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COMP 322: Fundamentals of Parallel Programming (Spring

...

2023)

 


Instructors

Instructor:

Mackale Joyner, DH 2063

Zoran Budimlić, DH 3003

TAs:
Adrienne Li, Austin Hushower, Claire Xu, Diep Hoang, Hunena Badat, Maki Yu, Mantej Singh, Rose Zhang, Victor Song, Yidi Wang  Admin Assistant:Annepha Hurlock, annepha@rice.edu , DH 3122, 713-348-5186  
Mohamed Abead, Chase Hartsell, Taha Hasan, Harrison Huang, Jerry Jiang, Jasmine Lee, Michelle Lee, Hung Nguyen, Quang Nguyen, Ryan Ramos, Oscar Reynozo, Delaney Schultz, Tina Wen, Raiyan Zannat, Kailin Zhang

Piazza site:

https://piazza.com/rice/

spring2022

spring2023/comp322 (Piazza is the preferred medium for all course communications)

Cross-listing:

ELEC 323

Lecture location:

Herzstein Amphitheater

(online 1st 2 weeks)

Lecture times:

MWF 1:00pm - 1:50pm

Lab locations:

Mon (Herzstein Amp), Tue (Keck 100

(online 1st 2 weeks

)

Lab times:

Mon  3:00pm - 3:50pm (

Austin, Claire

Raiyan, Oscar, Mohamed, Ryan, Michelle, Taha)

Wed

Tue 4:

30pm

00pm -

5

4:

20pm

50pm (

Hunena

Tina,

Mantej

Delaney,

Yidi

Chase,

Victor

Hung,

Rose

Jerry,

Adrienne

Kailin,

Diep, Maki

Jasmine)

Course Syllabus

A summary PDF file containing the course syllabus for the course can be found here.  Much of the syllabus information is also included below in this course web site, along with some additional details that are not included in the syllabus.

...

Lecture Schedule

 

...



Week

Day

Date (

2022

2023)

Lecture

Assigned Reading

Assigned Videos (see Canvas site for video links)

In-class Worksheets

Slides

Work Assigned

Work Due

Worksheet Solutions
 

1

Mon

Jan

10

09

Lecture 1: Introduction

  



worksheet1lec1-
slides  

 

 
slides  



WS1-solution
  


Wed

Jan

12

11

Lecture 2:  Functional Programming

GList.java 


worksheet2lec02-slides

 

 



WS2-solution
  


FriJan
14
13Lecture 3: Higher order functions

worksheet3 
 worksheet3 lec3-slides   

 

lec3-slides   



WS3-solution
 

2

Mon

Jan

17

16

No class: MLK

         










Wed

Jan

19

18

Lecture 4: Lazy Computation

LazyList.java

Lazy.java

 



worksheet4lec4-slides
  

 



WS4-solution
 


Fri

Jan

21

20

Lecture 5: Java Streams

 

 


worksheet5lec5-slidesHomework 1
 

WS5-solution
 

3MonJan
24
23

Lecture 6: Map Reduce with Java Streams

Module 1: Section 2.4Topic 2.4 Lecture, Topic 2.4 Demonstration  worksheet6lec6-slides

 

 



WS6-solution
  


Wed

Jan

26

25

Lecture 7: Futures

Module 1: Section 2.1Topic 2.1 Lecture , Topic 2.1 Demonstrationworksheet7lec7-slides

 

 



WS7-solution
  


Fri

Jan

28

27

Lecture 8:  Async, Finish, Computation Graphs

, Ideal Parallelism

Module 1: Sections 1.
2
1, 1.
3
2Topic 1.
2
1 Lecture, Topic 1.
2
1 Demonstration, Topic 1.
3
2 Lecture, Topic 1.
3
2 Demonstrationworksheet8
lec8
lec8-slides
  


WS8-solution
 

4

Mon
 


Jan
31
30 Lecture 9:
Async
Ideal Parallelism,
Finish,
Data-Driven Tasks 

Module 1: Section 1.

1

3, 4.5

 


Topic 1.

