arm32_machdep.c revision 1.12 1 1.12 reinoud /* $NetBSD: arm32_machdep.c,v 1.12 2002/02/10 13:20:26 reinoud Exp $ */
2 1.1 chris
3 1.1 chris /*
4 1.1 chris * Copyright (c) 1994-1998 Mark Brinicombe.
5 1.1 chris * Copyright (c) 1994 Brini.
6 1.1 chris * All rights reserved.
7 1.1 chris *
8 1.1 chris * This code is derived from software written for Brini by Mark Brinicombe
9 1.1 chris *
10 1.1 chris * Redistribution and use in source and binary forms, with or without
11 1.1 chris * modification, are permitted provided that the following conditions
12 1.1 chris * are met:
13 1.1 chris * 1. Redistributions of source code must retain the above copyright
14 1.1 chris * notice, this list of conditions and the following disclaimer.
15 1.1 chris * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 chris * notice, this list of conditions and the following disclaimer in the
17 1.1 chris * documentation and/or other materials provided with the distribution.
18 1.1 chris * 3. All advertising materials mentioning features or use of this software
19 1.1 chris * must display the following acknowledgement:
20 1.1 chris * This product includes software developed by Mark Brinicombe
21 1.1 chris * for the NetBSD Project.
22 1.1 chris * 4. The name of the company nor the name of the author may be used to
23 1.1 chris * endorse or promote products derived from this software without specific
24 1.1 chris * prior written permission.
25 1.1 chris *
26 1.1 chris * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
27 1.1 chris * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
28 1.1 chris * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
29 1.1 chris * IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
30 1.1 chris * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
31 1.1 chris * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
32 1.1 chris * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
33 1.1 chris * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
34 1.1 chris * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
35 1.1 chris * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
36 1.1 chris * SUCH DAMAGE.
37 1.1 chris *
38 1.1 chris * Machine dependant functions for kernel setup
39 1.1 chris *
40 1.1 chris * Created : 17/09/94
41 1.1 chris * Updated : 18/04/01 updated for new wscons
42 1.1 chris */
43 1.1 chris
44 1.1 chris #include "opt_md.h"
45 1.1 chris #include "opt_pmap_debug.h"
46 1.1 chris
47 1.1 chris #include <sys/param.h>
48 1.1 chris #include <sys/systm.h>
49 1.1 chris #include <sys/reboot.h>
50 1.1 chris #include <sys/proc.h>
51 1.1 chris #include <sys/user.h>
52 1.1 chris #include <sys/kernel.h>
53 1.1 chris #include <sys/mbuf.h>
54 1.1 chris #include <sys/mount.h>
55 1.1 chris #include <sys/buf.h>
56 1.1 chris #include <sys/msgbuf.h>
57 1.1 chris #include <sys/device.h>
58 1.1 chris #include <uvm/uvm_extern.h>
59 1.1 chris #include <sys/sysctl.h>
60 1.1 chris
61 1.1 chris #include <dev/cons.h>
62 1.1 chris
63 1.7 thorpej #include <arm/arm32/katelib.h>
64 1.9 chris #include <arm/arm32/machdep.h>
65 1.1 chris #include <machine/bootconfig.h>
66 1.1 chris
