1*3591Swnj /* init_main.c 4.14 81/04/23 */ 226Sbill 326Sbill #include "../h/param.h" 426Sbill #include "../h/systm.h" 526Sbill #include "../h/dir.h" 626Sbill #include "../h/user.h" 726Sbill #include "../h/filsys.h" 826Sbill #include "../h/mount.h" 926Sbill #include "../h/map.h" 1026Sbill #include "../h/proc.h" 1126Sbill #include "../h/inode.h" 1226Sbill #include "../h/seg.h" 1326Sbill #include "../h/conf.h" 1426Sbill #include "../h/buf.h" 1526Sbill #include "../h/mtpr.h" 1626Sbill #include "../h/pte.h" 1726Sbill #include "../h/clock.h" 1826Sbill #include "../h/vm.h" 1926Sbill #include "../h/cmap.h" 20348Sbill #include "../h/text.h" 21878Sbill #include "../h/vlimit.h" 222769Swnj #include "../h/clist.h" 2326Sbill 2426Sbill /* 2526Sbill * Initialization code. 2626Sbill * Called from cold start routine as 2726Sbill * soon as a stack and segmentation 2826Sbill * have been established. 2926Sbill * Functions: 3026Sbill * clear and free user core 3126Sbill * turn on clock 3226Sbill * hand craft 0th process 3326Sbill * call all initialization routines 3426Sbill * fork - process 0 to schedule 3526Sbill * - process 2 to page out 3626Sbill * - process 1 execute bootstrap 3726Sbill * 3826Sbill * loop at loc 13 (0xd) in user mode -- /etc/init 3926Sbill * cannot be executed. 4026Sbill */ 4126Sbill main(firstaddr) 4226Sbill { 43361Sbill register int i; 442451Swnj register struct proc *p; 4526Sbill 4626Sbill rqinit(); 4726Sbill startup(firstaddr); 4826Sbill 4926Sbill /* 5026Sbill * set up system process 0 (swapper) 5126Sbill */ 522451Swnj p = &proc[0]; 532451Swnj p->p_p0br = (struct pte *)mfpr(P0BR); 542451Swnj p->p_szpt = 1; 552451Swnj p->p_addr = uaddr(p); 562451Swnj p->p_stat = SRUN; 572451Swnj p->p_flag |= SLOAD|SSYS; 582451Swnj p->p_nice = NZERO; 592451Swnj setredzone(p->p_addr, (caddr_t)&u); 602451Swnj u.u_procp = p; 6126Sbill u.u_cmask = CMASK; 62361Sbill for (i = 1; i < sizeof(u.u_limit)/sizeof(u.u_limit[0]); i++) 63870Sbill switch (i) { 64870Sbill 65870Sbill case LIM_STACK: 66870Sbill u.u_limit[i] = 512*1024; 67870Sbill continue; 68870Sbill case LIM_DATA: 69870Sbill u.u_limit[i] = ctob(MAXDSIZ); 70870Sbill continue; 71870Sbill default: 72870Sbill u.u_limit[i] = INFINITY; 73870Sbill continue; 74870Sbill } 753513Sroot p->p_maxrss = INFINITY/NBPG; 7626Sbill clkstart(); 7726Sbill 7826Sbill /* 7926Sbill * Initialize devices and 8026Sbill * set up 'known' i-nodes 8126Sbill */ 8226Sbill 8326Sbill ihinit(); 8492Sbill bhinit(); 8526Sbill cinit(); 8626Sbill binit(); 8726Sbill bswinit(); 8826Sbill iinit(); 8926Sbill rootdir = iget(rootdev, (ino_t)ROOTINO); 9026Sbill rootdir->i_flag &= ~ILOCK; 9126Sbill u.u_cdir = iget(rootdev, (ino_t)ROOTINO); 9226Sbill u.u_cdir->i_flag &= ~ILOCK; 9326Sbill u.u_rdir = NULL; 9426Sbill u.u_dmap = zdmap; 9526Sbill u.u_smap = zdmap; 9626Sbill 9726Sbill /* 98*3591Swnj * Set the scan rate and other parameters of the paging subsystem. 99*3591Swnj */ 100*3591Swnj setupclock(); 101*3591Swnj 102*3591Swnj /* 10326Sbill * make page-out daemon (process 2) 1042753Swnj * the daemon has ctopt(nswbuf*CLSIZE*KLMAX) pages of page 10526Sbill * table so that it can map dirty pages into 10626Sbill * its address space during asychronous pushes. 10726Sbill */ 10826Sbill 10926Sbill mpid = 1; 1102753Swnj proc[0].p_szpt = clrnd(ctopt(nswbuf*CLSIZE*KLMAX + UPAGES)); 11126Sbill proc[1].p_stat = SZOMB; /* force it to be in proc slot 2 */ 11226Sbill if (newproc(0)) { 11326Sbill proc[2].p_flag |= SLOAD|SSYS; 1142753Swnj proc[2].p_dsize = u.u_dsize = nswbuf*CLSIZE*KLMAX; 11526Sbill pageout(); 11626Sbill } 11726Sbill 11826Sbill /* 11926Sbill * make init process and 12026Sbill * enter scheduling loop 12126Sbill */ 12226Sbill 12326Sbill mpid = 0; 12426Sbill proc[1].p_stat = 0; 12526Sbill proc[0].p_szpt = CLSIZE; 12626Sbill if (newproc(0)) { 12726Sbill expand(clrnd((int)btoc(szicode)), P0BR); 1281787Sbill (void) swpexpand(u.u_dsize, 0, &u.u_dmap, &u.u_smap); 129135Sbill (void) copyout((caddr_t)icode, (caddr_t)0, (unsigned)szicode); 13026Sbill /* 13126Sbill * Return goes to loc. 0 of user init 13226Sbill * code just copied out. 13326Sbill */ 13426Sbill return; 13526Sbill } 13626Sbill proc[0].p_szpt = 1; 13726Sbill sched(); 13826Sbill } 13926Sbill 14026Sbill /* 14126Sbill * iinit is called once (from main) 14226Sbill * very early in initialization. 