1 /* 2 * Copyright (c) 1982, 1986, 1989 Regents of the University of California. 3 * All rights reserved. 4 * 5 * Redistribution and use in source and binary forms are permitted 6 * provided that the above copyright notice and this paragraph are 7 * duplicated in all such forms and that any documentation, 8 * advertising materials, and other materials related to such 9 * distribution and use acknowledge that the software was developed 10 * by the University of California, Berkeley. The name of the 11 * University may not be used to endorse or promote products derived 12 * from this software without specific prior written permission. 13 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR 14 * IMPLIED WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED 15 * WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. 16 * 17 * @(#)init_main.c 7.12 (Berkeley) 06/07/89 18 */ 19 20 #include "param.h" 21 #include "systm.h" 22 #include "user.h" 23 #include "kernel.h" 24 #include "mount.h" 25 #include "map.h" 26 #include "proc.h" 27 #include "vnode.h" 28 #include "seg.h" 29 #include "conf.h" 30 #include "buf.h" 31 #include "vm.h" 32 #include "cmap.h" 33 #include "text.h" 34 #include "clist.h" 35 #include "malloc.h" 36 #include "protosw.h" 37 #include "reboot.h" 38 #include "../ufs/quota.h" 39 40 #include "machine/pte.h" 41 #include "machine/reg.h" 42 #include "machine/cpu.h" 43 44 int cmask = CMASK; 45 extern int (*mountroot)(); 46 /* 47 * Initialization code. 48 * Called from cold start routine as 49 * soon as a stack and segmentation 50 * have been established. 51 * Functions: 52 * clear and free user core 53 * turn on clock 54 * hand craft 0th process 55 * call all initialization routines 56 * fork - process 0 to schedule 57 * - process 1 execute bootstrap 58 * - process 2 to page out 59 */ 60 main(firstaddr) 61 int firstaddr; 62 { 63 register int i; 64 register struct proc *p; 65 register struct pgrp *pg; 66 int s; 67 68 rqinit(); 69 #include "loop.h" 70 startup(firstaddr); 71 72 /* 73 * set up system process 0 (swapper) 74 */ 75 p = &proc[0]; 76 p->p_p0br = u.u_pcb.pcb_p0br; 77 p->p_szpt = 1; 78 p->p_addr = uaddr(p); 79 p->p_stat = SRUN; 80 p->p_flag |= SLOAD|SSYS; 81 p->p_nice = NZERO; 82 setredzone(p->p_addr, (caddr_t)&u); 83 u.u_procp = p; 84 MALLOC(pgrphash[0], struct pgrp *, sizeof (struct pgrp), 85 M_PGRP, M_NOWAIT); 86 if ((pg = pgrphash[0]) == NULL) 87 panic("no space to craft zero'th process group"); 88 pg->pg_id = 0; 89 pg->pg_hforw = 0; 90 pg->pg_mem = p; 91 pg->pg_jobc = 0; 92 p->p_pgrp = pg; 93 p->p_pgrpnxt = 0; 94 MALLOC(pg->pg_session, struct session *, sizeof (struct session), 95 M_SESSION, M_NOWAIT); 96 if (pg->pg_session == NULL) 97 panic("no space to craft zero'th session"); 98 pg->pg_session->s_count = 1; 99 pg->pg_session->s_leader = 0; 100 #ifdef KTRACE 101 p->p_tracep = NULL; 102 p->p_traceflag = 0; 103 #endif 104 /* 105 * These assume that the u. area is always mapped 106 * to the same virtual address. Otherwise must be 107 * handled when copying the u. area in newproc(). 