1

3 Lecture, Topic 1.

1

3 Demonstration, Topic 4.5 Lecture, Topic 4.5 Demonstration

worksheet9

lec9-
slides  
slides 

WS9-solution
  


WedFeb
02
01Lecture 10: Event-based programming model

 

   




worksheet10lec10-slides
 

Homework 1WS10-solution
  


FriFeb
04  worksheet11
03Lecture 11: GUI programming
as an example of event-based,
futures/callbacks in GUI programming
, Scheduling/executing computation graphs

Module 1: Section 1.4Topic 1.4 Lecture , Topic 1.4 Demonstrationworksheet11
lec11-slidesHomework 2
Homework 1

WS11-solution
 

5

Mon

Feb

07

06

Lecture 12:
Scheduling/executing computation graphs
Abstract performance metrics, Parallel Speedup, Amdahl's Law Module 1: Section 1.
4
5Topic 1.
4
5 Lecture , Topic 1.
4
5 Demonstrationworksheet12lec12-slides
  


WS12-solution
  


Wed

Feb

09

08

Lecture 13:

Parallel Speedup, Critical Path, Amdahl's Law

Accumulation and reduction. Finish accumulators

Module
Module
1: Section
1
2.
5
3

Topic

1

2.

5

3 Lecture

,

  Topic

1

2.

5

3 Demonstration

worksheet13lec13-slides
 
 
WS13-solution
  


Fri

Feb

11

10

No class: Spring Recess

 

 

       










6

Mon

Feb

14

13

Lecture 14:

Accumulation and reduction. Finish accumulators

Data Races, Functional & Structural Determinism

Module 1:
Section
Sections 2.
3
5, 2.6Topic 2.5 Lecture ,  Topic 2.5 Demonstration,  Topic 2.
3
6 Lecture,  Topic 2.
3
6 Demonstrationworksheet14lec14-slides
  


WS14-solution
 

 



Wed

Feb
16
15

Lecture 15:

Recursive Task Parallelism    

Limitations of Functional parallelism.
Abstract vs. real performance. Cutoff Strategy



worksheet15lec15-slides

 

 

 Fri



Homework 2WS15-solution
  


FriFeb
18
17

Lecture 16:

Data Races, Functional & Structural DeterminismModule 1: Sections 2.5, 2.6Topic 2.5 Lecture ,  Topic 2.5 Demonstration,  Topic 2.6 Lecture,  Topic 2.6 Demonstration

Recursive Task Parallelism  



worksheet16 lec16-slidesHomework 3
Homework 2

WS16-solution
 

7

Mon

Feb

21

20

Lecture 17: Midterm Review

   



lec17-slides
     





Wed

Feb

23  worksheet18

22

Lecture 18:

Limitations of Functional parallelism.
Abstract vs. real performance. Cutoff Strategy

Midterm Review




lec18-slides
  WS18-solution
 

 






Fri

Feb
25 
24 

Lecture 19:

Fork/Join programming model. OS Threads. Scheduler Pattern  Topic 2.7 Lecture, Topic 2.7 Demonstration, Topic 2.8 Lecture, Topic 2.8 Demonstration, 

Data-Parallel Programming model. Loop-Level Parallelism, Loop Chunking

Module 1: Sections 3.1, 3.2, 3.3Topic 3.1 Lecture, Topic 3.1 Demonstration , Topic 3.2 Lecture,  Topic 3.2 Demonstration, Topic 3.3 Lecture,  Topic 3.3 Demonstrationworksheet19lec19-slides
 
 8


WS19-solution
 

8

Mon

Feb

28

27

Lecture 20:

Confinement & Monitor Pattern. Critical sections
Global lock

Barrier Synchronization with Phasers

Module
2
1: Sections
5.1, 5.2, 5.6
3.4 Topic
5
3.
1
4 Lecture, Topic
5
3.
1 Demonstration, Topic 5.2 Lecture, Topic 5.2 Demonstration,
4 Demonstrationworksheet20lec20-slides      

WS20-solution
Topic 5.6 Lecture, Topic 5.6 Demonstrationworksheet20lec20-slides        WS20-solution  