14326Sbill * It reads the root's super block 14426Sbill * and initializes the current date 14526Sbill * from the last modified date. 14626Sbill * 14726Sbill * panic: iinit -- cannot read the super 14826Sbill * block. Usually because of an IO error. 14926Sbill */ 15026Sbill iinit() 15126Sbill { 1522435Skre register struct buf *bp; 15326Sbill register struct filsys *fp; 1542875Swnj register int i; 15526Sbill 15626Sbill (*bdevsw[major(rootdev)].d_open)(rootdev, 1); 15726Sbill bp = bread(rootdev, SUPERB); 15826Sbill if(u.u_error) 15926Sbill panic("iinit"); 1602322Swnj bp->b_flags |= B_LOCKED; /* block can never be re-used */ 16126Sbill brelse(bp); 16226Sbill mount[0].m_dev = rootdev; 1632322Swnj mount[0].m_bufp = bp; 1642322Swnj fp = bp->b_un.b_filsys; 16526Sbill fp->s_flock = 0; 16626Sbill fp->s_ilock = 0; 16726Sbill fp->s_ronly = 0; 16826Sbill fp->s_lasti = 1; 16926Sbill fp->s_nbehind = 0; 1702875Swnj fp->s_fsmnt[0] = '/'; 1712875Swnj for (i = 1; i < sizeof(fp->s_fsmnt); i++) 1722875Swnj fp->s_fsmnt[i] = 0; 173870Sbill clkinit(fp->s_time); 17426Sbill bootime = time; 17526Sbill } 17626Sbill 17726Sbill /* 17826Sbill * Initialize the buffer I/O system by freeing 17926Sbill * all buffers and setting all device buffer lists to empty. 18026Sbill */ 18126Sbill binit() 18226Sbill { 18326Sbill register struct buf *bp; 18426Sbill register struct buf *dp; 18526Sbill register int i; 18626Sbill struct bdevsw *bdp; 187306Sbill struct swdevt *swp; 18826Sbill 1892322Swnj for (dp = bfreelist; dp < &bfreelist[BQUEUES]; dp++) { 1902322Swnj dp->b_forw = dp->b_back = dp->av_forw = dp->av_back = dp; 1912322Swnj dp->b_flags = B_HEAD; 1922322Swnj } 1932322Swnj dp--; /* dp = &bfreelist[BQUEUES-1]; */ 1942769Swnj for (i=0; i<nbuf; i++) { 19526Sbill bp = &buf[i]; 19626Sbill bp->b_dev = NODEV; 1972769Swnj bp->b_un.b_addr = buffers + i * BSIZE; 1982322Swnj bp->b_back = dp; 1992322Swnj bp->b_forw = dp->b_forw; 2002322Swnj dp->b_forw->b_back = bp; 2012322Swnj dp->b_forw = bp; 2022322Swnj bp->b_flags = B_BUSY|B_INVAL; 20326Sbill brelse(bp); 20426Sbill } 2052435Skre for (bdp = bdevsw; bdp->d_open; bdp++) 20626Sbill nblkdev++; 207306Sbill /* 208306Sbill * Count swap devices, and adjust total swap space available. 209306Sbill * Some of this space will not be available until a vswapon() 210306Sbill * system is issued, usually when the system goes multi-user. 211306Sbill */ 212306Sbill nswdev = 0; 213306Sbill for (swp = swdevt; swp->sw_dev; swp++) 214306Sbill nswdev++; 215306Sbill if (nswdev == 0) 216306Sbill panic("binit"); 217306Sbill nswap *= nswdev; 218306Sbill maxpgio *= nswdev; 219306Sbill swfree(0); 22026Sbill } 22126Sbill 22226Sbill /* 22326Sbill * Initialize linked list of free swap 22426Sbill * headers. These do not actually point 22526Sbill * to buffers, but rather to pages that 22626Sbill * are being swapped in and out. 22726Sbill */ 22826Sbill bswinit() 22926Sbill { 23026Sbill register int i; 2312769Swnj register struct buf *sp = swbuf; 23226Sbill 2332753Swnj bswlist.av_forw = sp; 2342769Swnj for (i=0; i<nswbuf-1; i++, sp++) 2352753Swnj sp->av_forw = sp+1; 2362753Swnj sp->av_forw = NULL; 23726Sbill } 2382746Swnj 2392746Swnj /* 2402746Swnj * Initialize clist by freeing all character blocks, then count 2412746Swnj * number of character devices. (Once-only routine) 2422746Swnj */ 2432746Swnj cinit() 2442746Swnj { 2452746Swnj register int ccp; 2462746Swnj register struct cblock *cp; 2472746Swnj register struct cdevsw *cdp; 2482746Swnj 2492746Swnj ccp = (int)cfree; 2502746Swnj ccp = (ccp+CROUND) & ~CROUND; 2512746Swnj for(cp=(struct cblock *)ccp; cp < &cfree[nclist-1]; cp++) { 2522746Swnj cp->c_next = cfreelist; 2532746Swnj cfreelist = cp; 2542746Swnj cfreecount += CBSIZE; 2552746Swnj } 2562746Swnj ccp = 0; 2572746Swnj for(cdp = cdevsw; cdp->d_open; cdp++) 2582746Swnj ccp++; 2592746Swnj nchrdev = ccp; 2602746Swnj } 261