67 1.1 chris #include "opt_ipkdb.h"
68 1.1 chris #include "opt_mdsize.h"
69 1.1 chris #include "md.h"
70 1.1 chris
71 1.1 chris struct vm_map *exec_map = NULL;
72 1.1 chris struct vm_map *mb_map = NULL;
73 1.1 chris struct vm_map *phys_map = NULL;
74 1.1 chris
75 1.1 chris extern int physmem;
76 1.1 chris
77 1.1 chris #ifndef PMAP_STATIC_L1S
78 1.1 chris extern int max_processes;
79 1.1 chris #endif /* !PMAP_STATIC_L1S */
80 1.1 chris #if NMD > 0 && defined(MEMORY_DISK_HOOKS) && !defined(MINIROOTSIZE)
81 1.1 chris extern u_int memory_disc_size; /* Memory disc size */
82 1.1 chris #endif /* NMD && MEMORY_DISK_HOOKS && !MINIROOTSIZE */
83 1.1 chris
84 1.1 chris pv_addr_t systempage;
85 1.1 chris pv_addr_t kernelstack;
86 1.1 chris
87 1.1 chris /* the following is used externally (sysctl_hw) */
88 1.1 chris char machine[] = MACHINE; /* from <machine/param.h> */
89 1.1 chris char machine_arch[] = MACHINE_ARCH; /* from <machine/param.h> */
90 1.1 chris
91 1.1 chris /* Our exported CPU info; we can have only one. */
92 1.1 chris struct cpu_info cpu_info_store;
93 1.1 chris
94 1.1 chris extern pt_entry_t msgbufpte;
95 1.1 chris caddr_t msgbufaddr;
96 1.1 chris extern paddr_t msgbufphys;
97 1.1 chris
98 1.1 chris int kernel_debug = 0;
99 1.1 chris
100 1.1 chris struct user *proc0paddr;
101 1.1 chris
102 1.12 reinoud /* exported variable to be filled in by the bootloaders */
103 1.1 chris char *booted_kernel;
104 1.1 chris
105 1.1 chris
106 1.1 chris /* Prototypes */
107 1.1 chris
108 1.1 chris u_long strtoul __P((const char *s, char **ptr, int base));
109 1.1 chris void data_abort_handler __P((trapframe_t *frame));
110 1.1 chris void prefetch_abort_handler __P((trapframe_t *frame));
111 1.1 chris void zero_page_readonly __P((void));
112 1.1 chris void zero_page_readwrite __P((void));
113 1.1 chris extern void configure __P((void));
114 1.1 chris
115 1.1 chris /*
116 1.1 chris * Debug function just to park the CPU
117 1.1 chris */
118 1.1 chris
119 1.1 chris void
120 1.1 chris halt()
121 1.1 chris {
122 1.1 chris while (1)
123 1.1 chris cpu_sleep(0);
124 1.1 chris }
125 1.1 chris
126 1.1 chris
127 1.1 chris /* Sync the discs and unmount the filesystems */
128 1.1 chris
129 1.1 chris void
130 1.1 chris bootsync(void)
131 1.1 chris {
132 1.1 chris static int bootsyncdone = 0;
133 1.1 chris
134 1.1 chris if (bootsyncdone) return;
135 1.1 chris
136 1.1 chris bootsyncdone = 1;
137 1.1 chris
138 1.1 chris /* Make sure we can still manage to do things */
139 1.1 chris if (GetCPSR() & I32_bit) {
140 1.1 chris /*
141 1.1 chris * If we get here then boot has been called without RB_NOSYNC
142 1.1 chris * and interrupts were disabled. This means the boot() call
143 1.1 chris * did not come from a user process e.g. shutdown, but must
144 1.1 chris * have come from somewhere in the kernel.
145 1.1 chris */
146 1.1 chris IRQenable;
147 1.1 chris printf("Warning IRQ's disabled during boot()\n");
148 1.1 chris }
149 1.1 chris
150 1.1 chris vfs_shutdown();
151 1.1 chris }
152 1.1 chris
153 1.1 chris /*
154 1.1 chris * A few functions that are used to help construct the page tables
155 1.1 chris * during the bootstrap process.