108 */ 109 u.u_nd.ni_iov = &u.u_nd.ni_nd.nd_iovec; 110 u.u_nd.ni_iovcnt = 1; 111 u.u_nd.ni_base = (caddr_t)&u.u_nd.ni_dent; 112 u.u_nd.ni_rw = UIO_WRITE; 113 u.u_nd.ni_segflg = UIO_SYSSPACE; 114 u.u_ap = u.u_arg; 115 116 u.u_cmask = cmask; 117 u.u_lastfile = -1; 118 for (i = 0; i < sizeof(u.u_rlimit)/sizeof(u.u_rlimit[0]); i++) 119 u.u_rlimit[i].rlim_cur = u.u_rlimit[i].rlim_max = 120 RLIM_INFINITY; 121 /* 122 * configure virtual memory system, 123 * set vm rlimits 124 */ 125 vminit(); 126 127 /* 128 * Get vnodes for swapdev, argdev, and rootdev. 129 */ 130 ihinit(); 131 nchinit(); 132 if (bdevvp(swapdev, &swapdev_vp) || 133 bdevvp(argdev, &argdev_vp) || 134 bdevvp(rootdev, &rootvp)) 135 panic("can't setup bdevvp's"); 136 137 /* 138 * Setup credentials 139 */ 140 u.u_cred = crget(); 141 u.u_ngroups = 1; 142 143 #if defined(QUOTA) 144 qtinit(); 145 p->p_quota = u.u_quota = getquota(0, 0, Q_NDQ); 146 #endif 147 startrtclock(); 148 #if defined(vax) 149 #include "kg.h" 150 #if NKG > 0 151 startkgclock(); 152 #endif 153 #endif 154 155 /* 156 * Initialize tables, protocols, and set up well-known inodes. 157 */ 158 mbinit(); 159 cinit(); 160 #include "sl.h" 161 #if NSL > 0 162 slattach(); /* XXX */ 163 #endif 164 #if NLOOP > 0 165 loattach(); /* XXX */ 166 #endif 167 /* 168 * Block reception of incoming packets 169 * until protocols have been initialized. 170 */ 171 s = splimp(); 172 ifinit(); 173 domaininit(); 174 splx(s); 175 pqinit(); 176 xinit(); 177 swapinit(); 178 #ifdef GPROF 179 kmstartup(); 180 #endif 181 #ifdef NFS 182 nfsinit(); 183 #endif 184 185 /* kick off timeout driven events by calling first time */ 186 roundrobin(); 187 schedcpu(); 188 schedpaging(); 189 190 /* set up the root file system */ 191 if ((*mountroot)()) 192 panic("cannot mount root"); 193 /* 194 * Get vnode for '/'. 195 * Setup rootdir and u.u_cdir to point to it. 196 */ 197 if (VFS_ROOT(rootfs, &rootdir)) 198 panic("cannot find root vnode"); 199 u.u_cdir = rootdir; 200 u.u_cdir->v_count++; 201 VOP_UNLOCK(rootdir); 202 u.u_rdir = NULL; 203 boottime = time; 204 205 u.u_dmap = zdmap; 206 u.u_smap = zdmap; 207 208 enablertclock(); /* enable realtime clock interrupts */ 209 /* 210 * make init process 211 */ 212 213 proc[0].p_szpt = CLSIZE; 214 if (newproc(0)) { 215 expand(clrnd((int)btoc(szicode)), 0); 216 (void) swpexpand(u.u_dsize, (size_t)0, &u.u_dmap, &u.u_smap); 217 (void) copyout((caddr_t)icode, (caddr_t)0, (unsigned)szicode); 218 /* 219 * Return goes to loc. 0 of user init 220 * code just copied out. 221 */ 222 return; 223 } 224 /* 225 * make page-out daemon (process 2) 226 * the daemon has ctopt(nswbuf*CLSIZE*KLMAX) pages of page 227 * table so that it can map dirty pages into 228 * its address space during asychronous pushes. 