2010년 3월 26일 금요일

Data Structure 3번째 HW(번역)

1. Now we have four sorting algorithm implementations, which were originated from the 2nd week homework.
이제 우리는 2번째 과제의 4개의 정렬 알고리즘을 갖고있다.
This is the time for asymptotically analyze each program. Of course, you have to analyze them under best, worst and average cases.
이번엔 점근적인(asymptotically) 분석을 해보자. 물논, 최악, 최적, 평균적인 사건에 대해 분석해야 된다.

2. Since we have the actual implementations, we can measure the execution time of them.
실제로 구현을 해놓았기 때문에 우리는 각 알고리즘의 실행시간을 측정할수 있다.

As we learned in the class, insert profiling (time measuring) code into your programs, and measure the time to sort randomly generated data sets (Yes, you have to make random student object generating code, too!).
우리가 수업에서 배운 시간 측정용 코드를 너의 프로그램에 넣어라, 그리고 임의로 생성된 데이터셋을 정렬하는 시간을 측정하여라(우리는 랜덤한 학생 오브젝트를 만드는것도 수업시간에 해 보았다.)

The number of students to be sorted must vary from 10 to 1,000,000 by log-scale increment (10, 100, 1,000, 10,000, … on and on).
학생의 숫자는 10에서 1,000,000 까지 큼직큼직하게 변해야 한다(10, 100, 1,000, 10,000, 이런식으로,,)

Draw graphs illustrating the tendency of the execution time changes depending on the changes of the data set size.
데이터 셋의 사이즈에 따라 실행 시간이 변하는 추세를 나타내는 그래프를 그려라.

The source codes, analysis results and graphs have to be prepared in a PDF file.
소스코드와, 분석결과, 그리고 그래프는 반드시 PDF파일로 보내세요.

Data Structure 3번째 HW

1. Now we have four sorting algorithm implementations, which were originated from the 2nd week homework. This is the time for asymptotically analyze each program. Of course, you have to analyze them under best, worst and average cases.

2. Since we have the actual implementations, we can measure the execution time of them. As we learned in the class, insert profiling (time measuring) code into your programs, and measure the time to sort randomly generated data sets (Yes, you have to make random student object generating code, too!). The number of students to be sorted must vary from 10 to 1,000,000 by log-scale increment (10, 100, 1,000, 10,000, … on and on). Draw graphs illustrating the tendency of the execution time changes depending on the changes of the data set size.

The source codes, analysis results and graphs have to be prepared in a PDF file.

2010년 3월 21일 일요일

Eclipse 단축키

파란 블로그의 라삐 님께서 정리하신 Eclipse단축키 입니다.
원본 주소 : http://blog.paran.com/rabbii/14608118
 
Kind Category Name (Command) Key Sequence When Remark
Function
Key
File Rename F2 In Windows  
Edit Show Tooltip Description F2 Editing in Structured Text Editors  
Navigate Open Declaration F3 In Windows
Navigate Open Type Hierarchy F4 In Windows  
File Refresh F5 In Windows  
Run/Debug Debug Last Launched F11 In Windows  
Window Activate Editor F12 In Windows Editor창으로

←↓→
Arrow
Text Editing Scroll Line Down Ctrl+Down Editing Text  
Text Editing Scroll Line Up Ctrl+Up Editing Text  
Navigate Go to Previous Member Ctrl+Shift+Up Editing Java Source  
Navigate Go to Next Member Ctrl+Shift+Down Editing Java Source  
Navigate Backward History Alt+Left In Windows History
Navigate Forward History Alt+Right In Windows
Text Editing Move Lines Up Alt+Up Editing Text  
Text Editing Move Lines Down Alt+Down Editing Text  
Edit Select Previous Element Alt+Shift+Left Editing in Structured Text Editors Select…
Edit Select Next Element Alt+Shift+Right Editing in Structured Text Editors
Edit Select Enclosing Element Alt+Shift+Up Editing in Structured Text Editors
Edit Restore Last Selection Alt+Shift+Down Editing in Structured Text Editors
File
Control
File New Ctrl+N In Windows  
File New menu Alt+Shift+N In Windows  
File Close Ctrl+F4 In Windows  
File Close All Ctrl+Shift+F4 In Windows  
File Save Ctrl+S In Windows  
File Save All Ctrl+Shift+S In Windows  
File Print Ctrl+P In Windows  
File Properties Alt+Enter In Windows  
Goto
&
Move
Navigate Go to Line Ctrl+L Editing Text  
Navigate Go to Matching Bracket Ctrl+Shift+P Editing Java Source  
Navigate (Go to) Last Edit Location Ctrl+Q In Windows  
Navigate Previous Ctrl+, In Windows ★오류부분
   바로가기
Navigate Next Ctrl+. In Windows
Edit Find Next Ctrl+K Editing Text  
Edit Find Previous Ctrl+Shift+K Editing Text  
Eclipse Window Maximize Active View or Editor Ctrl+M In Windows 화면크게보 기
Window Next Editor Ctrl+F6 In Windows  
Window Previous Editor Ctrl+Shift+F6 In Windows  
Window Quick Switch Editor Ctrl+E In Windows  
Window Show Key Assist Ctrl+Shift+L In Dialogs and Windows ★키모음보 기
Comment Source Toggle Comment Ctrl+/, Ctrl+7, Ctrl+Shift+C Editing Java Source 한줄주석
Edit Add Block Comment Ctrl+Shift+/ Editing in Structured Text Editors 선택영역주 석
Edit Remove Block Comment Ctrl+Shift+\ Editing in Structured Text Editors  
Source Add Javadoc Comment Alt+Shift+J In Windows 주석자동추가
Java
Editor
Source Organize Imports Ctrl+Shift+O In Windows import 자동
Source Add Import Ctrl+Shift+M Editing Java Source import 커서
Source Indent Line Ctrl+I Editing Java Source  
Text Editing Open Structure Ctrl+F3 TapestryEditorScope  
Navigate Quick Outline Ctrl+O Editing Java Source  
Navigate Quick Hierarchy Ctrl+T Editing Java Source  
Edit Quick Fix Ctrl+1 Editing in Structured Text Editors ★빠른오류 수정
Eclipse
Editor
Navigate Open Resource Ctrl+Shift+R In Windows
Edit Find and Replace Ctrl+F In Windows  
Search Open Search Dialog Ctrl+H In Windows 자바찾기
Search References in Workspace Ctrl+Shift+G In Windows
Edit Content Assist Ctrl+Space In Dialogs and Windows
Edit Format Document Ctrl+Shift+F Editing in Structured Text Editors ★형식맞추 기
Text Editing To Lower Case Ctrl+Shift+Y Editing Text ★대소문자변경
Text Editing To Upper Case Ctrl+Shift+X Editing Text
Etc Edit Run Query command Ctrl+F9 Editing HQL  
Editor
Common
Key
Edit Select All Ctrl+A In Dialogs and Windows  
Edit Copy Ctrl+C, Ctrl+Insert In Dialogs and Windows  
Edit Cut Ctrl+X, Shift+Delete In Dialogs and Windows  
Edit Paste Ctrl+V, Shift+Insert In Dialogs and Windows  
Edit Redo Ctrl+Y In Windows  
Edit Undo Ctrl+Z In Windows  
Edit Delete Delete In Windows  
Text Editing Line End End Editing Text  
Text Editing Line Start Home Editing Text  
Text Editing Text Start Ctrl+Home Editing Text  
Text Editing Text End Ctrl+End Editing Text  