156 1.1 chris */
157 1.1 chris
158 1.1 chris void
159 1.1 chris map_section(pagetable, va, pa, cacheable)
160 1.1 chris vaddr_t pagetable;
161 1.1 chris vaddr_t va;
162 1.1 chris paddr_t pa;
163 1.1 chris int cacheable;
164 1.1 chris {
165 1.1 chris #ifdef DIAGNOSTIC
166 1.1 chris if (((va | pa) & (L1_SEC_SIZE - 1)) != 0)
167 1.1 chris panic("initarm: Cannot allocate 1MB section on non 1MB boundry\n");
168 1.1 chris #endif /* DIAGNOSTIC */
169 1.1 chris
170 1.1 chris if (cacheable)
171 1.1 chris ((u_int *)pagetable)[(va >> PDSHIFT)] =
172 1.6 rearnsha L1_SEC((pa & PD_MASK), pte_cache_mode);
173 1.1 chris else
174 1.1 chris ((u_int *)pagetable)[(va >> PDSHIFT)] =
175 1.1 chris L1_SEC((pa & PD_MASK), 0);
176 1.1 chris }
177 1.1 chris
178 1.1 chris
179 1.1 chris void
180 1.1 chris map_pagetable(pagetable, va, pa)
181 1.1 chris vaddr_t pagetable;
182 1.1 chris vaddr_t va;
183 1.1 chris paddr_t pa;
184 1.1 chris {
185 1.1 chris #ifdef DIAGNOSTIC
186 1.1 chris if ((pa & 0xc00) != 0)
187 1.1 chris panic("pagetables should be group allocated on pageboundry");
188 1.1 chris #endif /* DIAGNOSTIC */
189 1.1 chris
190 1.1 chris ((u_int *)pagetable)[(va >> PDSHIFT) + 0] =
191 1.1 chris L1_PTE((pa & PG_FRAME) + 0x000);
192 1.1 chris ((u_int *)pagetable)[(va >> PDSHIFT) + 1] =
193 1.1 chris L1_PTE((pa & PG_FRAME) + 0x400);
194 1.1 chris ((u_int *)pagetable)[(va >> PDSHIFT) + 2] =
195 1.1 chris L1_PTE((pa & PG_FRAME) + 0x800);
196 1.1 chris ((u_int *)pagetable)[(va >> PDSHIFT) + 3] =
197 1.1 chris L1_PTE((pa & PG_FRAME) + 0xc00);
198 1.1 chris }
199 1.1 chris
200 1.10 chris /* cats kernels have a 2nd l2 pt, so the range is bigger hence the 0x7ff etc */
201 1.1 chris vsize_t
202 1.1 chris map_chunk(pd, pt, va, pa, size, acc, flg)
203 1.1 chris vaddr_t pd;
204 1.1 chris vaddr_t pt;
205 1.1 chris vaddr_t va;
206 1.1 chris paddr_t pa;
207 1.1 chris vsize_t size;
208 1.1 chris u_int acc;
209 1.1 chris u_int flg;
210 1.1 chris {
211 1.1 chris pd_entry_t *l1pt = (pd_entry_t *)pd;
212 1.1 chris pt_entry_t *l2pt = (pt_entry_t *)pt;
213 1.1 chris vsize_t remain;
214 1.1 chris u_int loop;
215 1.1 chris
216 1.1 chris remain = (size + (NBPG - 1)) & ~(NBPG - 1);
217 1.1 chris #ifdef VERBOSE_INIT_ARM
218 1.1 chris printf("map_chunk: pa=%lx va=%lx sz=%lx rem=%lx acc=%x flg=%x\n",
219 1.1 chris pa, va, size, remain, acc, flg);
220 1.1 chris printf("map_chunk: ");
221 1.1 chris #endif
222 1.1 chris size = remain;
223 1.1 chris
224 1.1 chris while (remain > 0) {
225 1.1 chris /* Can we do a section mapping ? */
226 1.1 chris if (l1pt && !((pa | va) & (L1_SEC_SIZE - 1))
227 1.1 chris && remain >= L1_SEC_SIZE) {
228 1.1 chris #ifdef VERBOSE_INIT_ARM
229 1.1 chris printf("S");
230 1.1 chris #endif
231 1.1 chris l1pt[(va >> PDSHIFT)] = L1_SECPTE(pa, acc, flg);
232 1.1 chris va += L1_SEC_SIZE;
233 1.1 chris pa += L1_SEC_SIZE;
234 1.1 chris remain -= L1_SEC_SIZE;
235 1.1 chris } else
236 1.1 chris /* Can we do a large page mapping ? */
237 1.1 chris if (!((pa | va) & (L2_LPAGE_SIZE - 1))
