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内容简介:
If you are an experienced C programmer with a working knowledge of UNIX, you cannot afford to be without this up-to -date tutorial on the system call interface and the most important functions found in the ANSI C library. Richard Stevens describes more than 200 system calls and functions; since he believes the best way to learn code is to read code,a brief example accompanies each de*ion. Building upon information presented in the first 15 chapters, the author offers chapter-long examples teaching you how to create a database library, a PostScript printer driver, a modem dialer, and a program that runs other programs under a pseudo terminal. To make your analysis and understanding ofthis code even easier, and to allow you to modify it, all of the code in the book is available via UUNET. Advanced Programming in the UNIX Environment is applicable to all major UNIX releases, especially System V Release $ and the latest release of 4.3BSD, including 386BSD. These real-world implementations allow you to more clearly understand the status of the current and future standards,including IEEE POSIX and XPG3.
书籍目录:
Chapter 1. Introduction
1.1 Introduction
1.2 Logging In
1.3 Files and Directories
1.4 Input and Output
1.5 Programs and Processes
1.6 ANSI C Features
1.7 Error Handling
1.8 User Identification
1.9 Signals
1.10 Unix Time Values
1.11 System Calls and Library Functions
1.12 Summary
Chapter 2. Unix Standardization and Implementations
2.1 Introduction
2.2 Unix Standardization
2.3 Unix Implementations
2.4 Relationship of Standards and Implementations
2.5 Limits
2.6 Feature Test Macros
2.7 Primitive System Data Types
2.8 Conflicts Between Standards
2.9 Summary
Chapter 3. FiIe I/O
3.1 Introduction
3.2 File Descriptors
3.3 open Function
3.4 creat Function
3.5 close Function
3.6 lseek Function
3.7 read Function
3.8 write Function
3.9 I/O Efficiency
3.10 File Sharing
3.11 Atomic Operations
3.12 dup and dup2 Functions
3.13 fcntl Function
3.14 ioctl Function
3.15 /dev/fd
3.16 Summary
Chapter 4. Files and Directories
4.1 Introduction
4.2 stat, fstat, and lstat Functions
4.3 File Types
4.4 Set-User-ID and Set-Group-lD
4.5 File Access Permissions
4.6 Ownership of New Files and Directories
4.7 access Function
4.8 umask Function
4.9 chmod and fchmod Functions
4.10 Sticky Bit 88
4.11 chown, fchown, and lchown Functions
4.12 File Size
4.13 File Truncation
4.14 Fijesystems
4.15 link, unlink, remove, and rename Functions
4.16 Symbolic Links
4.17 symlink and readlink Functions
4.18 File Times
4.19 utime Function
4.20 mkdir and rmdir Functions
4.21 Reading Directories
4.22 chdir, fchdir, and getcwd Functions
4.23 Special Device Files
4.24 sync and fsync Functions
4.25 Summary of File Access Permission Bits
4.26 Summary
Chapter 5. Standard I/O Library
5.1 Introduction
5.2 Streams and FILE Objects
5.3 Standard Input, Standard Output, and Standard Error
5.4 Buffering
5.5 Opening a Stream
5.6 Reading and Writing a Stream
5.7 Line-at-a-Time I/O
5.8 Standard I/O Efficiency
5.9 Binary I/O
5.10 Posltioning a Stream
5.11 Formatted I/O
5.12 Implementation Details
5.13 Temporary Files
5.14 Alternatives to Standard I/O
5.15 Summary
