惯性聚合 高效追踪和阅读你感兴趣的博客、新闻、科技资讯
阅读原文 在惯性聚合中打开

推荐订阅源

雷峰网
雷峰网
奇客Solidot–传递最新科技情报
奇客Solidot–传递最新科技情报
博客园 - 三生石上(FineUI控件)
博客园 - 聂微东
OSCHINA 社区最新新闻
OSCHINA 社区最新新闻
Hugging Face - Blog
Hugging Face - Blog
Apple Machine Learning Research
Apple Machine Learning Research
博客园 - Franky
MyScale Blog
MyScale Blog
A
About on SuperTechFans
博客园_首页
B
Blog RSS Feed
Martin Fowler
Martin Fowler
大猫的无限游戏
大猫的无限游戏
Cyber Security Advisories - MS-ISAC
Cyber Security Advisories - MS-ISAC
Vercel News
Vercel News
C
Check Point Blog
H
Hackread – Cybersecurity News, Data Breaches, AI and More
博客园 - 【当耐特】
M
MIT News - Artificial intelligence
宝玉的分享
宝玉的分享
T
Tailwind CSS Blog
I
InfoQ
罗磊的独立博客

DEV Community

Authentication Security Deep Dive: From Brute Force to Salted Hashing (With Java Examples) Why AI Systems Don’t Fail — They Drift Spilling beans for how i learn for exam😁"Reinforcement Learning Cheat Sheet" I Replaced Chrome with Safari for AI Browser Automation. Here's What Broke (and What Finally Worked) How Python Borrows Other People's Work The $40 Architecture: Processing 1 Billion API Requests with 99.99% Uptime Vibe Coding: A Workflow Guide (From Zero to SaaS) Most webhook security guides protect the wrong side. The scary part is delivery. Headless CMS for TanStack Start: Build a Blog with Cosmic EU Age Verification App "Hacked in 2 Minutes" — What Actually Happened Comfy Cloud’s delete function does not actually remove files Running AI Models on GPU Cloud Servers: A Beginner Guide Event-driven media intelligence with AWS Step Functions and Bedrock I scored 500 AI prompts across 8 quality dimensions — here's what broke How to Call Google Gemini API from Next.js (Free Tier, No Backend Needed) The Portal Protocol: Reclaiming Human Connection in the Age of AI How to Fix Your Team's Scattered Knowledge Problem With a Self-Hosted Forum Intro to tc Cloud Functors: A Graph-First Mental Model for the Modern Cloud Designing Multi-Tenant Backends With Both Ownership and Team Access I Built a Neumorphic CSS Library with 77+ Components — Here's What I Learned PostgreSQL Performance Optimization: Why Connection Pooling Is Critical at Scale Cómo construí un SaaS multi-rubro para gestionar expensas en Argentina con FastAPI + Vue 3 🚀 I Built an Ethical Hacking Scanner Tool – Open Source Project I Replaced /usage and /context in Claude Code With a Single Statusline A Pythonic Way to Handle Emails (IMAP/SMTP) with Auto-Discovery and AI-Ready Design I Collected 8.9 Million Polymarket Price Points — Here's What I Found About How Markets Really Move EcoTrack AI — Carbon Footprint Tracker & Dashboard Everyone's Using AI. No One Agrees How. 5 self-hosted ebook managers worth trying in 2026 Building Your First AI Agent with LangChain: From Chatbot to Autonomous Assistant
You Don’t Exist on Solana (Until You Do)
R Anmol · 2026-05-18 · via DEV Community

R Anmol

When we compare a normal(web2) account signup to signup on blockchain(web3) one question comes to mind: how does the blockchain know this account is real or this accounts exists on the network?

I am going to talk specifically about Solana, but it may apply to the broader landscape in general


Key-Pair Creation

When we first create a key-pair in solana

solana-keygen new --outfile /tmp/broke-wallet.json --no-bip39-passphrase --force

Enter fullscreen mode Exit fullscreen mode

We get,

Output of solana-keygen. Contains private key, public key and seed phrase

From the image above, we can see that we get three things -

  1. Private Key, which is stored as a json file in the specific path
  2. Public key, which can be derived from the private key
  3. Seed Phrase, which can derive the private key.

Private Key and Public Key follow a one-to-one mapping, meaning we will always get the same public key from the private key. We cannot derive private key from our public key.

Our seed phrase can derive multiple private keys. This makes managing multiple wallets with single seed phrase possible.

Disclaimer: Never share your actual seed phrase and/or private key.


Answer

Now that we have created the key, let's go back to our original question, how does the blockchain know we exist?

The simple answer is it doesn't.

Private keys are created from random 256 bits, meaning there are 2^256 possible combinations (more than the atoms in a universe). So chances of two people having same private key is virtually zero.

The blockchain only knows about your wallet after its first incoming or outgoing transaction. In Solana, this is when the network explicitly allocates space on the ledger for our public key and deposits enough SOL to make the account "rent-exempt." Before this happens, our wallet isn't an active account on the ledger—it's just a mathematical possibility among 2^256 options.


Fun Fact

The json file which is created is a 64 byte array, where first 32 bytes are the private key and next 32 bytes are the public key.

Solana saves this in this format because whenever we sign a transaction on blockchain, we need both private key and public key and yes we can derive the public key on the spot with the help of private key, which is inefficient when our (Solana in this case) goal is to go as fast as possible while using as few compute units as possible.


Conclusion

This is the major architectural and philosophical difference between Web2 and Web3. On Web2, we(our identities) are row in centralized database. In Web3, we do not exist, till we do.