Udemy - Customizing and Deploying Embedded Linux Systems

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Udemy - Customizing and Deploying Embedded Linux Systems (Size: 1.6 GB)
  Bonus Resources.txt 102.4 B
  Get Bonus Downloads Here.url 204.8 B
  ~Get Your Files Here !
  1 - Videos
  1. Introduction.mp4 181.1 MB
  10. Module 9 Production Diagnostics, CI CD & eBPF.mp4 156.5 MB
  11. Module 10 Sovereign Deployment & Autonomous Edge.mp4 157.4 MB
  12. Conclusion.mp4 150.5 MB
  2 - Labs
  100. Lab 88 System Profiling and Boot Time Optimization The Race to Instant-On.html 14.5 KB
  101. Lab 89 Post-Mortem Excellence Crash Dump Analysis with kdump.html 13.9 KB
  102. Lab 90 Automated Hardware-in-the-Loop (HIL) Testing with LAVA.html 14 KB
  103. Lab 91 Embedded Rust — Compiling Memory-Safe Applications in Yocto.html 13.7 KB
  104. Lab 92 Edge Machine Learning Integrating TensorFlow Lite ONNX Runtime.html 13.4 KB
  105. Lab 93 Utilizing NVIDIA Blackwell Jetson NPU APIs via Yocto Meta-Layers.html 13.2 KB
  106. Lab 94 Containerizing the Edge Building a Custom OCI Runtime (crun).html 13.2 KB
  107. Lab 95 Kubernetes at the Edge Deploying K3s on an Embedded Target.html 13.2 KB
  108. Lab 96 Orchestrating Workloads to the Edge Node via K3s APIs.html 12.7 KB
  109. Lab 97 Decentralized Edge Research Nodes Peer-to-Peer Data Syncing.html 13 KB
  110. Lab 98 DORA GDPR Compliance – Secure Log Wiping and Data Sovereignty.html 13.1 KB
  111. Lab 99 Final System Audit—Penetration Testing the Custom Image.html 13.1 KB
  112. Lab 100 The Sovereign Autonomous Node - Architecture and Implementation.html 46 KB
  13. Lab 1 Architecting the Ultimate Build Server (Ubuntu 24.04 LTS & Docker).html 13.8 KB
  14. Lab 2 Understanding Cross-Compilation Toolchains (GCC, glibc, musl).html 13 KB
  15. Lab 3 Anatomy of an Embedded Linux Boot Sequence.html 12.9 KB
  16. Lab 4 The Buildroot Philosophy and Environment Initialization.html 13.5 KB
  17. Lab 5 Compiling Your First Minimal Buildroot Image.html 13.9 KB
  18. Lab 6 Emulating Hardware with QEMU Booting the Buildroot Image.html 13.2 KB
  19. Lab 7 The Yocto Project Architecture BitBake, Poky, and OpenEmbedded.html 12.9 KB
  20. Lab 8 Initializing the Yocto Build Environment and Configuration.html 13.5 KB
  21. Lab 9 Baking the core-image-minimal with Yocto.html 13.2 KB
  22. Lab 10 Validating the Yocto QEMU Boot and System Footprint.html 12.9 KB
  23. Lab 11 Customizing the Buildroot Toolchain Options.html 13.1 KB
  24. Lab 12 Managing Target Packages and Library Dependencies.html 13.8 KB
  25. Lab 13 Integrating External Cross-Compiled Applications into Buildroot.html 14.9 KB
  26. Lab 14 Rootfs Overlays Injecting Custom Configuration Files.html 13.6 KB
  27. Lab 15 Post-Build Scripts Automating File System Modifications.html 14.6 KB
  28. Lab 16 System V Init vs. systemd in Embedded Environments.html 13.6 KB
  29. Lab 17 Configuring systemd Services within Buildroot.html 13.7 KB
  30. Lab 18 Stripping Binaries and Optimizing Rootfs Size.html 13.6 KB
  31. Lab 19 Managing Buildroot Configurations with defconfig.html 12.7 KB
  32. Lab 20 Building a Complete Network-Enabled Kiosk Image in Buildroot.html 14.6 KB
  33. Lab 21 Decoding BitBake Syntax Variables, Appends, and Tasks.html 13.3 KB
  34. Lab 22 Creating Your First Custom Meta-Layer (meta-custom).html 13.4 KB
  35. Lab 23 Writing a Base Recipe (.bb) for a C C++ Application.html 13.2 KB
  36. Lab 24 BitBake Task Orchestration Mastering the Build Lifecycle.html 14.5 KB
  37. Lab 25 Recipe Appends (.bbappend) Modifying Upstream Code Safely.html 12.6 KB
  38. Lab 26 Managing Patches and Source Code Revisions in Yocto.html 13.9 KB
  39. Lab 27 The Modular Blueprint — Harnessing Yocto Classes.html 13.7 KB
  40. Lab 28 Resolving Recipe Dependency Conflicts and PROVIDES.html 14 KB
  41. Lab 29 Implementing Custom Image Recipes (Extending core-image).html 13.5 KB
  42. Lab 30 Architecting Remote Package Feeds The Embedded App Store Logic.html 12.8 KB
  43. Lab 31 The Role of Device Tree Blobs (DTB) in Modern SoCs.html 12.7 KB
  44. Lab 32 Compiling and Customizing the U-Boot Bootloader.html 13.4 KB
  45. Lab 33 U-Boot Environment Variables and Boot Scripts.html 13.1 KB
  46. Lab 34 Surgical Precision — Customizing the Linux Kernel via menuconfig.html 13.7 KB
  47. Lab 35 Integrating Out-of-Tree Kernel Modules (.ko) in Yocto.html 14.1 KB
  48. Lab 36 Dynamic Hardware Mapping Writing and Integrating Device Tree Overlays.html 13.9 KB
  49. Lab 37 Architecting a PREEMPT_RT (Real-Time) Kernel Build.html 13.1 KB
  50. Lab 38 The Multi-Path Gateway Mastering SD, eMMC, and Network Booting.html 14 KB