238 1.1 chris && (remain >= L2_LPAGE_SIZE)) {
239 1.1 chris #ifdef VERBOSE_INIT_ARM
240 1.1 chris printf("L");
241 1.1 chris #endif
242 1.1 chris for (loop = 0; loop < 16; ++loop)
243 1.10 chris #ifndef cats
244 1.1 chris l2pt[((va >> PGSHIFT) & 0x3f0) + loop] =
245 1.1 chris L2_LPTE(pa, acc, flg);
246 1.10 chris #else
247 1.10 chris l2pt[((va >> PGSHIFT) & 0x7f0) + loop] =
248 1.10 chris L2_LPTE(pa, acc, flg);
249 1.10 chris #endif
250 1.1 chris va += L2_LPAGE_SIZE;
251 1.1 chris pa += L2_LPAGE_SIZE;
252 1.1 chris remain -= L2_LPAGE_SIZE;
253 1.1 chris } else
254 1.1 chris /* All we can do is a small page mapping */
255 1.1 chris {
256 1.1 chris #ifdef VERBOSE_INIT_ARM
257 1.1 chris printf("P");
258 1.1 chris #endif
259 1.10 chris #ifndef cats
260 1.1 chris l2pt[((va >> PGSHIFT) & 0x3ff)] = L2_SPTE(pa, acc, flg);
261 1.10 chris #else
262 1.10 chris l2pt[((va >> PGSHIFT) & 0x7ff)] = L2_SPTE(pa, acc, flg);
263 1.10 chris #endif
264 1.1 chris va += NBPG;
265 1.1 chris pa += NBPG;
266 1.1 chris remain -= NBPG;
267 1.1 chris }
268 1.1 chris }
269 1.1 chris #ifdef VERBOSE_INIT_ARM
270 1.1 chris printf("\n");
271 1.1 chris #endif
272 1.1 chris return(size);
273 1.1 chris }
274 1.1 chris
275 1.10 chris /* cats versions have larger 2 l2pt's next to each other */
276 1.1 chris void
277 1.1 chris map_entry(pagetable, va, pa)
278 1.1 chris vaddr_t pagetable;
279 1.1 chris vaddr_t va;
280 1.1 chris paddr_t pa;
281 1.1 chris {
282 1.10 chris #ifndef cats
283 1.1 chris ((pt_entry_t *)pagetable)[((va >> PGSHIFT) & 0x000003ff)] =
284 1.1 chris L2_PTE((pa & PG_FRAME), AP_KRW);
285 1.10 chris #else
286 1.10 chris ((pt_entry_t *)pagetable)[((va >> PGSHIFT) & 0x000007ff)] =
287 1.10 chris L2_PTE((pa & PG_FRAME), AP_KRW);
288 1.10 chris #endif
289 1.1 chris }
290 1.1 chris
291 1.1 chris
292 1.1 chris void
293 1.1 chris map_entry_nc(pagetable, va, pa)
294 1.1 chris vaddr_t pagetable;
295 1.1 chris vaddr_t va;
296 1.1 chris paddr_t pa;
297 1.1 chris {
298 1.10 chris #ifndef cats
299 1.1 chris ((pt_entry_t *)pagetable)[((va >> PGSHIFT) & 0x000003ff)] =
300 1.1 chris L2_PTE_NC_NB((pa & PG_FRAME), AP_KRW);
301 1.10 chris #else
302 1.10 chris ((pt_entry_t *)pagetable)[((va >> PGSHIFT) & 0x000007ff)] =
303 1.10 chris L2_PTE_NC_NB((pa & PG_FRAME), AP_KRW);
304 1.10 chris #endif
305 1.1 chris }
306 1.1 chris
307 1.1 chris
308 1.1 chris void
309 1.1 chris map_entry_ro(pagetable, va, pa)
310 1.1 chris vaddr_t pagetable;
311 1.1 chris vaddr_t va;
312 1.1 chris paddr_t pa;
313 1.1 chris {
314 1.10 chris #ifndef cats
315 1.1 chris ((pt_entry_t *)pagetable)[((va >> PGSHIFT) & 0x000003ff)] =
316 1.1 chris L2_PTE((pa & PG_FRAME), AP_KR);
317 1.10 chris #else
318 1.10 chris ((pt_entry_t *)pagetable)[((va >> PGSHIFT) & 0x000007ff)] =
319 1.10 chris L2_PTE((pa & PG_FRAME), AP_KR);
320 1.10 chris #endif
321 1.1 chris }
322 1.1 chris
323 1.1 chris
324 1.1 chris /*
325 1.1 chris * void cpu_startup(void)
326 1.1 chris *
327 1.1 chris * Machine dependant startup code.
