1

Ebpf Linux Jobs in Decatur, GA (NOW HIRING)

Ebpf Linux information

See Decatur, GA salary details

$35

$54

$69

How much do ebpf linux jobs pay per hour?

As of Sep 5, 2026, the average hourly pay for ebpf linux in Decatur, GA is $54.01, according to ZipRecruiter salary data. Most workers in this role earn between $49.04 and $57.98 per hour, depending on experience, location, and employer.

What is an eBPF Linux engineer?

An eBPF Linux engineer is a software professional who specializes in working with eBPF (extended Berkeley Packet Filter) technology on the Linux operating system. eBPF allows for the execution of sandboxed programs in the Linux kernel, enabling advanced networking, security, and observability features without modifying kernel source code. Engineers in this role typically develop, optimize, and troubleshoot eBPF programs for use cases such as network monitoring, performance analysis, and security enforcement. They need a strong understanding of Linux internals, networking, and programming in C and sometimes Rust or Go. eBPF Linux engineers are increasingly in demand due to the growing use of cloud-native and containerized environments.

What are the key skills and qualifications needed to thrive as an eBPF Linux engineer?

To thrive as an eBPF Linux Engineer, you need strong skills in Linux systems programming, networking fundamentals, and proficiency with C or Go, often supported by a computer science degree or equivalent experience. Familiarity with eBPF tools (like bpftrace, libbpf, or bpftool), kernel debugging, and knowledge of containerization platforms are typically required. Analytical thinking, problem-solving, and effective collaboration set top professionals apart in this field. These competencies are crucial for developing efficient, secure, and scalable system observability or networking solutions within complex Linux environments.

What are some common challenges faced when developing with eBPF on Linux systems?

Developing with eBPF on Linux often involves navigating kernel version compatibility, as eBPF features evolve rapidly and may not be available on older kernels. Debugging eBPF programs can also be challenging due to strict verifier constraints and limited debugging tools. Additionally, integrating eBPF with existing monitoring or networking solutions requires a solid understanding of both kernel space and user space interactions. Collaborating with platform engineers and security teams is common, as eBPF programs frequently impact system performance and security.

What is the difference between Ebpf Linux vs Linux Kernel Developer?

AspectEbpf LinuxLinux Kernel Developer
Required credentialsKnowledge of eBPF, Linux internals, C programmingDeep understanding of Linux kernel, C, and kernel modules
Work environmentDeveloping and deploying eBPF programs within Linux systemsWriting, maintaining, and optimizing Linux kernel code
Employer and industry usageTech companies, cloud providers, security firms using eBPF for monitoring and securityOperating system vendors, enterprise IT, open-source projects

Ebpf Linux specialists focus on developing eBPF programs to enhance Linux system capabilities, while Linux Kernel Developers work on core kernel code. Both roles require strong C skills and Linux knowledge but differ in scope and focus.

What are popular job titles related to Ebpf Linux jobs in Decatur, GA?

For Ebpf Linux jobs in Decatur, GA, the most frequently searched job titles are:

What job categories do people searching Ebpf Linux jobs in Decatur, GA look for?

The top searched job categories for Ebpf Linux jobs in Decatur, GA are:

What cities near Decatur, GA are hiring for Ebpf Linux jobs?

Cities near Decatur, GA with the most Ebpf Linux job openings:

Full-time

Posted 14 days ago


Job description

Overview
Job Purpose
Intercontinental Exchange (ICE) is hiring a Senior Performance Engineer to help own performance for our derivatives trading platform - order entry, matching engine, and market data distribution. These are latency-sensitive, business-critical systems where a regression measured in microseconds is a business event.
You will join a small, established performance engineering team. We are hiring a senior engineer to take direct ownership of a substantial share of the platform's performance work. This is not a support seat - you will run campaigns and own conclusions from day one, with an experienced team around you.
The role spans the full performance lifecycle: designing and running test campaigns, profiling pre-production code to surface bottlenecks before release, and diagnosing degradation in production. It is hands-on and deeply technical, suited to an engineer who is equally comfortable profiling a JVM under load, reading a flame graph, and explaining a latency regression to a development team in terms they can act on.
You will use AI tooling to accelerate test design, result analysis, and incident diagnosis - while remaining personally accountable for measurement quality and for every technical conclusion you present.
Responsibilities
  • Own end-to-end performance validation for assigned areas of the derivatives trading platform: order entry, matching engine, and market data distribution paths.
  • Design and execute load, stress, and capacity test suites against pre-production and production-like environments.
  • Profile pre-production services to identify bottlenecks across CPU, memory, I/O, threading, garbage collection, network, and database layers, and partner with development teams to resolve findings before release.
  • Establish and maintain production performance baselines; proactively identify degradation and emerging risk.
  • Investigate latency and capacity events in production, producing formal root cause analyses and corrective action plans.
  • Contribute to capacity planning and infrastructure sizing recommendations grounded in measured behavior and growth projections.
  • Plan and execute non-functional testing - resiliency, failover, scalability, and capacity validation. Expect this to be roughly 20% of your time.
  • Document methodology, results, and findings to a standard suitable for internal engineering audiences and, where applicable, audit and regulatory review.
  • Contribute to the team's shared tooling, harnesses, and measurement practice.

AI-Assisted Performance Engineering
  • AI tooling is part of the standard workflow here, not an experiment. You will use it to draft workload models and test scaffolding from production metrics, SLAs, and prior incidents; to accelerate analysis of profiler output, GC logs, traces, and packet captures; and to shorten first-pass RCA and produce engineering- and audit-ready write-ups.
  • The bar is that you validate what comes back. You own the statistical soundness of the workload model, the identification of the bottleneck, the stated root cause, and the corrective actions - regardless of what produced the first draft.

Knowledge and Experience
  • Bachelor's degree in Computer Science, Engineering, or a related technical discipline, or equivalent practical experience.
  • 5+ years in performance engineering and testing.
  • Demonstrated experience designing workload models and executing performance test campaigns against distributed, multi-tier systems, using tools such as JMeter, Gatling, k6, or LoadRunner.
  • Demonstrated experience diagnosing performance problems in latency-sensitive systems using profilers and system tooling - for example perf, eBPF/bpftrace, async-profiler, JFR, flame graphs, or Intel VTune.
  • A rigorous statistical approach to measurement: you understand why averages mislead, how coordinated omission distorts results, and how to build tests that produce defensible numbers.
  • Excellent written and verbal communication, including the ability to explain a latency distribution to a room that contains both kernel engineers and business stakeholders.
  • Deep working knowledge in at least two of the following, with working familiarity across the rest:
    • Linux internals as they relate to performance - scheduling, memory management, interrupt affinity, kernel and network tuning.
    • JVM internals - the Java memory model, JIT behavior, escape analysis, GC algorithms and their pause characteristics (G1, ZGC, Shenandoah), off-heap memory management.
    • Networking fundamentals - TCP/IP, UDP multicast, packet capture and analysis, and measurement of network-induced latency and loss.

Preferred Knowledge and Experience
  • Proficiency in Java, C++, or Python.
  • Applied experience using AI coding agents in a routine performance or development workflow - test-script authoring, log and metric analysis, RCA drafting. Hands-on experience with Claude Code or a comparable agent, including agent skills or MCP servers connecting agents to APM platforms, logs, or test harnesses, is a plus.
  • Experience with low-latency or high-throughput systems, ideally in financial services, trading, or market data.
  • Kernel-bypass and accelerated networking: Solarflare/Onload, DPDK, RDMA, or FPGA-assisted paths.
  • Hardware and colocation tuning: BIOS/firmware configuration, C-state and frequency management, PTP/PPS time synchronization, hardware timestamping.
  • APM platforms such as Dynatrace, AppDynamics, or OpenTelemetry.
  • Chaos engineering, resiliency testing, or disaster recovery validation.

Schedule
  • Onsite in our Atlanta office five days per week.
  • No on-call rotation.
  • Occasional weekend work to support major platform releases. This is infrequent and scheduled in advance.

#LI-JW1
-
Intercontinental Exchange, Inc. is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to legally protected characteristics.