  51. Lab 39 Hardware Watchdogs Implementation at the Kernel Level.html 14.1 KB
  52. Lab 40 Board Support Package (BSP) Creation Booting Custom Silicon.html 13.3 KB
  53. Lab 41 Advanced systemd Targets, Timers, and Watchdog Integration.html 13 KB
  54. Lab 42 Inter-Process Communication (IPC) via D-Bus Architecture.html 13.1 KB
  55. Lab 43 Compiling and Configuring Wayland Weston for Embedded Displays.html 13.6 KB
  56. Lab 44 Implementing Qt6 QML for High-Performance Embedded GUIs.html 13.8 KB
  57. Lab 45 Deploying MQTT Brokers (Mosquitto) for Edge Telemetry.html 13.6 KB
  58. Lab 46 Embedded Database Engineering with SQLite and LevelDB.html 11.4 KB
  59. Lab 47 Audio Processing Architecture (ALSA and PipeWire).html 13.5 KB
  60. Lab 48 Local Data Persistence and Read-Only Root Filesystems (overlayfs).html 13.9 KB
  61. Lab 49 Memory Management OOM Killer Configuration and Tuning.html 12.9 KB
  62. Lab 50 Integrating Hardware Acceleration (VPU GPU) in Userspace.html 13.1 KB
  63. Lab 51 Threat Modeling for Embedded Devices (STRIDE).html 13.9 KB
  64. Lab 52 Secure Boot Phase 1 Cryptographic Key Generation.html 13.1 KB
  65. Lab 53 Secure Boot Phase 2 Signing U-Boot and the Linux Kernel.html 14.2 KB
  66. Lab 54 Hardware Root of Trust Interfacing with TPM 2.0 via TSS.html 14.3 KB
  67. Lab 55 ARM TrustZone — The Sovereign Fortress.html 13.8 KB
  68. Lab 56 Encrypted Data Partitions LUKS and dm-crypt Integration.html 13.7 KB
  69. Lab 57 Hardening the Kernel Securing Syscalls and Disabling Debug Ports.html 14.5 KB
  70. Lab 58 Mandatory Access Control Implementing SELinux Policies via Yocto.html 14.4 KB
  71. Lab 59 Network Security nftables Firewall Orchestration.html 13.7 KB
  72. Lab 60 EU Cyber Resilience Act Compliance Generating Automated SBOMs.html 13.7 KB
  73. Lab 61 Advanced Network Orchestration with NetworkManager and nmcli.html 13.6 KB
  74. Lab 62 Provisioning mTLS (Mutual TLS) for Device Authentication.html 13.3 KB
  75. Lab 63 Cellular Sovereignty — Integrating 5G LTE Modems via ModemManager.html 14.9 KB
  76. Lab 64 Architecting Wireless Sovereignty BLE Stack Orchestration with BlueZ.html 13.2 KB
  77. Lab 65 CAN Bus Architecture for Automotive Industrial Networks (SocketCAN).html 13.5 KB
  78. Lab 66 Time-Sensitive Networking (TSN) and PTP (Precision Time Protocol).html 13.5 KB
  79. Lab 67 Implementing the Matter Protocol for Smart Device Interoperability.html 14.2 KB
  80. Lab 68 Zero-Trust Edge Architecting Sovereign VPN Tunnels with WireGuard.html 15.3 KB
  81. Lab 69 The Kinetic Bridge Resilience through Offline Buffering.html 15 KB
  82. Lab 70 Secure Device Provisioning Protocols (FIDO Device Onboard).html 13.3 KB
  83. Lab 71 OTA Architecture Symmetric vs. Asymmetric Updates.html 13.3 KB
  84. Lab 72 Partition Layout Engineering for A B Redundancy.html 14 KB
  85. Lab 73 Integrating RAUC (Robust Auto-Update Controller) into Yocto.html 14.3 KB
  86. Lab 74 Generating and Signing RAUC Update Bundles.html 13.9 KB
  87. Lab 75 U-Boot Integration for A B Boot Slot Switching.html 13.7 KB
  88. Lab 76 Alternative OTA Implementing OSTree for Git-like File Updates.html 13.8 KB
  89. Lab 77 Integrating the Mender Client and Mender Server.html 13.6 KB
  90. Lab 78 Atomic Rollbacks Failing an Update and Recovering Gracefully.html 14.6 KB
  91. Lab 79 Differential Updates Minimizing Bandwidth over Cellular Networks.html 13.7 KB
  92. Lab 80 Fleet Monitoring Deploying Prometheus Node Exporter to the Edge.html 14 KB
  93. Lab 81 Continuous Integration Setting up GitLab Runners for Yocto.html 13.7 KB
  94. Lab 82 Implementing SState Cache and Hash Equivalence to Accelerate Builds.html 13.6 KB
  95. Lab 83 Reproducible Builds Ensuring Bit-for-Bit Determinism.html 13.7 KB
  96. Lab 84 Advanced Tracing Compiling and Utilizing perf.html 14.8 KB
  97. Lab 85 Memory Leak Detection on Target using Valgrind.html 13.5 KB
  98. Lab 86 Introduction to eBPF for Zero-Overhead Kernel Observability.html 13.1 KB
  99. Lab 87 Deep Tissue Diagnostics Engineering Custom eBPF Probes for I O.html 14.1 KB
  2. Module 1 Foundations, Local Environment Setup & Initial Success.mp4 138.8 MB
  3. Module 2 Buildroot Mastery & Root Filesystem Engineering.mp4 124.4 MB
  4. Module 3 Yocto Project Deep Dive - BitBake & Layers.mp4 108 MB
  5. Module 4 Advanced Hardware Support - Bootloaders & Custom Kernels.mp4 143.1 MB
  6. Module 5 Userspace Provisioning & Advanced IPC.mp4 142.3 MB
  7. Module 6 Hardware-Rooted Security & Zero-Trust Architecture.mp4 88.8 MB
  8. Module 7 Edge Connectivity & Protocol Orchestration.mp4 99.4 MB
  9. Module 8 Fleet Orchestration & Over-The-Air (OTA) Updates.mp4 115.2 MB

