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The intention of this [course_title] is to teach the design of Operating Systems through both academic study and by making modifications to a modern OS (Linux). The course covers include concepts of operating systems and systems programming; utility programs, subsystems, multiple-program systems; processes, interprocess communication, and synchronization; memory allocation, segmentation, paging; loading and linking, libraries; resource allocation, scheduling, performance evaluation; I/O systems, storage devices, file systems; basic networking, protocols, and distributed file systems, protection, security, and privacy.

Assessment

This course does not involve any written exams. Students need to answer 5 assignment questions to complete the course, the answers will be in the form of written work in pdf or word. Students can write the answers in their own time. Each answer needs to be 200 words (1 Page). Once the answers are submitted, the tutor will check and assess the work.

Certification

Edukite courses are free to study. To successfully complete a course you must submit all the assignment of the course as part of the assessment. Upon successful completion of a course, you can choose to make your achievement formal by obtaining your Certificate at a cost of £49.

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Course Credit: Open Culture

Course Curriculum

Module: 01
Computer Science 194 – Lecture 1: Class Structure/Introduction and What is an OS Anyway? 01:24:00
Computer Science 194 – Lecture 2: BDD, TDD, and all that 01:22:00
Computer Science 194 – Lecture 3: OS Structure: Monolithic, Microkernel, ExoKernel, Multi Kernel 01:21:00
Computer Science 194 – Lecture 4: OS Structure (Con’t): System Calls, Modules,/proc, Scheduling 01:23:00
Computer Science 194 – Lecture 5: Processes, Fork, Exec, Interprocess, Communication/Optimization 01:17:00
Module: 02
Computer Science 194 – Lecture 6: Parallelism (con’t), pThreads 01:18:00
Computer Science 194 – Lecture 7: How to work in a group. Synchronization 01:21:00
Computer Science 194 – Lecture 8: Synchronization approaches, Hardware synchronization 01:20:00
Computer Science 194 – Lecture 9: Process Scheduling: Round Robin, Priority Schedulers 01:19:00
Computer Science 194 – Lecture 10: Process Scheduling (con’t), O(1) Scheduler 01:19:00
Module: 03
Computer Science 194 – Lecture 11: Scheduling for QoS/Fairness: Earliest Deadline First 01:21:00
Computer Science 194 – Lecture 12: Dominant Resource Fairness (DRF), Two-Level Scheduling 01:20:00
Computer Science 194 – Lecture 13: Memory Management: Mechanisms on various architectures, NUMA 01:23:00
Computer Science 194 – Lecture 14: Virtual Memory Management, Swapping, Page Cache 01:23:00
omputer Science 194 – Lecture 15: Memory Management, Paging 01:18:00
Module: 04
Computer Science 194 – Lecture 16: Virtual Memory and Paging (continued) 01:20:00
Computer Science 194 – Lecture 17: Slab Allocator;Interrupts and Exceptions;Device Driver Structure 01:19:00
Computer Science 194 – Lecture 18: I/O Busses; Device Driver Structure (Continued) 01:19:00
Computer Science 194 – Lecture 19: Storage systems: Queueing Theory, Basic Concepts in 01:18:00
Computer Science 194 – Lecture 20: File Systems (cont): 01:15:00
Module: 05
Computer Science 194 – Lecture 21: Distributed Storage: NFS, AFS; Virtual FS Switch, File Cache 01:24:00
Computer Science 194 – Lecture 22: LBFS. Dynamo, Haystack,Virtual FS Switch, File Cache 01:20:00
Computer Science 194 – Lecture 23: TPM, Attestation, UEFI; Security: Selinux, HiStar 01:16:00
Computer Science 194 – Lecture 24: Protection (Con’t), 01:19:00
Computer Science 194 – Lecture 25: Optional Special Topics L 01:21:00
Assessment
Submit Your Assignment 00:00:00
Certification 00:00:00

Course Reviews

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