Deployment choreography
CI/CD, Docker, Terraform, Nginx, rollback logic, and AWS infrastructure treated as one visible system.
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Computer Science sophomore at GIKI turning cloud deployments, C++ networks, hardware logic, and security labs into sharp, demo-ready engineering stories.

CI/CD, Docker, Terraform, Nginx, rollback logic, and AWS infrastructure treated as one visible system.
Raw TCP projects, graph-heavy transport routing, and CLI dashboards that prove the algorithms are alive.
Google Cybersecurity certified, PortSwigger workshop organizer, and comfortable around SQLi, XSS, IDOR, SSRF, Linux, and incident response.
DLD work that leaves the simulator: flip-flops, XOR feedback, LFSRs, Arduino interfacing, and physical OTP output.
Real projects, framed as portfolio panels: cloud infrastructure, database work, custom data structures, sockets, hardware security, and a Godot side quest.
Blue-Green Deployment Visualizer
Zero-downtime deployment lab with two live app versions, weighted Nginx traffic, Docker Compose orchestration, Terraform IaC, and rollback-ready CI/CD.
Security-flavored database project
A database-driven project shaped around query logic, constraints, and secure handling patterns. It fits the portfolio as the DBMS chapter in the systems arc.
Intelligent Transport Network Management System
A command-line city brain built without STL shortcuts: route search, MST planning, density analytics, and traversal tools over custom graph infrastructure.
Multi-client TCP scheduling system
Patient, admin, and viewer modules talk over a raw socket server, with a custom credential encryption layer and concurrent workflow design.
Digital Logic Design hardware device
A physical security device made from DLD fundamentals: flip-flops and XOR feedback produce pseudo-random 6-character OTPs through Arduino interfacing.
Godot focus game
A playful productivity experiment that turns focus sessions into an interactive game rhythm instead of another plain timer utility.
Hybrid pseudo-random OTP generator
This project deserves a physical spotlight because it shows the bridge between theory and a device you can hold. The board implements an 8-bit LFSR and presents six-character OTPs through Arduino interfacing.