2010년 3월 20일 토요일

Data Structure 2번째 HW(내맘대로 분석 #2)

===================================================================================================
RankSort 분석
===================================================================================================

일단 Rank Sort 알고리즘의 소스를 보자.


다음으로 rank함수를 보자


마지막으로 rearrange함수를 보자



2010년 3월 18일 목요일

Data Structure 2번째 HW(내맘대로 분석)

===================================================================================================
문제 분석
===================================================================================================

음,, 일단 랭크소트가 무엇인지를 파악해야겠군,,,
최형이라면 알지도 모르지만, 혼자 해보는것도 재미있을것 같다,,
문제는 시간.

시간 복잡도의 경우도 “counting the comparison operations(비교 연산자 갯수 세기)”는 쉬운데 “counting the steps with the s/e and frequency table(스텝을 세어서 빈도분석)”법은,,,,, 서의성 교수님 시간이었지만, 전날 무리하는 바람에 못들었다..

공부할게 많네,,,

공간 사용에 대해서는 보통 정렬의 경우에 공간은 거의 차지하지 않지, 임시공간 1개 정도? (merge의 경우를 제외하면,, 저번에 보니까 merge도 새로 안만들고 어떻게 하는 모양이던데,, 나는 같은 크기의 배열을 2개 만들고 옮겨 다녔으니,,,,)

 뭐,,, 오늘부터 해봐야지..

Data Structure 2번째 HW(번역)

===================================================================================================
번역
===================================================================================================
1. Our textbook introduces another sorting algorithm called rank sort at page 80.
1. 우리의 교제에서는 또다른 정령 알고리즘인 rank정렬을 80페이지에서 소개하고 있다.
Make a rank sort program that sorts students by their name and print their scores along side the names in the sorted order.
Rank정렬을 이용하여 학생들을 그들의 이름으로 정렬하고, 그들의 점수를 정렬된 이름옆에 표시하는 프로그램을 작성하여라.
Student names and scores must be included in a Student object.
학생의 이름과 점수는 반드시 Student 오브젝트에 포함되도록 만들어져야 한다.
The data are input through keyboard and the number of students is flexible (use a sentinel).
입력받는 데이터는 키보드로 입력받도록 하고, 학생의 수는 자유롭게 입력 받을수 있도록 한다(sentinel은 보초라는 뜻인데,,,,).
Analyze the best case, worst case and average case space and time complexity of the program you made.
당신이 만든 프로그램에서 시,공간 복잡도를 최적, 최악, 평균적인 경우을 놓고 분석하여라.
For time complexity, use both “counting the comparison operations” and “counting the steps with the s/e and frequency table” approaches.
시간 복잡도의 경우 “counting the comparison operations(비교 연산자 갯수 세기)”와 “counting the steps with the s/e and frequency table(스텝을 세어서 빈도분석)”법을 모두 사용하여라.

2. Modify the program for problem 1 by replacing the sorting algorithm with bubble sort, insert sort and selection sort.
2. 1에서 만들었던 프로그램을 Bubble정렬과 Insert정렬, Selection정렬로 고쳐보아라.
Also, you have to analyze the best, worst and average case space and time complexity of each version.
또한 최적, 최악, 평균적인 경우의 시, 공간 복잡도를 각각 분석하여라.

* The source codes, analysis results and screen shots of your programs in working have to be prepared in a PDF file.
* 소스코드와 분석결과, 그리고 프로그램 작동의 스샷은 PDF파일로 작성하여라.