
Staff Software Engineer - Embedded Software Platform
Job Description
Job Description
Work Arrangement:
This role is based remotely, but if the candidate lives
within a 50 miles radius of a GM hub, they will be expected to report to the location three times a week
(or other frequency dictated by your manager).
T
he
R
ole
:
General Motors is seeking a Staff Software Engineer to shape and scale the engineering platforms that build, test, integrate,
validate
, and deliver embedded software for software-defined vehicles. This role is for a hands-on technical leader who can turn ambiguous, cross-team problems into durable architecture, practical standards, and measurable improvements in engineering effectiveness, release confidence, and product quality.
The successful candidate will lead a major capability across multiple teams, influence technical direction beyond their immediate organization, and connect software, tooling, infrastructure, test, and release activities into a coherent engineering system. The role may align to one or more of the four specialization areas below.
E
xpectations and
I
mpact
:
Own the architecture, technical roadmap, and execution strategy for a significant platform capability or a set of related initiatives.
Lead high-impact, multi-team technical efforts from problem definition through adoption and operationalization.
Establish reusable patterns, standards, quality controls, and developer experiences that improve consistency and speed across teams.
Make sound architectural decisions in complex embedded, real-time, cloud, simulation, test, and release environments.
Use engineering data and operational signals to prioritize improvements in reliability, feedback time, quality, and developer productivity.
Influence without relying on direct authority; align engineering, validation, cybersecurity, cloud, quality, program, and supplier stakeholders.
Remain hands-on in the most difficult technical problems while enabling others through coaching, mentoring, documentation, and technical leadership.
Communicate tradeoffs, risks, progress, and recommendations clearly to senior engineering and program leaders.
Specialization
A
reas
:
Virtualization and CI infrastructure
Define and evolve the platform used to build, test, and deploy virtualized vehicle software across embedded, simulation, and cloud environments. Work may include enterprise CI/CD architecture,
GitOps
delivery on Kubernetes, Terraform and infrastructure-as-code patterns, progressive delivery and rollback, artifact flows, security and compliance integration, and observability for pipelines and simulation workloads.
Virtualization- specific basic qualifications
Experience designing or delivering CI/CD platforms for embedded, simulation, or cloud workloads.
Hands-on experience with Kubernetes, Terraform or comparable infrastructure-as-code practices, and production cloud environments.
Experience with embedded or simulation workflows such as
vECUs
, SIL, FMU, or SSP.
Ability to translate platform architecture into reusable automation, standards, and operational practices.
2. Continuous integration and quality gating
Architect traceable delivery flows that safely move software and related inputs from pull request through
component
, system, virtual, physical, and release validation. Work may include GitHub Enterprise workflows, artifact promotion, dependency and configuration management, mainline protection, tiered quality gates, test-evidence policy, embedded and vehicle-level compatibility checks, release readiness, and pipeline-health metrics.
CI-specific basic qualifications
Experience architecting or implementing end-to-end CI/CD and quality-gating workflows for embedded software.
Experience with GitHub Enterprise or comparable source-control and pipeline platforms, artifact repositories, and automated test evidence.
Understanding
embedded and vehicle-system integration across ECUs, MCUs, SoCs, containers, networks, configuration, or calibration.
Experience incorporating static analysis, security scanning, coverage, integration testing, simulation, or hardware-based validation into delivery controls.
3. Test-system modernization
Modernize large-scale embedded test systems so standardized, headless, automated testing can run repeatedly across virtual and physical environments. Work may include test execution architecture, configuration and variation management, change-impact analysis, risk-based regression selection, test-result schemas and APIs, Databricks-enabled analytics, diagnostics, failure triage, and integration with CI/CD, test management, and issue-management workflows.
Specialization-specific basic qualifications
Experience architecting embedded test automation and build-to-test pipelines across virtual or physical environments.
Experience with configuration and variation management, change-impact analysis, or risk-based regression testing.
Experience modeling test results and integrating test execution with APIs, analytics platforms such as Databricks, diagnostics, or issue-management workflows.
Proficiency
with engineering automation tools such as Linux, Git, Python, Bash, Robot Framework, containers, or infrastructure as code.
4. Build-system modernization
Modernize embedded build and test infrastructure by creating scalable, reproducible, secure, and developer-friendly workflows. Work may include transitioning legacy Make or shell orchestration to Bazel, developing reusable rules, macros, toolchains, platforms, and repository standards, migrating firmware and generated code, integrating build systems with CI/CD and release processes, improving caching and parallelism, and evaluating AI-assisted engineering workflows with measurable outcomes.
Build System-specific basic qualifications
Experience building and
maintaining
production software systems, with