Chapter 6. System Data Files and Information
6.1 Introduction
6.2 Password File
6.3 Shadow Passwords
6.4 Group File
6.5 Supplementary Group IDs
6.6 Other Data Files
6.7 Login Accounting
6.8 System Identification
6.9 Time and Date Routines
6.10 Summary
Chapter 7. The Environment of a Unix Process
7.1 Introduction
7.2 main Function
7.3 Process Termination
7.4 Command-Line Arguments
7.5 Environment List
7.6 Memory Layout of a C Program
7.7 Shared Libraries
7.8 Memory Allocation
7.9 Environment Variables
7.10 set jmp and ionqjmp Functions
7.11 qetrlimit and setrlimit Functions
7.12 Summary
Chapter 8. Process Control
8.1 Introduction
8.2 Process Identifiers
8.3 fork Function
8.4 vfork Function
8.5 exit Functions
8.6 wait and waitpid Functions
8.7 wait3 and wait4 Functions
8.8 Race Conditions
8.9 exec Functions
8.10 Changing User IDs and Group IDs
8.11 Interpreter Files
8.12 system Function
8.13 Process Accounting
8.14 User Identification
8.15 Process Times
8.16 Summary
Chapter 9. Process Relationships
9.1 Introduction
9.2 Terminal Logins
9.3 Network Logins
9.4 Process Groups
9.5 Sessions
9.6 Controlling Terminal
9.7 tcgetpqrp and tcsetpgrp Functions
9.8 Job Control
9.9 Shell Execution of Programs
9.10 Orphaned Process Groups
9.11 4.3+BSD Implementation
9.12 Summary
Chapter 10. Signals
10.1 Introduction
10.2 Signal Concepts
10.3 signal Function
10.4 Unreliable Signals
10.5 Interrupted System Calls
10.6 Reentrant Functions
10.7 SIGCLD Semantics
10.8 Reliable Signal Terminology and Semantics
10.9 kill and ra1se Functions
10.10 alarm and pause Functions
10.11 Signal Sets
10.12 siqprocmask Function
10.13 siqpending Function
10.14 sigaction Function
10.15 sigsetjmp and siglongjmp Functions
10.16 siqsuspend Function
10.17 abort Function
10.18 system Function
10.19 sleep Function
10.20 Job-Control Signals
10.21 Addltional Features
10.22 Summary
Chapter 11. Terminal I/O
11.1 Introduction
11.2 Overview
11.3 Special Input Characters
11.4 Getting and Setting Terminal Attributes
11.5 Terminal Option Flags
11.6 stty Command
11.7 Baud Rate Functions
11.8 Line Control Functions
11.9 Terminal Identification
11.10 Canonical Mode
11.11 Noncanonical Mode
11.12 Terminal Window Size
11.13 termcap, terminfo. and curses
11.14 Summary
Chapter 12. Advanced I/O
12.1 Introduction
12.2 Nonblocking I/O
12.3 Record Locking
12.4 Streams
12 5 I/O Multiplexing
12.6 Asynchronous I/O
12.7 readv and writev Functions
12.8 readn and writen Functions
12.9 Memory Mapped I/O
12.10 Summary
Chapter 13. Daemon Processes
13.1 Introduction
13.2 Daemon Characteristics
13.3 Coding Rules
13.4 Error Loggjng
13.5 Client-Server Model
13.6 Summary
Chapter 14. Interprocess Communication
14.1 Introduction
14.2 Pipes
14.3 popen and pciose Functions
14.4 Coprocesses
14.5 FIFOs
14.6 System V IPC
14.7 Message Queues
14.8 Semaphores
14.9 Shared Memory
14.10 Client-Server Properties
14.11 Summary
Chapter 15. Advanced Interprocess Communication
15.1 Introduction
15.2 Stream Pipes
15.3 Passing File Descriptors
15.4 An Open Server, Version 1
15.5 Client--Server Connection Functions
15.6 An Open Server, Version 2
15.7 Summary
Chapter 16. A Database Library
16.1 Introduction
16.2 History
16.3 The Library
16.4 Implementation Overview