Description


Customizing and Deploying Embedded Linux Systems
https://WebToolTip.com
Published 5/2026

MP4 | Video: h264, 1920x1080 | Audio: AAC, 44.1 KHz, 2 Ch

Language: English | Duration: 7h 58m | Size: 1.57 GB
From Microcontroller Dependency to Principal Architect: Master Yocto, Secure Boot, RAUC OTA, eBPF, and Edge K3s.
What you'll learn

Architect custom, production-grade embedded operating systems from the ground up using both the Buildroot philosophy.

Compile and modify cross-compilation toolchains with fine-tuned parameters for custom ARM64 and x86-64 silicon environments.

Enforce hardware-rooted security parameters, including cryptographic Secure Boot signing keys, TPM 2.0 TSS interfacing, and ARM TrustZone/OP-TEE deployments.

Configure sub-millisecond latency deterministic control systems by patching, configuring, and building a custom PREEMPT_RT Real-Time kernel.

Implement atomic, zero-risk fleet Over-The-Air (OTA) update frameworks with dual A/B partition layouts, hardware watchdogs, and signed RAUC or Mender bundles.

Deploy resource-optimized, containerized Edge AI models and lightweight Kubernetes (K3s) orchestration clusters directly onto low-power custom boards.

Profile kernel-level I/O anomalies and network latencies with zero overhead using custom eBPF probes, perf, and systemd-analyze traces.

Automate regulatory compliance frameworks by integrating automated CycloneDX software bills of materials (SBOM) to meet strict EU Cyber Resilience Act mandates.

Survive a 12-hour air-gapped disaster recovery simulation, building a self-healing, read-only AI drone operating system from an empty repository.
Requirements

Operating System: A dedicated development machine running Ubuntu 22.04 or 24.04 LTS (native installation highly recommended, or a performance-allocated WSL2 environment on Windows 11).

Hardware Specifications: Multi-core x86-64 CPU (minimum 8 physical cores recommended for Yocto compilation acceleration), 16GB RAM minimum (32GB preferred), and at least 150GB to 250GB of free high-speed SSD storage. No physical target hardware boards are required—all embedded environments are fully emulated via QEMU.

Software Stack: Docker Engine and Git must be installed on your build host prior to beginning Module 1.

Prior Knowledge: Intermediate familiarity with C/C++ programming and regular command-line operations (navigating directories, scripting fundamentals). No prior kernel-level development, board support package (BSP) writing, or systems-architecture experience required; the course scales linearly from basic execution to enterprise-grade mastery.

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