229 */ 230 proc[0].p_szpt = clrnd(ctopt(nswbuf*CLSIZE*KLMAX + UPAGES)); 231 if (newproc(0)) { 232 proc[2].p_flag |= SLOAD|SSYS; 233 proc[2].p_dsize = u.u_dsize = nswbuf*CLSIZE*KLMAX; 234 pageout(); 235 /*NOTREACHED*/ 236 } 237 238 /* 239 * enter scheduling loop 240 */ 241 proc[0].p_szpt = 1; 242 sched(); 243 } 244 245 /* 246 * Initialize hash links for buffers. 247 */ 248 bhinit() 249 { 250 register int i; 251 register struct bufhd *bp; 252 253 for (bp = bufhash, i = 0; i < BUFHSZ; i++, bp++) 254 bp->b_forw = bp->b_back = (struct buf *)bp; 255 } 256 257 /* 258 * Initialize the buffer I/O system by freeing 259 * all buffers and setting all device buffer lists to empty. 260 */ 261 binit() 262 { 263 register struct buf *bp, *dp; 264 register int i; 265 int base, residual; 266 267 for (dp = bfreelist; dp < &bfreelist[BQUEUES]; dp++) { 268 dp->b_forw = dp->b_back = dp->av_forw = dp->av_back = dp; 269 dp->b_flags = B_HEAD; 270 } 271 base = bufpages / nbuf; 272 residual = bufpages % nbuf; 273 for (i = 0; i < nbuf; i++) { 274 bp = &buf[i]; 275 bp->b_dev = NODEV; 276 bp->b_bcount = 0; 277 bp->b_un.b_addr = buffers + i * MAXBSIZE; 278 if (i < residual) 279 bp->b_bufsize = (base + 1) * CLBYTES; 280 else 281 bp->b_bufsize = base * CLBYTES; 282 binshash(bp, &bfreelist[BQ_AGE]); 283 bp->b_flags = B_BUSY|B_INVAL; 284 brelse(bp); 285 } 286 } 287 288 /* 289 * Set up swap devices. 290 * Initialize linked list of free swap 291 * headers. These do not actually point 292 * to buffers, but rather to pages that 293 * are being swapped in and out. 294 */ 295 swapinit() 296 { 297 register int i; 298 register struct buf *sp = swbuf; 299 struct swdevt *swp; 300 int error; 301 302 /* 303 * Count swap devices, and adjust total swap space available. 304 * Some of this space will not be available until a swapon() 305 * system is issued, usually when the system goes multi-user. 306 */ 307 nswdev = 0; 308 nswap = 0; 309 for (swp = swdevt; swp->sw_dev; swp++) { 310 nswdev++; 311 if (swp->sw_nblks > nswap) 312 nswap = swp->sw_nblks; 313 } 314 if (nswdev == 0) 315 panic("swapinit"); 316 if (nswdev > 1) 317 nswap = ((nswap + dmmax - 1) / dmmax) * dmmax; 318 nswap *= nswdev; 319 /* 320 * If there are multiple swap areas, 321 * allow more paging operations per second. 322 */ 323 if (nswdev > 1) 324 maxpgio = (maxpgio * (2 * nswdev - 1)) / 2; 325 if (bdevvp(swdevt[0].sw_dev, &swdevt[0].sw_vp)) 326 panic("swapvp"); 327 if (error = swfree(0)) { 328 printf("swfree errno %d\n", error); /* XXX */ 329 panic("swapinit swfree 0"); 330 } 331 332 /* 333 * Now set up swap buffer headers. 334 */ 335 bswlist.av_forw = sp; 336 for (i=0; i<nswbuf-1; i++, sp++) 337 sp->av_forw = sp+1; 338 sp->av_forw = NULL; 339 } 340 341 /* 342 * Initialize clist by freeing all character blocks, then count 343 * number of character devices. (Once-only routine) 344 */ 345 cinit() 346 { 347 register int ccp; 348 register struct cblock *cp; 349 350 ccp = (int)cfree; 351 ccp = (ccp+CROUND) & ~CROUND; 352 for(cp=(struct cblock *)ccp; cp < &cfree[nclist-1]; cp++) { 353 cp->c_next = cfreelist; 354 cfreelist = cp; 355 cfreecount += CBSIZE; 356 } 357 } 358