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Solidity Programming Essentials

Solidity Programming Essentials

By : Modi
3.6 (8)
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Solidity Programming Essentials

Solidity Programming Essentials

3.6 (8)
By: Modi

Overview of this book

Solidity is a high-level language for writing smart contracts, and the syntax has large similarities with JavaScript, thereby making it easier for developers to learn, design, compile, and deploy smart contracts on large blockchain ecosystems including Ethereum and Polygon among others. This book guides you in understanding Solidity programming from scratch. The book starts with step-by-step instructions for the installation of multiple tools and private blockchain, along with foundational concepts such as variables, data types, and programming constructs. You’ll then explore contracts based on an object-oriented paradigm, including the usage of constructors, interfaces, libraries, and abstract contracts. The following chapters help you get to grips with testing and debugging smart contracts. As you advance, you’ll learn about advanced concepts like assembly programming, advanced interfaces, usage of recovery, and error handling using try-catch blocks. You’ll also explore multiple design patterns for smart contracts alongside developing secure smart contracts, as well as gain a solid understanding of writing upgradable smart concepts and data modeling. Finally, you’ll discover how to create your own ERC20 and NFT tokens from scratch. By the end of this book, you will be able to write, deploy, and test smart contracts in Ethereum.
Table of Contents (21 chapters)
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1
Part 1: The Fundamentals of Solidity and Ethereum
7
Part 2: Writing Robust Smart Contracts
13
Part 3: Advanced Smart Contracts

Creating contracts

There are the following two ways of creating and using a contract in Solidity:

  • Using the new keyword
  • Using the address of the already-deployed contract

Using the new keyword

The new keyword in Solidity deploys and creates a new contract instance. It initializes the contract instance by deploying the contract, initializing the state variables, running its constructor, setting the nonce value to 1, and, eventually, returning the address of the instance to the caller.

Deploying a contract involves checking whether the sender has provided enough gas to complete the deployment, generating a new account/address for contract deployment using the requestor's address and nonce values, and passing on any Ether sent along with it.

In the following code snippet, two contracts, HelloWorld and client, are defined. In this scenario, one contract (client) deploys and creates a new instance of another contract (HelloWorld). It does so using the new...

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