machdep.c revision 1.2 1 1.2 nisimura /* $NetBSD: machdep.c,v 1.2 2000/01/15 10:06:21 nisimura Exp $ */
2 1.1 nisimura
3 1.1 nisimura /*-
4 1.1 nisimura * Copyright (c) 2000 The NetBSD Foundation, Inc.
5 1.1 nisimura * All rights reserved.
6 1.1 nisimura *
7 1.1 nisimura * This code is derived from software contributed to The NetBSD Foundation
8 1.1 nisimura * by Tohru Nishimura.
9 1.1 nisimura *
10 1.1 nisimura * Redistribution and use in source and binary forms, with or without
11 1.1 nisimura * modification, are permitted provided that the following conditions
12 1.1 nisimura * are met:
13 1.1 nisimura * 1. Redistributions of source code must retain the above copyright
14 1.1 nisimura * notice, this list of conditions and the following disclaimer.
15 1.1 nisimura * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 nisimura * notice, this list of conditions and the following disclaimer in the
17 1.1 nisimura * documentation and/or other materials provided with the distribution.
18 1.1 nisimura * 3. All advertising materials mentioning features or use of this software
19 1.1 nisimura * must display the following acknowledgement:
20 1.1 nisimura * This product includes software developed by the NetBSD
21 1.1 nisimura * Foundation, Inc. and its contributors.
22 1.1 nisimura * 4. Neither the name of The NetBSD Foundation nor the names of its
23 1.1 nisimura * contributors may be used to endorse or promote products derived
24 1.1 nisimura * from this software without specific prior written permission.
25 1.1 nisimura *
26 1.1 nisimura * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
27 1.1 nisimura * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
28 1.1 nisimura * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
29 1.1 nisimura * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
30 1.1 nisimura * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
31 1.1 nisimura * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
32 1.1 nisimura * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
33 1.1 nisimura * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
34 1.1 nisimura * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
35 1.1 nisimura * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
36 1.1 nisimura * POSSIBILITY OF SUCH DAMAGE.
37 1.1 nisimura */
38 1.1 nisimura
39 1.1 nisimura #include <sys/cdefs.h> /* RCS ID & Copyright macro defns */
40 1.1 nisimura
41 1.2 nisimura __KERNEL_RCSID(0, "$NetBSD: machdep.c,v 1.2 2000/01/15 10:06:21 nisimura Exp $");
42 1.1 nisimura
43 1.1 nisimura #include "opt_ddb.h"
44 1.1 nisimura
45 1.1 nisimura #include <sys/param.h>
46 1.1 nisimura #include <sys/systm.h>
47 1.1 nisimura #include <sys/kernel.h>
48 1.1 nisimura #include <sys/map.h>
49 1.1 nisimura #include <sys/proc.h>
50 1.1 nisimura #include <sys/buf.h>
51 1.1 nisimura #include <sys/reboot.h>
52 1.1 nisimura #include <sys/conf.h>
53 1.1 nisimura #include <sys/file.h>
54 1.1 nisimura #include <sys/clist.h>
55 1.1 nisimura #include <sys/callout.h>
56 1.1 nisimura #include <sys/device.h>
57 1.1 nisimura #include <sys/malloc.h>
58 1.1 nisimura #include <sys/mbuf.h>
59 1.1 nisimura #include <sys/msgbuf.h>
60 1.1 nisimura #include <sys/ioctl.h>
61 1.1 nisimura #include <sys/tty.h>
62 1.1 nisimura #include <sys/mount.h>
63 1.1 nisimura #include <sys/user.h>
64 1.1 nisimura #include <sys/exec.h>
65 1.1 nisimura #include <sys/core.h>
66 1.1 nisimura #include <sys/kcore.h>
67 1.1 nisimura #include <sys/vnode.h>
68 1.1 nisimura #include <sys/syscallargs.h>
69 1.1 nisimura #ifdef KGDB
70 1.1 nisimura #include <sys/kgdb.h>
71 1.1 nisimura #endif
72 1.1 nisimura
73 1.1 nisimura #include <vm/vm.h>
74 1.1 nisimura #include <vm/vm_map.h>
75 1.1 nisimura #include <vm/vm_kern.h>
76 1.1 nisimura #include <vm/vm_page.h>
77 1.1 nisimura
78 1.1 nisimura #include <uvm/uvm_extern.h>
79 1.1 nisimura
80 1.1 nisimura #include <sys/sysctl.h>
81 1.1 nisimura
82 1.1 nisimura #include <machine/cpu.h>
83 1.1 nisimura #include <machine/reg.h>
84 1.1 nisimura #include <machine/psl.h>
85 1.1 nisimura #include <machine/pte.h>
86 1.1 nisimura #include <machine/kcore.h> /* XXX should be pulled in by sys/kcore.h */
87 1.1 nisimura
88 1.1 nisimura #include <dev/cons.h>
89 1.1 nisimura
90 1.1 nisimura #if defined(DDB)
91 1.1 nisimura #include <machine/db_machdep.h>
92 1.1 nisimura #include <ddb/db_sym.h>
93 1.1 nisimura #include <ddb/db_extern.h>
94 1.1 nisimura #endif
95 1.1 nisimura
96 1.1 nisimura /*
97 1.1 nisimura * Info for CTL_HW
98 1.1 nisimura */
99 1.1 nisimura char machine[] = MACHINE;
100 1.1 nisimura char cpu_model[60];
101 1.1 nisimura extern char version[];
102 1.1 nisimura
103 1.1 nisimura extern char kernel_text[];
104 1.1 nisimura extern char etext[];
105 1.1 nisimura
106 1.1 nisimura vm_map_t exec_map = NULL;
107 1.1 nisimura vm_map_t mb_map = NULL;
108 1.1 nisimura vm_map_t phys_map = NULL;
109 1.1 nisimura
110 1.1 nisimura caddr_t msgbufaddr;
111 1.1 nisimura int maxmem; /* max memory per process */
112 1.1 nisimura int physmem; /* set by locore */
113 1.1 nisimura /*
114 1.1 nisimura * safepri is a safe priority for sleep to set for a spin-wait
115 1.1 nisimura * during autoconfiguration or after a panic.