328 1.1 chris *
329 1.1 chris */
330 1.1 chris
331 1.1 chris void
332 1.1 chris cpu_startup()
333 1.1 chris {
334 1.1 chris int loop;
335 1.1 chris paddr_t minaddr;
336 1.1 chris paddr_t maxaddr;
337 1.1 chris caddr_t sysbase;
338 1.1 chris caddr_t size;
339 1.1 chris vsize_t bufsize;
340 1.1 chris int base, residual;
341 1.1 chris char pbuf[9];
342 1.1 chris
343 1.1 chris proc0paddr = (struct user *)kernelstack.pv_va;
344 1.1 chris proc0.p_addr = proc0paddr;
345 1.1 chris
346 1.1 chris /* Set the cpu control register */
347 1.1 chris cpu_setup(boot_args);
348 1.1 chris
349 1.1 chris /* All domains MUST be clients, permissions are VERY important */
350 1.1 chris cpu_domains(DOMAIN_CLIENT);
351 1.1 chris
352 1.1 chris /* Lock down zero page */
353 1.1 chris zero_page_readonly();
354 1.1 chris
355 1.1 chris /*
356 1.1 chris * Give pmap a chance to set up a few more things now the vm
357 1.1 chris * is initialised
358 1.1 chris */
359 1.1 chris pmap_postinit();
360 1.1 chris
361 1.1 chris /*
362 1.1 chris * Initialize error message buffer (at end of core).
363 1.1 chris */
364 1.1 chris
365 1.1 chris /* msgbufphys was setup during the secondary boot strap */
366 1.1 chris for (loop = 0; loop < btoc(MSGBUFSIZE); ++loop)
367 1.3 chris pmap_kenter_pa((vaddr_t)msgbufaddr + loop * NBPG,
368 1.3 chris msgbufphys + loop * NBPG, VM_PROT_READ|VM_PROT_WRITE);
369 1.5 chris pmap_update(pmap_kernel());
370 1.1 chris initmsgbuf(msgbufaddr, round_page(MSGBUFSIZE));
371 1.1 chris
372 1.1 chris /*
373 1.1 chris * Identify ourselves for the msgbuf (everything printed earlier will
374 1.1 chris * not be buffered).
375 1.1 chris */
376 1.1 chris printf(version);
377 1.1 chris
378 1.1 chris format_bytes(pbuf, sizeof(pbuf), arm_page_to_byte(physmem));
379 1.1 chris printf("total memory = %s\n", pbuf);
380 1.1 chris
381 1.1 chris /*
382 1.1 chris * Find out how much space we need, allocate it,
383 1.1 chris * and then give everything true virtual addresses.
384 1.1 chris */
385 1.1 chris size = allocsys(NULL, NULL);
386 1.1 chris sysbase = (caddr_t)uvm_km_zalloc(kernel_map, round_page((vaddr_t)size));
387 1.1 chris if (sysbase == 0)
388 1.1 chris panic(
389 1.1 chris "cpu_startup: no room for system tables; %d bytes required",
390 1.1 chris (u_int)size);
391 1.1 chris if ((caddr_t)((allocsys(sysbase, NULL) - sysbase)) != size)
392 1.1 chris panic("cpu_startup: system table size inconsistency");
393 1.1 chris
394 1.1 chris /*
395 1.1 chris * Now allocate buffers proper. They are different than the above
396 1.1 chris * in that they usually occupy more virtual memory than physical.
