📄 main.c.bak
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/* * linux/init/main.c * * (C) 1991 Linus Torvalds */#define __LIBRARY__#include <unistd.h>#include <time.h>/* * we need this inline - forking from kernel space will result * in NO COPY ON WRITE (!!!), until an execve is executed. This * is no problem, but for the stack. This is handled by not letting * main() use the stack at all after fork(). Thus, no function * calls - which means inline code for fork too, as otherwise we * would use the stack upon exit from 'fork()'. * * Actually only pause and fork are needed inline, so that there * won't be any messing with the stack from main(), but we define * some others too. */static inline _syscall0(int,fork)static inline _syscall0(int,pause)static inline _syscall1(int,setup,void *,BIOS)static inline _syscall0(int,sync)#include <linux/tty.h>#include <linux/sched.h>#include <linux/head.h>#include <asm/system.h>#include <asm/io.h>#include <stddef.h>#include <stdarg.h>#include <unistd.h>#include <fcntl.h>#include <sys/types.h>#include <linux/fs.h>static char printbuf[1024]; /*内核显示信息缓冲*/extern int vsprintf();extern void init(void);extern void blk_dev_init(void);extern void chr_dev_init(void);extern void hd_init(void);extern void floppy_init(void);extern void mem_init(long start, long end);extern long rd_init(long mem_start, int length);extern long kernel_mktime(struct tm * tm);extern long startup_time;/* * This is set up by the setup-routine at boot-time */#define EXT_MEM_K (*(unsigned short *)0x90002) /*1mb以后的扩展内存大小(kb)*/#define DRIVE_INFO (*(struct drive_info *)0x90080)/*硬盘参数表的32 字节内容*/#define ORIG_ROOT_DEV (*(unsigned short *)0x901FC)/*根文件系统所在设备号*//* * Yeah, yeah, it's ugly, but I cannot find how to do this correctly * and this seems to work. I anybody has more info on the real-time * clock I'd be interested. Most of this was trial and error, and some * bios-listing reading. Urghh. */#define CMOS_READ(addr) ({ /*读取CMOS实时时钟信息*/outb_p(0x80|addr,0x70); \inb_p(0x71); \})#define BCD_TO_BIN(val) ((val)=((val)&15) + ((val)>>4)*10) /*bcd码(以4bit表示一个10进制数)转成2进制数*/static void time_init(void) /*读取CMOS实时时钟信息作为开机时间,并保存进startup_time中*/{ struct tm time; do { time.tm_sec = CMOS_READ(0); /*读取当前的秒(为bcd码)*/ time.tm_min = CMOS_READ(2); /*读取当前的分钟(为bcd码)*/ time.tm_hour = CMOS_READ(4); time.tm_mday = CMOS_READ(7); time.tm_mon = CMOS_READ(8); time.tm_year = CMOS_READ(9); } while (time.tm_sec != CMOS_READ(0)); BCD_TO_BIN(time.tm_sec);/*bcd转2进制*/ BCD_TO_BIN(time.tm_min); BCD_TO_BIN(time.tm_hour); BCD_TO_BIN(time.tm_mday); BCD_TO_BIN(time.tm_mon); BCD_TO_BIN(time.tm_year); time.tm_mon--;/*月份0-11*/ startup_time = kernel_mktime(&time);/*计算从1970/1/1/0:00起至开机为止的时间(秒)*/}static long memory_end = 0; /*物理内存大小*/static long buffer_memory_end = 0;/*高速缓冲区末端地址*/static long main_memory_start = 0;/*主内存开始位置*/struct drive_info { char dummy[32]; } drive_info;/*硬盘参数表信息*/void main(void) /* This really IS void, no error here. */{ /* The startup routine assumes (well, ...) this *//* * Interrupts are still disabled. Do necessary setups, then * enable them */ ROOT_DEV = ORIG_ROOT_DEV; drive_info = DRIVE_INFO; memory_end = (1<<20) + (EXT_MEM_K<<10);/*物理内存大小=1mb+扩展内存(kb)×1024*/ memory_end &= 0xfffff000; /*忽略不到1页(4kb)的内存*/ if (memory_end > 16*1024*1024) /*物理内存大小>16mb,按16mb计算*/ memory_end = 16*1024*1024; if (memory_end > 12*1024*1024) /*物理内存大小>12mb,设缓冲区末端=4mb*/ buffer_memory_end = 4*1024*1024; else if (memory_end > 6*1024*1024) /*物理内存大小>6mb,设缓冲区末端=2mb*/ buffer_memory_end = 2*1024*1024; else buffer_memory_end = 1*1024*1024; /*否则,设缓冲区末端=1mb*/ main_memory_start = buffer_memory_end; /*主内存起始位置=缓冲区末端*/#ifdef RAMDISK main_memory_start += rd_init(main_memory_start, RAMDISK*1024);/*若在makefile中定义了虚拟盘符号,则此时从主内存中分配*/#endif mem_init(main_memory_start,memory_end);/*主内存初始化(memory.c)*/ trap_init(); /*陷阱门(硬件中断向量)初始化(traps.c)*/ blk_dev_init(); /*块设备初始化(ll_rw_blk.c)*/ chr_dev_init(); /*字符设备初始化(tty_io.c)*/ tty_init(); /*tty初始化(tty_io.c)*/ time_init(); /*设置开机时间(76行)*/ sched_init(); /*调度程序初始化(sched.c)*//*对任务0的运行环境进行了设置,包括人工预先设置好的任务0的PCB、在GDT中填入任务0的TSS和LDT,并分别把他们加载到任务寄存器tr和局部段描述符寄存器ldtr中*/ buffer_init(buffer_memory_end); /*缓冲管理初始化,建立内存链表等(buffer.c)*/ hd_init(); /*硬盘初始化(hd.c)*/ floppy_init(); /*软驱初始化(flopy.c)*/ sti(); /*所有初始化完成,开中断*/ move_to_user_mode();/*移动到任务0中执行,此时进程0出现*/ if (!fork()) {/*首次调用fork()创建进程1*/ /* we count on this going ok */ init();/*加载根文件系统*//*init()将在进程1中执行*/ }/* * NOTE!! For any other task 'pause()' would mean we have to get a * signal to awaken, but task0 is the sole exception (see 'schedule()') * as task 0 gets activated at every idle moment (when no other tasks * can run). For task0 'pause()' just means we go check if some other * task can run, and if not we return here. */ for(;;) pause();}static int printf(const char *fmt, ...)/*产生格式化信息并输出到标准设备stdout(1),即屏幕上的显示,该程序使用vsprintf()将格式化的字符串放入printbuf缓冲区,然后用write()将缓冲区的内容输出到标准设备stdout(1)*/{ va_list args; int i; va_start(args, fmt); write(1,printbuf,i=vsprintf(printbuf, fmt, args)); va_end(args); return i;}static char * argv_rc[] = { "/bin/sh", NULL };/**/static char * envp_rc[] = { "HOME=/", NULL };static char * argv[] = { "-/bin/sh",NULL };static char * envp[] = { "HOME=/usr/root", NULL };void init(void)/*尚未阅读!*/{ int pid,i; setup((void *) &drive_info);/*hd.c,71*//*读取硬盘参数包括分区表信息并安装根文件系统*/ (void) open("/dev/tty0",O_RDWR,0);/*tty0对应终端控制台*//*设置进程1的标准输入*/ (void) dup(0);/*设置进程1的标准输出*/ (void) dup(0);/*设置进程1的标准出错输出*/ printf("%d buffers = %d bytes buffer space\n\r",NR_BUFFERS, NR_BUFFERS*BLOCK_SIZE); printf("Free mem: %d bytes\n\r",memory_end-main_memory_start); if (!(pid=fork())) {/*新建一子进程,首次执行shell*/ close(0); if (open("/etc/rc",O_RDONLY,0)) _exit(1); execve("/bin/sh",argv_rc,envp_rc); _exit(2); } if (pid>0) while (pid != wait(&i))/*父进程等待子进程结束*/ /* nothing */; while (1) {/*死循环*/ if ((pid=fork())<0) {/*创建一新进程并执行shell*/ printf("Fork failed in init\r\n"); continue; } if (!pid) { close(0);close(1);close(2); setsid(); (void) open("/dev/tty0",O_RDWR,0); (void) dup(0); (void) dup(0); _exit(execve("/bin/sh",argv,envp)); } while (1) if (pid == wait(&i)) break; printf("\n\rchild %d died with code %04x\n\r",pid,i); sync(); } _exit(0); /* NOTE! _exit, not exit() */}
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