116 1.1 nisimura */
117 1.1 nisimura int safepri = PSL_LOWIPL;
118 1.1 nisimura
119 1.1 nisimura void luna68k_init __P((void));
120 1.1 nisimura void identifycpu __P((void));
121 1.1 nisimura void dumpsys __P((void));
122 1.1 nisimura
123 1.1 nisimura void straytrap __P((int, u_short));
124 1.1 nisimura void nmihand __P((struct frame));
125 1.1 nisimura
126 1.1 nisimura int cpu_dumpsize __P((void));
127 1.1 nisimura int cpu_dump __P((int (*)(dev_t, daddr_t, caddr_t, size_t), daddr_t *));
128 1.1 nisimura void cpu_init_kcore_hdr __P((void));
129 1.1 nisimura
130 1.1 nisimura /*
131 1.1 nisimura * Machine-independent crash dump header info.
132 1.1 nisimura */
133 1.1 nisimura cpu_kcore_hdr_t cpu_kcore_hdr;
134 1.1 nisimura
135 1.1 nisimura int machtype; /* model: 1 for LUNA-1, 2 for LUNA-2 */
136 1.1 nisimura int sysconsole; /* console: 0 for ttya, 1 for video */
137 1.1 nisimura
138 1.1 nisimura extern struct consdev syscons;
139 1.1 nisimura extern void omfb_cnattach __P((void));
140 1.1 nisimura extern void ws_cnattach __P((void));
141 1.1 nisimura extern void syscnattach __P((int));
142 1.1 nisimura
143 1.1 nisimura /*
144 1.1 nisimura * On the 68020/68030, the value of delay_divisor is roughly
145 1.1 nisimura * 2048 / cpuspeed (where cpuspeed is in MHz).
146 1.1 nisimura *
147 1.1 nisimura * On the 68040/68060(?), the value of delay_divisor is roughly
148 1.1 nisimura * 759 / cpuspeed (where cpuspeed is in MHz).
149 1.1 nisimura * XXX -- is the above formula correct?
150 1.1 nisimura */
151 1.1 nisimura int cpuspeed = 25; /* only used for printing later */
152 1.1 nisimura int delay_divisor = 300; /* for delay() loop count */
153 1.1 nisimura
154 1.1 nisimura /*
155 1.1 nisimura * Early initialization, before main() is called.
156 1.1 nisimura */
157 1.1 nisimura void
158 1.1 nisimura luna68k_init()
159 1.1 nisimura {
160 1.1 nisimura int i;
161 1.1 nisimura
162 1.1 nisimura extern paddr_t avail_start, avail_end;
163 1.1 nisimura
164 1.1 nisimura /*
165 1.1 nisimura * Tell the VM system about available physical memory. The
166 1.1 nisimura * luna68k only has one segment.
167 1.1 nisimura */
168 1.1 nisimura uvm_page_physload(atop(avail_start), atop(avail_end),
169 1.1 nisimura atop(avail_start), atop(avail_end), VM_FREELIST_DEFAULT);
170 1.1 nisimura
171 1.1 nisimura /*
172 1.1 nisimura * Initialize error message buffer (at end of core).
173 1.1 nisimura * avail_end was pre-decremented in pmap_bootstrap to compensate.
174 1.1 nisimura */
175 1.1 nisimura for (i = 0; i < btoc(MSGBUFSIZE); i++)
176 1.1 nisimura pmap_enter(pmap_kernel(), (vaddr_t)msgbufaddr + i * NBPG,
177 1.1 nisimura avail_end + i * NBPG, VM_PROT_READ|VM_PROT_WRITE,
178 1.1 nisimura VM_PROT_READ|VM_PROT_WRITE|PMAP_WIRED);
179 1.1 nisimura initmsgbuf(msgbufaddr, m68k_round_page(MSGBUFSIZE));
180 1.1 nisimura }
181 1.1 nisimura
182 1.1 nisimura /*
183 1.1 nisimura * Console initialization: called early on from main,
184 1.1 nisimura */
185 1.1 nisimura void
186 1.1 nisimura consinit()
187 1.1 nisimura {
188 1.1 nisimura volatile unsigned char *pio0 = (void *)0x49000000;
189 1.1 nisimura int sw1, i;
190 1.1 nisimura char *cp;
191 1.1 nisimura extern char bootarg[64];
192 1.1 nisimura
193 1.1 nisimura pio0[3] = 0xb6;
194 1.1 nisimura pio0[2] = 1 << 6; /* enable parity check */
195 1.1 nisimura
196 1.1 nisimura pio0[3] = 0xb6;
197 1.1 nisimura sw1 = pio0[0]; /* dipssw1 value */
198 1.1 nisimura sw1 ^= 0xff;
199 1.1 nisimura sysconsole = !(sw1 & 0x2); /* console selection */
200 1.1 nisimura
201 1.1 nisimura boothowto = 0;
202 1.1 nisimura i = 0;
203 1.1 nisimura /*
204 1.1 nisimura * 'bootarg' has;
205 1.1 nisimura * "<args of x command> ENADDR=<addr> HOST=<host> SERVER=<name>"
206 1.1 nisimura * where <addr> is MAC address of which network loader used (not
207 1.1 nisimura * necessarily same as one at 0x4101.FFE0), <host> and <name>
208 1.1 nisimura * are the values of HOST and SERVER environment variables,
209 1.1 nisimura *
210 1.1 nisimura * NetBSD/luna68k cares only the first argment; any of "sda".
