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Degree Regulations & Programmes of Study 2010/2011
- ARCHIVE as at 1 September 2010 for reference only
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DRPS : Course Catalogue : School of Informatics : Informatics

Undergraduate Course: Compiler Optimisation (Level 10) (INFR10023)

Course Outline
School School of Informatics College College of Science and Engineering
Course type Standard Availability Available to all students
Credit level (Normal year taken) SCQF Level 10 (Year 4 Undergraduate) Credits 10
Home subject area Informatics Other subject area None
Course website http://www.inf.ed.ac.uk/teaching/courses/copt
Course description This course introduces students to modern techniques in efficient implementation of programming languages. Modern processors and systems are designed based on the assumption that a compiler will be able to effectively exploit architectural resources. This course will examine in detail techniques to exploit instruction level parallelism, memory hierarchy and higher level parallelism. It will examine classic static analysis approaches to these problems. The course work will require students to implement selected optimisations in a research compiler.
Entry Requirements
Pre-requisites Co-requisites
Prohibited Combinations Students MUST NOT also be taking Compiler Optimisation (Level 11) (INFR11032)
Other requirements Successful completion of Year 3 of an Informatics Single or Combined Honours Degree, or equivalent by permission of the School. Students are expected to be competent programmers in C, C++ or Java.
Additional Costs None
Information for Visiting Students
Pre-requisites None
Prospectus website http://www.ed.ac.uk/studying/visiting-exchange/courses
Course Delivery Information
Delivery period: 2010/11 Semester 2, Available to all students (SV1) WebCT enabled:  No Quota:  None
Location Activity Description Weeks Monday Tuesday Wednesday Thursday Friday
CentralLecture1-11 10:00 - 10:50
CentralLecture1-11 10:00 - 10:50
First Class Week 1, Monday, 10:00 - 10:50, Zone: Central. Room 2.07, Appleton Tower
Summary of Intended Learning Outcomes
1 - Understanding of inherent computational complexity of optimisation
2 - Development of optimizations via search based approaches
3 - Ability to parallelise programs via systematic algorithms
4 - Knowledge of dynamic and adaptive approaches to modern optimisation
Assessment Information
Written Examination 75
Assessed Assignments 25
Oral Presentations 0

Assessment
The coursework will consist of two practical compiler exercises where students will design and implement an optimisation and evaluate it on a set of benchmarks, writing a report on their work and findings.

If delivered in semester 1, this course will have an option for semester 1 only visiting undergraduate students, providing assessment prior to the end of the calendar year.
Please see Visiting Student Prospectus website for Visiting Student Assessment information
Special Arrangements
Not entered
Contacts
Course organiser Dr Amos Storkey
Tel: (0131 6)51 1208
Email: A.Storkey@ed.ac.uk
Course secretary Miss Kate Weston
Tel: (0131 6)50 2701
Email: Kate.Weston@ed.ac.uk
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copyright 2010 The University of Edinburgh - 1 September 2010 6:10 am