397 1.1 chris */
398 1.1 chris bufsize = MAXBSIZE * nbuf;
399 1.1 chris if (uvm_map(kernel_map, (vaddr_t *)&buffers, round_page(bufsize),
400 1.1 chris NULL, UVM_UNKNOWN_OFFSET, 0,
401 1.1 chris UVM_MAPFLAG(UVM_PROT_NONE, UVM_PROT_NONE, UVM_INH_NONE,
402 1.1 chris UVM_ADV_NORMAL, 0)) != 0)
403 1.1 chris panic("cpu_startup: cannot allocate UVM space for buffers");
404 1.1 chris minaddr = (vaddr_t)buffers;
405 1.1 chris if ((bufpages / nbuf) >= btoc(MAXBSIZE)) {
406 1.1 chris /* don't want to alloc more physical mem than needed */
407 1.1 chris bufpages = btoc(MAXBSIZE) * nbuf;
408 1.1 chris }
409 1.1 chris
410 1.1 chris base = bufpages / nbuf;
411 1.1 chris residual = bufpages % nbuf;
412 1.1 chris for (loop = 0; loop < nbuf; ++loop) {
413 1.1 chris vsize_t curbufsize;
414 1.1 chris vaddr_t curbuf;
415 1.1 chris struct vm_page *pg;
416 1.1 chris
417 1.3 chris /*
418 1.3 chris * Each buffer has MAXBSIZE bytes of VM space allocated. Of
419 1.3 chris * that MAXBSIZE space, we allocate and map (base+1) pages
420 1.3 chris * for the first "residual" buffers, and then we allocate
421 1.3 chris * "base" pages for the rest.
422 1.3 chris */
423 1.1 chris curbuf = (vaddr_t) buffers + (loop * MAXBSIZE);
424 1.1 chris curbufsize = NBPG * ((loop < residual) ? (base+1) : base);
425 1.1 chris
426 1.1 chris while (curbufsize) {
427 1.1 chris pg = uvm_pagealloc(NULL, 0, NULL, 0);
428 1.1 chris if (pg == NULL)
429 1.1 chris panic("cpu_startup: not enough memory for buffer cache");
430 1.3 chris pmap_kenter_pa(curbuf, VM_PAGE_TO_PHYS(pg),
431 1.3 chris VM_PROT_READ|VM_PROT_WRITE);
432 1.1 chris curbuf += PAGE_SIZE;
433 1.1 chris curbufsize -= PAGE_SIZE;
434 1.1 chris }
435 1.1 chris }
436 1.5 chris pmap_update(pmap_kernel());
437 1.1 chris
438 1.1 chris /*
439 1.1 chris * Allocate a submap for exec arguments. This map effectively
440 1.1 chris * limits the number of processes exec'ing at any time.
441 1.1 chris */
442 1.1 chris exec_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
443 1.1 chris 16*NCARGS, VM_MAP_PAGEABLE, FALSE, NULL);
444 1.1 chris
445 1.1 chris /*
446 1.1 chris * Allocate a submap for physio
447 1.1 chris */
448 1.1 chris phys_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
449 1.1 chris VM_PHYS_SIZE, 0, FALSE, NULL);
450 1.1 chris
451 1.1 chris /*
452 1.1 chris * Finally, allocate mbuf cluster submap.
453 1.1 chris */
454 1.1 chris mb_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
455 1.1 chris nmbclusters * mclbytes, VM_MAP_INTRSAFE,
456 1.1 chris FALSE, NULL);
457 1.1 chris
458 1.1 chris format_bytes(pbuf, sizeof(pbuf), ptoa(uvmexp.free));
459 1.1 chris printf("avail memory = %s\n", pbuf);
460 1.1 chris format_bytes(pbuf, sizeof(pbuf), bufpages * NBPG);
461 1.1 chris printf("using %d buffers containing %s of memory\n", nbuf, pbuf);
462 1.1 chris
463 1.1 chris /*
464 1.1 chris * Set up buffers, so they can be used to read disk labels.
465 1.1 chris */
466 1.1 chris bufinit();
467 1.1 chris
468 1.1 chris curpcb = &proc0.p_addr->u_pcb;
469 1.1 chris curpcb->pcb_flags = 0;
470 1.4 toshii curpcb->pcb_un.un_32.pcb32_und_sp = (u_int)proc0.p_addr +
471 1.4 toshii USPACE_UNDEF_STACK_TOP;
472 1.4 toshii curpcb->pcb_un.un_32.pcb32_sp = (u_int)proc0.p_addr +
473 1.4 toshii USPACE_SVC_STACK_TOP;
474 1.2 chris (void) pmap_extract(pmap_kernel(), (vaddr_t)(pmap_kernel())->pm_pdir,
475 1.1 chris (paddr_t *)&curpcb->pcb_pagedir);
476 1.1 chris
477 1.4 toshii curpcb->pcb_tf = (struct trapframe *)curpcb->pcb_un.un_32.pcb32_sp - 1;
478 1.1 chris }
479 1.1 chris
480 1.1 chris /*
481 1.1 chris * Modify the current mapping for zero page to make it read only
482 1.1 chris *
483 1.1 chris * This routine is only used until things start forking. Then new
484 1.1 chris * system pages are mapped read only in pmap_enter().