211 1.1 nisimura */
212 1.1 nisimura for (cp = bootarg; *cp != ' '; cp++) {
213 1.1 nisimura switch (*cp) {
214 1.1 nisimura case 's':
215 1.1 nisimura boothowto |= RB_SINGLE;
216 1.1 nisimura break;
217 1.1 nisimura case 'd':
218 1.1 nisimura boothowto |= RB_KDB;
219 1.1 nisimura break;
220 1.1 nisimura case 'a':
221 1.1 nisimura boothowto |= RB_ASKNAME;
222 1.1 nisimura break;
223 1.1 nisimura }
224 1.1 nisimura if (i++ >= sizeof(bootarg))
225 1.1 nisimura break;
226 1.1 nisimura }
227 1.2 nisimura #if 0 /* overload 1:sw1, which now means 'go ROM monitor' after poweron */
228 1.1 nisimura if (boothowto == 0)
229 1.1 nisimura boothowto = (sw1 & 0x1) ? RB_SINGLE : 0;
230 1.2 nisimura #endif
231 1.1 nisimura
232 1.1 nisimura if (sysconsole == 0)
233 1.1 nisimura syscnattach(0);
234 1.1 nisimura else {
235 1.1 nisimura omfb_cnattach();
236 1.1 nisimura ws_cnattach();
237 1.1 nisimura }
238 1.1 nisimura
239 1.1 nisimura #ifdef DDB
240 1.1 nisimura {
241 1.1 nisimura extern int end;
242 1.1 nisimura extern int *esym;
243 1.1 nisimura
244 1.1 nisimura ddb_init(*(int *)&end, ((int *)&end) + 1, esym);
245 1.1 nisimura }
246 1.1 nisimura if (boothowto & RB_KDB)
247 1.1 nisimura cpu_Debugger();
248 1.1 nisimura #endif
249 1.1 nisimura }
250 1.1 nisimura
251 1.1 nisimura /*
252 1.1 nisimura * cpu_startup: allocate memory for variable-sized tables.
253 1.1 nisimura */
254 1.1 nisimura void
255 1.1 nisimura cpu_startup()
256 1.1 nisimura {
257 1.1 nisimura int i;
258 1.1 nisimura caddr_t v;
259 1.1 nisimura int base, residual;
260 1.1 nisimura vaddr_t minaddr, maxaddr;
261 1.1 nisimura vsize_t size;
262 1.1 nisimura char pbuf[9];
263 1.1 nisimura extern void greeting __P((void));
264 1.1 nisimura
265 1.1 nisimura /*
266 1.1 nisimura * Initialize the kernel crash dump header.
267 1.1 nisimura */
268 1.1 nisimura cpu_init_kcore_hdr();
269 1.1 nisimura
270 1.1 nisimura /*
271 1.1 nisimura * Good {morning,afternoon,evening,night}.
272 1.1 nisimura */
273 1.1 nisimura printf(version);
274 1.1 nisimura identifycpu();
275 1.1 nisimura
276 1.1 nisimura format_bytes(pbuf, sizeof(pbuf), ctob(physmem));
277 1.1 nisimura printf("total memory = %s\n", pbuf);
278 1.1 nisimura
279 1.1 nisimura /*
280 1.1 nisimura * Find out how much space we need, allocate it,
281 1.1 nisimura * and then give everything true virtual addresses.
282 1.1 nisimura */
283 1.1 nisimura size = (int)allocsys(NULL, NULL);
284 1.1 nisimura if ((v = (caddr_t)uvm_km_alloc(kernel_map, round_page(size))) == 0)
285 1.1 nisimura panic("startup: no room for tables");
286 1.1 nisimura if (allocsys(v, NULL) - v != size)
287 1.1 nisimura panic("startup: table size inconsistency");
288 1.1 nisimura
289 1.1 nisimura /*
290 1.1 nisimura * Now allocate buffers proper. They are different than the above
291 1.1 nisimura * in that they usually occupy more virtual memory than physical.
292 1.1 nisimura */
293 1.1 nisimura size = MAXBSIZE * nbuf;
294 1.1 nisimura if (uvm_map(kernel_map, (vaddr_t *) &buffers, round_page(size),
295 1.1 nisimura NULL, UVM_UNKNOWN_OFFSET,
296 1.1 nisimura UVM_MAPFLAG(UVM_PROT_NONE, UVM_PROT_NONE, UVM_INH_NONE,
297 1.1 nisimura UVM_ADV_NORMAL, 0)) != KERN_SUCCESS)
298 1.1 nisimura panic("startup: cannot allocate VM for buffers");
299 1.1 nisimura minaddr = (vaddr_t)buffers;
300 1.1 nisimura if ((bufpages / nbuf) >= btoc(MAXBSIZE)) {
301 1.1 nisimura /* don't want to alloc more physical mem than needed */
302 1.1 nisimura bufpages = btoc(MAXBSIZE) * nbuf;
303 1.1 nisimura }
304 1.1 nisimura base = bufpages / nbuf;
305 1.1 nisimura residual = bufpages % nbuf;
306 1.1 nisimura for (i = 0; i < nbuf; i++) {
307 1.1 nisimura vsize_t curbufsize;
308 1.1 nisimura vaddr_t curbuf;
309 1.1 nisimura struct vm_page *pg;
310 1.1 nisimura
311 1.1 nisimura /*
312 1.1 nisimura * Each buffer has MAXBSIZE bytes of VM space allocated. Of
313 1.1 nisimura * that MAXBSIZE space, we allocate and map (base+1) pages
314 1.1 nisimura * for the first "residual" buffers, and then we allocate
315 1.1 nisimura * "base" pages for the rest.