16.5 Centralized or Decentralized?
16.6 Concurrency
16.7 Source Code
16.8 Performance
16.9 Summary
Chapter 17. Communicating with a PostScript Printer
17.1 Introduction
17.2 PostScript Communication Dynamics
17.3 Printer Spooling
17.4 Source Code
17.5 Summary
Chapter 18. A Modem Dialer
18.1 Introduction
18.2 History
18.3 Program Design
18.4 Data Files
18.5 Server Design
18.6 Server Source Code
18.7 Client Design
18.8 Client Source Code
18.9 Summary
Chapter 19. Pseudo Terminals
19.1 Introduction
19.2 Overview
19.3 Opening Pseudo-Terminal Devices
19.4 pty_fork Function
19.5 pty Program
19.6 Using the pty Program
19.7 Advanced Features
19.8 Summary
Appendix A. Function Prototypes
Appendix B. Miscellaneous Source Code
B.1 Our Header File
B.2 Standard Error Routines
Appendix C. Solutions to Selected Exercises
Bibliography
Index
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原文赏析:
Parent and the child share a file table entry for every open descriptor.
大多数UNIX调试程序都使用core文件以检查进程终止时的状态。
将进程的信号屏蔽字设置为由sigmask指向的值。在捕捉到一个信号或发生了一个会终止该进程的信号之前,该进程被挂起。如果捕捉到一个信号而且从该信号处理程序返回,则sigsuspend返回,并且将该进程的信号屏蔽字设置为调用sigsuspend之前的值。
与应用程序使用文件描述符(fd)访问文件一样,访问套接字也需要使用套接字描述符,其在unix系统中是用文件描述符实现的。
在AF_INET通信域中套接字SOCK_STREAM的默认协议是TCP,SOCK_DGRAM的默认协议是UDP。
不同处理器架构支持不同的字节序,小端(little-endian)freebsd linux on intel pentium,大端(big-endian)mac os on power pc solaris on sun sparc,有些处理器可以配置大端和小端,更加混乱。
TCP/IP 采用大端字节序。对于TCP/IP,地址是使用网络字节序来表示,所以应用程序有时候需要在处理器的字节序和网络字节序之间转换。
uint32_t htonl(uint32_t hostint32);
uint16_t htons(uint16_t hostint16);
uint32_t ntohl(uint32_t netint32);
uint16_t ntohsl(uint16_t netint16);
h 代表host
n 代表network
l 代表 long
s 代表 short
由open返回的文件描述符一定是最小的未用描述符数值。这一点被某些应用程序用来在标准输入,标准输出或标准错误输出上打开新的文件。
其中,atexit的参数是一个函数地址,当调用此函数时无需向它传送任何参数,也不期望它返回一个值。exit以登记这些函数的相反顺序调用它们。同一函数如若登记多次,则也被调用多次。
其它内容:
编辑推荐
与大多数其他操作系统类似,Unix对运行其上的程序提供了大量服务,此外,本书与其他Unix编程书籍不同的是,本书除了讲述Unix系统的编程接口——即系统调用接口和由标准C函数库提供的大量函数之外,还通过许多例子和基本原理对Unix编程环境做了更深入的解释和剖析,如怎样创建数据库、页面描述语言的打印机驱动程序、现代拨号程序以及 代理进程、处理机间通信、伪终端程序等。本书作者是Unix研究领域的专家,而本书更 被誉为是该领域的圣经宝典,相信每一位读者都会在学习本书的过程中体会到它的价值 所在。
书籍介绍
If you are an experienced C programmer with a working knowledge of UNIX, you cannot afford to be without this up-to -date tutorial on the system call interface and the most important functions found in the ANSI C library. Richard Stevens describes more than 200 system calls and functions; since he believes the best way to learn code is to read code,a brief example accompanies each description. Building upon information presented in the first 15 chapters, the author offers chapter-long examples teaching you how to create a database library, a PostScript printer driver, a modem dialer, and a program that runs other programs under a pseudo terminal. To make your analysis and understanding ofthis code even easier, and to allow you to modify it, all of the code in the book is available via UUNET. Advanced Programming in the UNIX Environment is applicable to all major UNIX releases, especially System V Release the latest release of 4.3BSD, including 386BSD. These real-world implementations allow you to more clearly understand the status of the current and future standards,including IEEE POSIX and XPG3.
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