485 1.1 chris */
486 1.1 chris
487 1.1 chris void
488 1.1 chris zero_page_readonly()
489 1.1 chris {
490 1.1 chris WriteWord(PROCESS_PAGE_TBLS_BASE + 0,
491 1.1 chris L2_PTE((systempage.pv_pa & PG_FRAME), AP_KR));
492 1.1 chris cpu_tlb_flushID_SE(0x00000000);
493 1.1 chris }
494 1.1 chris
495 1.1 chris
496 1.1 chris /*
497 1.1 chris * Modify the current mapping for zero page to make it read/write
498 1.1 chris *
499 1.1 chris * This routine is only used until things start forking. Then system
500 1.1 chris * pages belonging to user processes are never made writable.
501 1.1 chris */
502 1.1 chris
503 1.1 chris void
504 1.1 chris zero_page_readwrite()
505 1.1 chris {
506 1.1 chris WriteWord(PROCESS_PAGE_TBLS_BASE + 0,
507 1.1 chris L2_PTE((systempage.pv_pa & PG_FRAME), AP_KRW));
508 1.1 chris cpu_tlb_flushID_SE(0x00000000);
509 1.1 chris }
510 1.1 chris
511 1.1 chris
512 1.1 chris /*
513 1.1 chris * machine dependent system variables.
514 1.1 chris */
515 1.1 chris
516 1.1 chris int
517 1.1 chris cpu_sysctl(name, namelen, oldp, oldlenp, newp, newlen, p)
518 1.1 chris int *name;
519 1.1 chris u_int namelen;
520 1.1 chris void *oldp;
521 1.1 chris size_t *oldlenp;
522 1.1 chris void *newp;
523 1.1 chris size_t newlen;
524 1.1 chris struct proc *p;
525 1.1 chris {
526 1.1 chris /* all sysctl names at this level are terminal */
527 1.1 chris if (namelen != 1)
528 1.1 chris return (ENOTDIR); /* overloaded */
529 1.1 chris
530 1.1 chris switch (name[0]) {
531 1.1 chris case CPU_DEBUG:
532 1.1 chris return(sysctl_int(oldp, oldlenp, newp, newlen, &kernel_debug));
533 1.1 chris
534 1.1 chris case CPU_BOOTED_DEVICE:
535 1.1 chris if (booted_device != NULL)
536 1.1 chris return (sysctl_rdstring(oldp, oldlenp, newp,
537 1.1 chris booted_device->dv_xname));
538 1.1 chris return (EOPNOTSUPP);
539 1.1 chris
540 1.1 chris case CPU_CONSDEV: {
541 1.1 chris dev_t consdev;
542 1.1 chris if (cn_tab != NULL)
543 1.1 chris consdev = cn_tab->cn_dev;
544 1.1 chris else
545 1.1 chris consdev = NODEV;
546 1.1 chris return (sysctl_rdstruct(oldp, oldlenp, newp, &consdev,
547 1.1 chris sizeof consdev));
548 1.1 chris }
549 1.1 chris case CPU_BOOTED_KERNEL: {
550 1.1 chris if (booted_kernel != NULL && booted_kernel[0] != '\0')
551 1.1 chris return sysctl_rdstring(oldp, oldlenp, newp,
552 1.1 chris booted_kernel);
553 1.1 chris return (EOPNOTSUPP);
554 1.1 chris }
555 1.1 chris
556 1.1 chris default:
557 1.1 chris return (EOPNOTSUPP);
558 1.1 chris }
559 1.1 chris /* NOTREACHED */
560 1.1 chris }
561 1.1 chris
562 1.1 chris void
563 1.1 chris parse_mi_bootargs(args)
564 1.1 chris char *args;
565 1.1 chris {
566 1.1 chris int integer;
567 1.1 chris