316 1.1 nisimura */
317 1.1 nisimura curbuf = (vsize_t) buffers + (i * MAXBSIZE);
318 1.1 nisimura curbufsize = NBPG * ((i < residual) ? (base+1) : base);
319 1.1 nisimura
320 1.1 nisimura while (curbufsize) {
321 1.1 nisimura pg = uvm_pagealloc(NULL, 0, NULL, 0);
322 1.1 nisimura if (pg == NULL)
323 1.1 nisimura panic("cpu_startup: not enough memory for "
324 1.1 nisimura "buffer cache");
325 1.1 nisimura pmap_kenter_pa(curbuf, VM_PAGE_TO_PHYS(pg),
326 1.1 nisimura VM_PROT_READ|VM_PROT_WRITE);
327 1.1 nisimura curbuf += PAGE_SIZE;
328 1.1 nisimura curbufsize -= PAGE_SIZE;
329 1.1 nisimura }
330 1.1 nisimura }
331 1.1 nisimura
332 1.1 nisimura /*
333 1.1 nisimura * Allocate a submap for exec arguments. This map effectively
334 1.1 nisimura * limits the number of processes exec'ing at any time.
335 1.1 nisimura */
336 1.1 nisimura exec_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
337 1.1 nisimura 16*NCARGS, VM_MAP_PAGEABLE, FALSE, NULL);
338 1.1 nisimura
339 1.1 nisimura /*
340 1.1 nisimura * Allocate a submap for physio
341 1.1 nisimura */
342 1.1 nisimura phys_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
343 1.1 nisimura VM_PHYS_SIZE, 0, FALSE, NULL);
344 1.1 nisimura
345 1.1 nisimura /*
346 1.1 nisimura * Finally, allocate mbuf cluster submap.
347 1.1 nisimura */
348 1.1 nisimura mb_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
349 1.1 nisimura nmbclusters * mclbytes, VM_MAP_INTRSAFE,
350 1.1 nisimura FALSE, NULL);
351 1.1 nisimura
352 1.1 nisimura /*
353 1.1 nisimura * Initialize callouts
354 1.1 nisimura */
355 1.1 nisimura callfree = callout;
356 1.1 nisimura for (i = 1; i < ncallout; i++)
357 1.1 nisimura callout[i-1].c_next = &callout[i];
358 1.1 nisimura callout[i-1].c_next = NULL;
359 1.1 nisimura
360 1.1 nisimura format_bytes(pbuf, sizeof(pbuf), ptoa(uvmexp.free));
361 1.1 nisimura printf("avail memory = %s\n", pbuf);
362 1.1 nisimura format_bytes(pbuf, sizeof(pbuf), bufpages * NBPG);
363 1.1 nisimura printf("using %d buffers containing %s of memory\n", nbuf, pbuf);
364 1.1 nisimura
365 1.1 nisimura /*
366 1.1 nisimura * Tell the VM system that the area before the text segment
367 1.1 nisimura * is invalid.
368 1.1 nisimura *
369 1.1 nisimura * XXX Should just change KERNBASE and VM_MIN_KERNEL_ADDRESS,
370 1.1 nisimura * XXX but not right now.
371 1.1 nisimura */
372 1.1 nisimura if (uvm_map_protect(kernel_map, 0, round_page(&kernel_text),
373 1.1 nisimura UVM_PROT_NONE, TRUE) != KERN_SUCCESS)
374 1.1 nisimura panic("can't mark pre-text pages off-limits");
375 1.1 nisimura
376 1.1 nisimura /*
377 1.1 nisimura * Tell the VM system that writing to kernel text isn't allowed.
378 1.1 nisimura * If we don't, we might end up COW'ing the text segment!
379 1.1 nisimura */
380 1.1 nisimura if (uvm_map_protect(kernel_map, trunc_page(&kernel_text),
381 1.1 nisimura trunc_page(&etext), UVM_PROT_READ|UVM_PROT_EXEC, TRUE)
382 1.1 nisimura != KERN_SUCCESS)
383 1.1 nisimura panic("can't protect kernel text");
384 1.1 nisimura
385 1.1 nisimura /*
386 1.1 nisimura * Set up buffers, so they can be used to read disk labels.
387 1.1 nisimura */
388 1.1 nisimura bufinit();
389 1.1 nisimura
390 1.1 nisimura /*
391 1.1 nisimura * Say "Hi" to the world
392 1.1 nisimura */
393 1.1 nisimura greeting();
394 1.1 nisimura }
395 1.1 nisimura
396 1.1 nisimura /*
397 1.1 nisimura * Set registers on exec.
