,
        "tracks": {
            1: "Where Has Everyone Gone?",
            2: "Gold",
            3: "Car Lights",
            4: "Sleeping On Trains",
            5: "Grapes"
        }
    }
}

def multisearch():
    albumselect = input("What album would you like to learn about?")
    albumselect = albumselect.lower()
    if albums.get(albumselect) == None:
        print("Invalid Album")
    else:
        album = albums.get(albumselect)
        search = input("What would you like to know about the album? (Artist, Title, Genre, Spotify, Tracks, Bonus Tracks, Etc.)")
        if album.get(search.lower()) == None:
            print("Invalid Search")
        else:
            if search.lower() == ('tracks' or "bonus tracks"):
                for k,v in album[search.lower()].items():
                    print(str(k) + ": " + str(v))
            else:
                print(album.get(search.lower()))
    

multisearch()