568 1.1 chris if (get_bootconf_option(args, "single", BOOTOPT_TYPE_BOOLEAN, &integer)
569 1.1 chris || get_bootconf_option(args, "-s", BOOTOPT_TYPE_BOOLEAN, &integer))
570 1.1 chris if (integer)
571 1.1 chris boothowto |= RB_SINGLE;
572 1.1 chris if (get_bootconf_option(args, "kdb", BOOTOPT_TYPE_BOOLEAN, &integer)
573 1.1 chris || get_bootconf_option(args, "-k", BOOTOPT_TYPE_BOOLEAN, &integer))
574 1.1 chris if (integer)
575 1.1 chris boothowto |= RB_KDB;
576 1.1 chris if (get_bootconf_option(args, "ask", BOOTOPT_TYPE_BOOLEAN, &integer)
577 1.1 chris || get_bootconf_option(args, "-a", BOOTOPT_TYPE_BOOLEAN, &integer))
578 1.1 chris if (integer)
579 1.1 chris boothowto |= RB_ASKNAME;
580 1.1 chris
581 1.1 chris #ifdef PMAP_DEBUG
582 1.1 chris if (get_bootconf_option(args, "pmapdebug", BOOTOPT_TYPE_INT, &integer)) {
583 1.1 chris pmap_debug_level = integer;
584 1.1 chris pmap_debug(pmap_debug_level);
585 1.1 chris }
586 1.1 chris #endif /* PMAP_DEBUG */
587 1.1 chris
588 1.1 chris /* if (get_bootconf_option(args, "nbuf", BOOTOPT_TYPE_INT, &integer))
589 1.1 chris bufpages = integer;*/
590 1.1 chris
591 1.1 chris #ifndef PMAP_STATIC_L1S
592 1.1 chris if (get_bootconf_option(args, "maxproc", BOOTOPT_TYPE_INT, &integer)) {
593 1.1 chris max_processes = integer;
594 1.1 chris if (max_processes < 16)
595 1.1 chris max_processes = 16;
596 1.1 chris /* Limit is PDSIZE * (max_processes + 1) <= 4MB */
597 1.1 chris if (max_processes > 255)
598 1.1 chris max_processes = 255;
599 1.1 chris }
600 1.1 chris #endif /* !PMAP_STATUC_L1S */
601 1.1 chris #if NMD > 0 && defined(MEMORY_DISK_HOOKS) && !defined(MINIROOTSIZE)
602 1.1 chris if (get_bootconf_option(args, "memorydisc", BOOTOPT_TYPE_INT, &integer)
603 1.1 chris || get_bootconf_option(args, "memorydisk", BOOTOPT_TYPE_INT, &integer)) {
604 1.1 chris memory_disc_size = integer;
605 1.1 chris memory_disc_size *= 1024;
606 1.1 chris if (memory_disc_size < 32*1024)
607 1.1 chris memory_disc_size = 32*1024;
608 1.1 chris if (memory_disc_size > 2048*1024)
609 1.1 chris memory_disc_size = 2048*1024;
610 1.1 chris }
611 1.1 chris #endif /* NMD && MEMORY_DISK_HOOKS && !MINIROOTSIZE */
612 1.1 chris
613 1.1 chris if (get_bootconf_option(args, "quiet", BOOTOPT_TYPE_BOOLEAN, &integer)
614 1.1 chris || get_bootconf_option(args, "-q", BOOTOPT_TYPE_BOOLEAN, &integer))
615 1.1 chris if (integer)
616 1.1 chris boothowto |= AB_QUIET;
617 1.1 chris if (get_bootconf_option(args, "verbose", BOOTOPT_TYPE_BOOLEAN, &integer)
618 1.1 chris || get_bootconf_option(args, "-v", BOOTOPT_TYPE_BOOLEAN, &integer))
619 1.1 chris if (integer)
620 1.1 chris boothowto |= AB_VERBOSE;
621 1.1 chris }
622 1.1 chris
623 1.1 chris /* End of machdep.c */
624