398 1.1 nisimura */
399 1.1 nisimura void
400 1.1 nisimura setregs(p, pack, stack)
401 1.1 nisimura register struct proc *p;
402 1.1 nisimura struct exec_package *pack;
403 1.1 nisimura u_long stack;
404 1.1 nisimura {
405 1.1 nisimura struct frame *frame = (struct frame *)p->p_md.md_regs;
406 1.1 nisimura extern int fputype;
407 1.1 nisimura
408 1.1 nisimura frame->f_sr = PSL_USERSET;
409 1.1 nisimura frame->f_pc = pack->ep_entry & ~1;
410 1.1 nisimura frame->f_regs[D0] = 0;
411 1.1 nisimura frame->f_regs[D1] = 0;
412 1.1 nisimura frame->f_regs[D2] = 0;
413 1.1 nisimura frame->f_regs[D3] = 0;
414 1.1 nisimura frame->f_regs[D4] = 0;
415 1.1 nisimura frame->f_regs[D5] = 0;
416 1.1 nisimura frame->f_regs[D6] = 0;
417 1.1 nisimura frame->f_regs[D7] = 0;
418 1.1 nisimura frame->f_regs[A0] = 0;
419 1.1 nisimura frame->f_regs[A1] = 0;
420 1.1 nisimura frame->f_regs[A2] = (int)PS_STRINGS;
421 1.1 nisimura frame->f_regs[A3] = 0;
422 1.1 nisimura frame->f_regs[A4] = 0;
423 1.1 nisimura frame->f_regs[A5] = 0;
424 1.1 nisimura frame->f_regs[A6] = 0;
425 1.1 nisimura frame->f_regs[SP] = stack;
426 1.1 nisimura
427 1.1 nisimura /* restore a null state frame */
428 1.1 nisimura p->p_addr->u_pcb.pcb_fpregs.fpf_null = 0;
429 1.1 nisimura if (fputype)
430 1.1 nisimura m68881_restore(&p->p_addr->u_pcb.pcb_fpregs);
431 1.1 nisimura }
432 1.1 nisimura
433 1.1 nisimura void
434 1.1 nisimura identifycpu()
435 1.1 nisimura {
436 1.1 nisimura extern int cputype;
437 1.1 nisimura char *cpu;
438 1.1 nisimura
439 1.1 nisimura bzero(cpu_model, sizeof(cpu_model));
440 1.1 nisimura switch (cputype) {
441 1.1 nisimura case CPU_68030:
442 1.1 nisimura cpu = "MC68030 CPU+MMU, MC68882 FPU";
443 1.1 nisimura machtype = LUNA_I;
444 1.1 nisimura cpuspeed = 20; delay_divisor = 102; /* 20MHz 68030 */
445 1.1 nisimura hz = 60;
446 1.1 nisimura break;
447 1.1 nisimura #ifdef M68040
448 1.1 nisimura case CPU_68040:
449 1.1 nisimura cpu = "MC68040 CPU+MMU+FPU, 4k on-chip physical I/D caches";
450 1.1 nisimura machtype = LUNA_II;
451 1.1 nisimura cpuspeed = 25; delay_divisor = 300; /* 25MHz 68040 */
452 1.1 nisimura break;
453 1.1 nisimura #endif
454 1.1 nisimura default:
455 1.1 nisimura panic("unknown CPU type");
456 1.1 nisimura }
457 1.1 nisimura strcpy(cpu_model, cpu);
458 1.1 nisimura printf("%s\n", cpu_model);
459 1.1 nisimura }
460 1.1 nisimura
461 1.1 nisimura /*
462 1.1 nisimura * machine dependent system variables.
463 1.1 nisimura */
464 1.1 nisimura int
465 1.1 nisimura cpu_sysctl(name, namelen, oldp, oldlenp, newp, newlen, p)
466 1.1 nisimura int *name;
467 1.1 nisimura u_int namelen;
468 1.1 nisimura void *oldp;
469 1.1 nisimura size_t *oldlenp;
470 1.1 nisimura void *newp;
471 1.1 nisimura size_t newlen;
472 1.1 nisimura struct proc *p;
473 1.1 nisimura {
474 1.1 nisimura dev_t consdev;
475 1.1 nisimura
476 1.1 nisimura /* all sysctl names at this level are terminal */
477 1.1 nisimura if (namelen != 1)
478 1.1 nisimura return (ENOTDIR); /* overloaded */
479 1.1 nisimura
480 1.1 nisimura switch (name[0]) {
481 1.1 nisimura case CPU_CONSDEV:
482 1.1 nisimura if (cn_tab != NULL)
483 1.1 nisimura consdev = cn_tab->cn_dev;
484 1.1 nisimura else
485 1.1 nisimura consdev = NODEV;
486 1.1 nisimura return (sysctl_rdstruct(oldp, oldlenp, newp, &consdev,
487 1.1 nisimura sizeof consdev));
488 1.1 nisimura default:
489 1.1 nisimura return (EOPNOTSUPP);
490 1.1 nisimura }
491 1.1 nisimura /* NOTREACHED */
492 1.1 nisimura }
493 1.1 nisimura
494 1.1 nisimura int waittime = -1;
495 1.1 nisimura
496 1.1 nisimura void
497 1.1 nisimura cpu_reboot(howto, bootstr)
498 1.1 nisimura volatile int howto; /* XXX to shutup GCC XXX */
499 1.1 nisimura char *bootstr;
500 1.1 nisimura {
501 1.1 nisimura extern void doboot __P((void));
502 1.1 nisimura
503 1.1 nisimura /* take a snap shot before clobbering any registers */
504 1.1 nisimura if (curproc && curproc->p_addr)
505 1.1 nisimura savectx(&curproc->p_addr->u_pcb);
506 1.1 nisimura
507 1.1 nisimura /* If system is hold, just halt. */
508 1.1 nisimura if (cold) {
509 1.1 nisimura howto |= RB_HALT;
510 1.1 nisimura goto haltsys;
511 1.1 nisimura }
512 1.1 nisimura
513 1.1 nisimura boothowto = howto;
514 1.1 nisimura if ((howto & RB_NOSYNC) == 0 && waittime < 0) {
515 1.1 nisimura waittime = 0;
516 1.1 nisimura vfs_shutdown();
517 1.1 nisimura /*
518 1.1 nisimura * If we've been adjusting the clock, the todr
519 1.1 nisimura * will be out of synch; adjust it now.