proficiency
in Python and at least one
additional
engineering-tooling language.
Experience in automotive, embedded, safety-related, calibration, or systems-engineering environments.
Experience migrating Make or shell-based build orchestration to Bazel or a comparable scalable build system.
Experience with embedded cross-compilation, toolchains, generated code, firmware, build reproducibility, or CI/CD integration.
What
Y
ou’ll
D
o
:
Define target-state architecture, phased roadmaps, and implementation priorities for the assigned capability.
Lead architecture reviews, technical working sessions, design decisions, and cross-functional alignment.
Identify
manual handoffs, duplicated work, late integration points, unreliable signals, and other systemic sources of delay or quality escape.
Deliver or guide production-quality software, automation, platform components, and integrations.
Create standards and reusable patterns that make the preferred engineering path the easiest path for product teams and suppliers.
Establish clear ownership, entry and exit criteria, operational expectations, and exception-management practices.
Instrument the platform and use data to
identify
root causes, guide investment, and
demonstrate
measurable improvement.
Partner with teams responsible for embedded software, vehicle integration, validation, developer experience, cloud, cybersecurity, artifact management, and program delivery.
Coach senior engineers and help grow technical leadership across the organization.
Your Skills & Abilities (Required Qualifications):
Bachelor’s degree in computer science, computer engineering, electrical engineering, software engineering, systems engineering, or
a related
technical field, or equivalent practical experience.
Typically, 15 or more years of experience developing, integrating, deploying, or
validating
software systems.
Deep understanding of embedded and real-time software architecture and experience delivering high-quality safety-critical or otherwise mission-critical products.
Demonstrated success leading complex technical initiatives across multiple teams or organizations.
Strong problem-solving, analytical, communication, and prioritization skills in an action-oriented environment.
Production experience with engineering tools and systems;
proficiency
in Python and at least one
additional
language used in software or engineering-tooling environments.
Experience in at least one of the four specialization areas described above, with the ability to collaborate across the others.
Experience with relevant technologies such as Linux, Git, containers, CI/CD, cloud platforms,
infrastructure as
code,
test automation, artifact repositories, or data and API platforms, as applicable to the selected specialization.
What Will Give You a Competitive Edge (Preferred Qualifications):
Experience in automotive, aerospace, defense, industrial, or another embedded, real-time, regulated, or safety-critical environment.
Knowledge of functional safety, ISO 26262, cybersecurity engineering, ASPICE, MISRA, AUTOSAR, or related engineering practices.
Experience with virtual and hardware-based validation, including SIL, CoSIM,
vECU
, HIL, benches, or system-level testing.
Experience
establishing
platform products, reusable templates, developer self-service, engineering standards, or reliability
objectives
.
Advanced degree in a related technical field.
Measures of
S
uccess
:
Improved build, test, integration, release, and developer feedback speed without compromising quality.
More reproducible, traceable, secure, and observable engineering workflows.
Earlier detection and faster resolution of integration defects, pipeline failures, and invalid quality signals.
Strong adoption of common platforms, standards, and automation by product teams and suppliers.
Measurable gains in
release
confidence, mainline stability, test effectiveness, and engineering productivity.
Company
V
ehicle:
Upon successful completion of a motor vehicle report review, you will be eligible to
participate
in a company vehicle evaluation program, though which you will be assigned a General Motors vehicle to drive and evaluate. Note: program participants
are required to
purchase
/lease a qualifying GM vehicle every four years unless one of a limited number of exceptions applies.
Compensation:
The compensation information is a good faith estimate only. It is based on what a successful applicant might be paid
in accordance with
applicable state laws. The actual base salary a successful candidate will be offered within this range will vary based on factors relevant to the position, as well as geography of the selected candidate.
The Salary Range:
for this role is 1
71,150
and 2
88,500
. The actual base salary a successful candidate will be offered within this range will vary based on factors relevant to the position.
Bonus Potential:
An incentive
pa
y
program offers payouts based on company performance, job level, and individual performance.
Benefits:
GM offers a variety of health and wellbeing benefit programs. Benefit options include medical, dental, vision, Health Savings Account, Flexible Spending Accounts, retirement savings plan, sickness and accident benefits, life insurance, paid vacation & holidays, tuition
assistanc
e
programs, employee
assistanc
e
program, GM vehicle discounts and more.




This role is based remotely, but if the selected candidate lives within a specific mile radius of a GM hub, they will be expected to report to the location three times a week {or other frequency dictated by your manager}.

The selected candidate will be required to travel <25% for this role.

This job may be eligible for relocation benefits.


About GM
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Benefits Overview
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