Wed

Mar

02

01

Lecture 21:

  Atomic variables, Synchronized statements

Module 2: Sections 5.4, 7.2

Topic 5.4 Lecture, Topic 5.4 Demonstration, Topic 7.2 Lecture

Stencil computation. Point-to-point Synchronization with Phasers

Module 1: Sections 4.2, 4.3

Topic 4.2 Lecture, Topic 4.2 Demonstration, Topic 4.3 Lecture, Topic 4.3 Demonstrationworksheet21lec21-slides
  


WS21-solution
  


Fri

Mar

04

03

Lecture 22:

Parallel Spanning Tree, other graph algorithms 

Fuzzy Barriers with Phasers

Module 1: Section 4.1 Topic 4.1 Lecture, Topic 4.1 Demonstration
  
worksheet22lec22-slides
Homework 4

Homework 3

WS22-solution 


WS22-solution

9

Mon

Mar

07

06

Lecture 23:

Java Threads and LocksModule 2: Sections 7.1, 7.3Topic 7.1 Lecture, Topic 7.3 Lecture  

 Fork/Join programming model. OS Threads. Scheduler Pattern


Topic 2.7 Lecture, Topic 2.7 Demonstration, Topic 2.8 Lecture, Topic 2.8 Demonstration

worksheet23 lec23-slides
 

Homework 3 (CP 1)

WS23-solution
 


Wed

Mar 08

 

Wed

Mar 09

Lecture 24:

Java Locks - Soundness and progress guarantees  

Confinement & Monitor Pattern. Critical sections
Global lock

Module 2:
7
Sections 5.1, 5.2Topic
7
5.1 Lecture, Topic 5.1 Demonstration, Topic 5.2 Lecture, Topic 5.2 Demonstration, Topic 5.6 Lecture, Topic 5.6 Demonstrationworksheet24 lec24-slides
 

 

 



WS24-solution
 


Fri

Mar

11

10

 Lecture 25:
Dining Philosophers Problem  
 Atomic variables, Synchronized statementsModule 2: Sections 5.4, 7.
6
2Topic 5.4 Lecture, Topic 5.4 Demonstration, Topic 7.
6 Lecture
2 Lecture worksheet25lec25-slides
  


WS25-solution
  


Mon

Mar
14
13

No class: Spring Break

     

 

  


 






WedMar
16
15No class: Spring Break
    

 

   









Fri

Mar 17

No class: Spring Break

 

Fri

Mar 18

No class: Spring Break

     

 

  









10

Mon

Mar

21  

20

Lecture 26:

N-Body problem, applications and implementations 

Parallel Spanning Tree, other graph algorithms



worksheet26lec26-slides
  


WS26-solution
  


Wed

Mar

23

22

Lecture 27:

Read-Write Locks, Linearizability of Concurrent Objects

Java Threads and Locks

Module 2: Sections 7.
3
1, 7.
4
3Topic 7.
3
1 Lecture, Topic 7.
4
3 Lectureworksheet27lec27-slides

 


Homework 3 (CP 2)
 
WS27-solution
  


Fri

Mar

25

24

Lecture 28:

Message-Passing programming model with Actors

Java Locks - Soundness and progress guarantees

Module 2:
6.1, 6.2
Section 7.5Topic
6
7.
1 Lecture, Topic 6.1 Demonstration,   Topic 6.2 Lecture, Topic 6.2 Demonstration
5 Lectureworksheet28lec28-slides

 

 

 




WS28-solution
 

11

Mon

Mar

28

27

Lecture 29:

Active Object Pattern. Combining Actors with task parallelism 

 Dining Philosophers Problem

Module 2:
6
Section 7.
3,
6
.4
Topic
6
7.
3 Lecture, Topic
6
.3 Demonstration,   Topic 6.4
Lecture
, Topic 6.4 Demonstration
worksheet29lec29-slides
 

 



WS29-solution
  


Wed

Mar

30

29

Lecture 30: Task Affinity and locality. Memory hierarchy 

   


worksheet30lec30-slides

 


Homework 3 (All)WS30-solution
  


Fri

Apr 01

Mar 31

Lecture 31:

Data-Parallel Programming model. Loop-Level Parallelism, Loop ChunkingModule 1: Sections 3.1, 3.2, 3.3Topic 3.1 Lecture, Topic 3.1 Demonstration , Topic 3.2 Lecture,  Topic 3.2 Demonstration, Topic 3.3 Lecture,  Topic 3.3 Demonstration

Read-Write Locks, Linearizability of Concurrent Objects

Module 2: Sections 7.3, 7.4Topic 7.3 Lecture, Topic 7.4 Lectureworksheet31lec31-slides
Homework 5
Homework 4


WS31-solution
 

12

Mon

Apr

04

03

Lecture 32:
Barrier Synchronization with PhasersModule 1: Section 3.4Topic 3.4 Lecture,  Topic 3.4
Message-Passing programming model with ActorsModule 2: Sections 6.1, 6.2Topic 6.1 Lecture, Topic 6.1 Demonstration,   Topic 6.2 Lecture, Topic 6.2 Demonstrationworksheet32lec32-slides

 

 



WS32-solution
  


Wed

Apr

06

05

Lecture 33:

  Stencil computation. Point-to-point Synchronization with PhasersModule 1: Section 4.2, 4.3Topic 4.2 Lecture, Topic 4.2 Demonstration, Topic 4.3 Lecture,  Topic 4.3

 Active Object Pattern. Combining Actors with task parallelism

Module 2: Sections 6.3, 6.4

Topic 6.3 Lecture, Topic 6.3 Demonstration,   Topic 6.4 Lecture, Topic 6.4 Demonstration

worksheet33lec33-slides

 

 



WS33-solution
  


Fri

Apr

08

07

Lecture 34:

 Fuzzy Barriers with PhasersModule 1: Section 4.1Topic 4.1 Lecture, Topic 4.1 Demonstration

N-Body problem, applications and implementations 



worksheet34lec34-slides
  


WS34-solution
 

13

Mon

Apr

11

10

Lecture 35: Eureka-style Speculative Task Parallelism
  


worksheet35lec35-slides

 

 



WS35-solution
  


WedApr
13
12Lecture 36: Scan Pattern. Parallel Prefix Sum
  


worksheet36lec36-slides
  


WS36-solution
  


FriApr
15
14Lecture 37: Parallel Prefix Sum applications
  


worksheet37lec37-slides
    




14MonApr
18
17Lecture 38: Overview of other models and frameworks
   



lec38-slides
     





WedApr
20
19Lecture 39: Course Review (Lectures 19-38)
   lec39-slides  

 
 

lec39-slides
Homework 4
 



FriApr
22
21Lecture 40: Course Review (Lectures 19-38)
   



lec40-slides
 Homework 5  




Lab Schedule

Lab #

Date (

2022

2023)

Topic

Handouts

Examples

1

Jan

10

09

Infrastructure setup

lab0-handout

lab1-handout

 


-Jan 16No lab this week (MLK)

2Jan
17
23Functional Programminglab2-handout
 

3

Jan

24

30

Java Streams

Futures

lab3
-handout
 4Jan 31Futureslab45
-handout
 

4Feb
07
06Data-Driven Tasks
lab56
lab4-handout
 

5

Feb

14

13

Async / Finish

lab6
lab5-handout
 

-Feb
21
20No lab this week (Midterm Exam)
 


6

Feb 27

Loop Parallelism 

lab6-handoutimage kernels
 
7
Feb 288
Mar 06Recursive Task Cutoff Strategylab7-handout
 

-Mar
07
13No lab this week (Spring Break)

-Mar 20
Java Threadslab8-handout 

-

Mar 14
No lab this week
(Spring Break) 


8Mar 27Java Threadslab8-handout
 

9
Mar 21
Apr 03Concurrent Listslab9-handout
 

10

Apr 10

Mar 28

Actors

lab10-handout
 11

Apr 04

Loop Parallelism

lab11-handout 

-

Apr

11

17

No lab this week

  

-

Apr 18

No lab this week

  



Grading, Honor Code Policy, Processes and Procedures

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