520 1.1 nisimura */
521 1.1 nisimura resettodr();
522 1.1 nisimura }
523 1.1 nisimura
524 1.1 nisimura /* Disable interrupts. */
525 1.1 nisimura splhigh();
526 1.1 nisimura
527 1.1 nisimura /* If rebooting and a dump is requested, do it. */
528 1.1 nisimura if (howto & RB_DUMP)
529 1.1 nisimura dumpsys();
530 1.1 nisimura
531 1.1 nisimura haltsys:
532 1.1 nisimura /* Run any shutdown hooks. */
533 1.1 nisimura doshutdownhooks();
534 1.1 nisimura
535 1.1 nisimura /* Finally, halt/reboot the system. */
536 1.1 nisimura if ((howto & RB_POWERDOWN) == RB_POWERDOWN) {
537 1.1 nisimura u_int8_t *pio = (void *)0x4d000000;
538 1.1 nisimura
539 1.1 nisimura printf("power is going down.\n");
540 1.1 nisimura DELAY(100000);
541 1.1 nisimura pio[3] = 0x94;
542 1.1 nisimura pio[2] = 0 << 4;
543 1.1 nisimura for (;;) /* NOP */;
544 1.1 nisimura }
545 1.1 nisimura if (howto & RB_HALT) {
546 1.1 nisimura printf("System halted. Hit any key to reboot.\n\n");
547 1.1 nisimura (void)cngetc();
548 1.1 nisimura }
549 1.1 nisimura
550 1.1 nisimura printf("rebooting...\n");
551 1.1 nisimura DELAY(100000);
552 1.1 nisimura doboot();
553 1.1 nisimura /*NOTREACHED*/
554 1.1 nisimura while (1) ;
555 1.1 nisimura }
556 1.1 nisimura
557 1.1 nisimura /*
558 1.1 nisimura * Initialize the kernel crash dump header.
559 1.1 nisimura */
560 1.1 nisimura void
561 1.1 nisimura cpu_init_kcore_hdr()
562 1.1 nisimura {
563 1.1 nisimura cpu_kcore_hdr_t *h = &cpu_kcore_hdr;
564 1.1 nisimura struct m68k_kcore_hdr *m = &h->un._m68k;
565 1.1 nisimura extern char end[];
566 1.1 nisimura
567 1.1 nisimura bzero(&cpu_kcore_hdr, sizeof(cpu_kcore_hdr));
568 1.1 nisimura
569 1.1 nisimura /*
570 1.1 nisimura * Initialize the `dispatcher' portion of the header.
571 1.1 nisimura */
572 1.1 nisimura strcpy(h->name, machine);
573 1.1 nisimura h->page_size = NBPG;
574 1.1 nisimura h->kernbase = KERNBASE;
575 1.1 nisimura
576 1.1 nisimura /*
577 1.1 nisimura * Fill in information about our MMU configuration.
578 1.1 nisimura */
579 1.1 nisimura m->mmutype = mmutype;
580 1.1 nisimura m->sg_v = SG_V;
581 1.1 nisimura m->sg_frame = SG_FRAME;
582 1.1 nisimura m->sg_ishift = SG_ISHIFT;
583 1.1 nisimura m->sg_pmask = SG_PMASK;
584 1.1 nisimura m->sg40_shift1 = SG4_SHIFT1;
585 1.1 nisimura m->sg40_mask2 = SG4_MASK2;
586 1.1 nisimura m->sg40_shift2 = SG4_SHIFT2;
587 1.1 nisimura m->sg40_mask3 = SG4_MASK3;
588 1.1 nisimura m->sg40_shift3 = SG4_SHIFT3;
589 1.1 nisimura m->sg40_addr1 = SG4_ADDR1;
590 1.1 nisimura m->sg40_addr2 = SG4_ADDR2;
591 1.1 nisimura m->pg_v = PG_V;
592 1.1 nisimura m->pg_frame = PG_FRAME;
593 1.1 nisimura
594 1.1 nisimura /*
595 1.1 nisimura * Initialize pointer to kernel segment table.
596 1.1 nisimura */
597 1.1 nisimura m->sysseg_pa = (u_int32_t)(pmap_kernel()->pm_stpa);
598 1.1 nisimura
599 1.1 nisimura /*
600 1.1 nisimura * Initialize relocation value such that:
601 1.1 nisimura *
602 1.1 nisimura * pa = (va - KERNBASE) + reloc
603 1.1 nisimura *
604 1.1 nisimura * Since we're linked and loaded at the same place,
605 1.1 nisimura * and the kernel is mapped va == pa, this is 0.
606 1.1 nisimura */
607 1.1 nisimura m->reloc = 0;
608 1.1 nisimura
609 1.1 nisimura /*
610 1.1 nisimura * Define the end of the relocatable range.
611 1.1 nisimura */
612 1.1 nisimura m->relocend = (u_int32_t)end;
613 1.1 nisimura
614 1.1 nisimura /*
615 1.1 nisimura * The luna68k has one contiguous memory segment.
616 1.1 nisimura */
617 1.1 nisimura m->ram_segs[0].start = 0 /* lowram */;
618 1.1 nisimura m->ram_segs[0].size = ctob(physmem);
619 1.1 nisimura }
620 1.1 nisimura
621 1.1 nisimura /*
622 1.1 nisimura * Compute the size of the machine-dependent crash dump header.
623 1.1 nisimura * Returns size in disk blocks.
624 1.1 nisimura */
625 1.1 nisimura int
626 1.1 nisimura cpu_dumpsize()
627 1.1 nisimura {
628 1.1 nisimura int size;
629 1.1 nisimura
630 1.1 nisimura size = ALIGN(sizeof(kcore_seg_t)) + ALIGN(sizeof(cpu_kcore_hdr_t));
631 1.1 nisimura return (btodb(roundup(size, dbtob(1))));
632 1.1 nisimura }
633 1.1 nisimura
634 1.1 nisimura /*
635 1.1 nisimura * Called by dumpsys() to dump the machine-dependent header.
636 1.1 nisimura */
637 1.1 nisimura int
638 1.1 nisimura cpu_dump(dump, blknop)
639 1.1 nisimura int (*dump) __P((dev_t, daddr_t, caddr_t, size_t));
640 1.1 nisimura daddr_t *blknop;
641 1.1 nisimura {
642 1.1 nisimura int buf[dbtob(1) / sizeof(int)];
643 1.1 nisimura cpu_kcore_hdr_t *chdr;
644 1.1 nisimura kcore_seg_t *kseg;
645 1.1 nisimura int error;
646 1.1 nisimura
647 1.1 nisimura kseg = (kcore_seg_t *)buf;
648 1.1 nisimura chdr = (cpu_kcore_hdr_t *)&buf[ALIGN(sizeof(kcore_seg_t)) /
649 1.1 nisimura sizeof(int)];
650 1.1 nisimura
651 1.1 nisimura /* Create the segment header. */
652 1.1 nisimura CORE_SETMAGIC(*kseg, KCORE_MAGIC, MID_MACHINE, CORE_CPU);
653 1.1 nisimura kseg->c_size = dbtob(1) - ALIGN(sizeof(kcore_seg_t));
654 1.1 nisimura
655 1.1 nisimura bcopy(&cpu_kcore_hdr, chdr, sizeof(cpu_kcore_hdr_t));
656 1.1 nisimura error = (*dump)(dumpdev, *blknop, (caddr_t)buf, sizeof(buf));
657 1.1 nisimura *blknop += btodb(sizeof(buf));
658 1.1 nisimura return (error);
659 1.1 nisimura }
660 1.1 nisimura
661 1.1 nisimura /*
662 1.1 nisimura * These variables are needed by /sbin/savecore
663 1.1 nisimura */
664 1.1 nisimura u_long dumpmag = 0x8fca0101; /* magic number */
665 1.1 nisimura int dumpsize = 0; /* pages */
666 1.1 nisimura long dumplo = 0; /* blocks */
667 1.1 nisimura
668 1.1 nisimura /*
669 1.1 nisimura * This is called by main to set dumplo and dumpsize.
670 1.1 nisimura * Dumps always skip the first NBPG of disk space
671 1.1 nisimura * in case there might be a disk label stored there.
672 1.1 nisimura * If there is extra space, put dump at the end to
673 1.1 nisimura * reduce the chance that swapping trashes it.
674 1.1 nisimura */
675 1.1 nisimura void
676 1.1 nisimura cpu_dumpconf()
677 1.1 nisimura {
678 1.1 nisimura int chdrsize; /* size of dump header */
679 1.1 nisimura int nblks; /* size of dump area */
680 1.1 nisimura int maj;
681 1.1 nisimura
682 1.1 nisimura if (dumpdev == NODEV)
683 1.1 nisimura return;
684 1.1 nisimura maj = major(dumpdev);
685 1.1 nisimura if (maj < 0 || maj >= nblkdev)
686 1.1 nisimura panic("dumpconf: bad dumpdev=0x%x", dumpdev);
687 1.1 nisimura if (bdevsw[maj].d_psize == NULL)
688 1.1 nisimura return;
689 1.1 nisimura nblks = (*bdevsw[maj].d_psize)(dumpdev);
690 1.1 nisimura chdrsize = cpu_dumpsize();
691 1.1 nisimura
692 1.1 nisimura dumpsize = btoc(cpu_kcore_hdr.un._m68k.ram_segs[0].size);
693 1.1 nisimura
694 1.1 nisimura /*
695 1.1 nisimura * Check do see if we will fit. Note we always skip the
696 1.1 nisimura * first NBPG in case there is a disk label there.
697 1.1 nisimura */
698 1.1 nisimura if (nblks < (ctod(dumpsize) + chdrsize + ctod(1))) {
699 1.1 nisimura dumpsize = 0;
700 1.1 nisimura dumplo = -1;
701 1.1 nisimura return;
702 1.1 nisimura }
703 1.1 nisimura
704 1.1 nisimura /*
705 1.1 nisimura * Put dump at the end of the partition.
706 1.1 nisimura */
707 1.1 nisimura dumplo = (nblks - 1) - ctod(dumpsize) - chdrsize;
708 1.1 nisimura }
709 1.1 nisimura
710 1.1 nisimura /*
711 1.1 nisimura * Dump physical memory onto the dump device. Called by cpu_reboot().
712 1.1 nisimura */
713 1.1 nisimura void
714 1.1 nisimura dumpsys()
715 1.1 nisimura {
716 1.1 nisimura daddr_t blkno; /* current block to write */
717 1.1 nisimura /* dump routine */
718 1.1 nisimura int (*dump) __P((dev_t, daddr_t, caddr_t, size_t));
719 1.1 nisimura int pg; /* page being dumped */
720 1.1 nisimura paddr_t maddr; /* PA being dumped */
721 1.1 nisimura int error; /* error code from (*dump)() */
722 1.1 nisimura
723 1.1 nisimura /* XXX initialized here because of gcc lossage */
724 1.1 nisimura maddr = 0 /* lowram */;
725 1.1 nisimura pg = 0;
726 1.1 nisimura
727 1.1 nisimura /* Don't put dump messages in msgbuf. */
728 1.1 nisimura msgbufenabled = 0;
729 1.1 nisimura
730 1.1 nisimura /* Make sure dump device is valid. */
731 1.1 nisimura if (dumpdev == NODEV)
732 1.1 nisimura return;
733 1.1 nisimura if (dumpsize == 0) {
734 1.1 nisimura cpu_dumpconf();
735 1.1 nisimura if (dumpsize == 0)
736 1.1 nisimura return;
737 1.1 nisimura }
738 1.1 nisimura if (dumplo <= 0) {
739 1.1 nisimura printf("\ndump to dev %u,%u not possible\n", major(dumpdev),
740 1.1 nisimura minor(dumpdev));
741 1.1 nisimura return;
742 1.1 nisimura }
743 1.1 nisimura dump = bdevsw[major(dumpdev)].d_dump;
744 1.1 nisimura blkno = dumplo;
745 1.1 nisimura
746 1.1 nisimura printf("\ndumping to dev %u,%u offset %ld\n", major(dumpdev),
747 1.1 nisimura minor(dumpdev), dumplo);
748 1.1 nisimura
749 1.1 nisimura printf("dump ");
750 1.1 nisimura
751 1.1 nisimura /* Write the dump header. */
752 1.1 nisimura error = cpu_dump(dump, &blkno);
753 1.1 nisimura if (error)
754 1.1 nisimura goto bad;
755 1.1 nisimura
756 1.1 nisimura for (pg = 0; pg < dumpsize; pg++) {
757 1.1 nisimura #define NPGMB (1024*1024/NBPG)
758 1.1 nisimura /* print out how many MBs we have dumped */
759 1.1 nisimura if (pg && (pg % NPGMB) == 0)
760 1.1 nisimura printf("%d ", pg / NPGMB);
761 1.1 nisimura #undef NPGMB
762 1.1 nisimura pmap_enter(pmap_kernel(), (vaddr_t)vmmap, maddr,
763 1.1 nisimura VM_PROT_READ, VM_PROT_READ|PMAP_WIRED);
764 1.1 nisimura
765 1.1 nisimura error = (*dump)(dumpdev, blkno, vmmap, NBPG);
766 1.1 nisimura bad:
767 1.1 nisimura switch (error) {
768 1.1 nisimura case 0:
769 1.1 nisimura maddr += NBPG;
770 1.1 nisimura blkno += btodb(NBPG);
771 1.1 nisimura break;
772 1.1 nisimura
773 1.1 nisimura case ENXIO:
774 1.1 nisimura printf("device bad\n");
775 1.1 nisimura return;
776 1.1 nisimura
777 1.1 nisimura case EFAULT:
778 1.1 nisimura printf("device not ready\n");
779 1.1 nisimura return;
780 1.1 nisimura
781 1.1 nisimura case EINVAL:
782 1.1 nisimura printf("area improper\n");
783 1.1 nisimura return;
784 1.1 nisimura
785 1.1 nisimura case EIO:
786 1.1 nisimura printf("i/o error\n");
787 1.1 nisimura return;
788 1.1 nisimura
789 1.1 nisimura case EINTR:
790 1.1 nisimura printf("aborted from console\n");
791 1.1 nisimura return;
792 1.1 nisimura
793 1.1 nisimura default:
794 1.1 nisimura printf("error %d\n", error);
795 1.1 nisimura return;
796 1.1 nisimura }
797 1.1 nisimura }
798 1.1 nisimura printf("succeeded\n");
799 1.1 nisimura }
800 1.1 nisimura
801 1.1 nisimura void
802 1.1 nisimura straytrap(pc, evec)
803 1.1 nisimura int pc;
804 1.1 nisimura u_short evec;
805 1.1 nisimura {
806 1.1 nisimura printf("unexpected trap (vector offset %x) from %x\n",
807 1.1 nisimura evec & 0xFFF, pc);
808 1.1 nisimura }
809 1.1 nisimura
810 1.1 nisimura int *nofault;
811 1.1 nisimura
812 1.1 nisimura int
813 1.1 nisimura badaddr(addr, nbytes)
814 1.1 nisimura register caddr_t addr;
815 1.1 nisimura int nbytes;
816 1.1 nisimura {
817 1.1 nisimura register int i;
818 1.1 nisimura label_t faultbuf;
819 1.1 nisimura
820 1.1 nisimura #ifdef lint
821 1.1 nisimura i = *addr; if (i) return (0);
822 1.1 nisimura #endif
823 1.1 nisimura
824 1.1 nisimura nofault = (int *) &faultbuf;
825 1.1 nisimura if (setjmp((label_t *)nofault)) {
826 1.1 nisimura nofault = (int *) 0;
827 1.1 nisimura return(1);
828 1.1 nisimura }
829 1.1 nisimura
830 1.1 nisimura switch (nbytes) {
831 1.1 nisimura case 1:
832 1.1 nisimura i = *(volatile char *)addr;
833 1.1 nisimura break;
834 1.1 nisimura
835 1.1 nisimura case 2:
836 1.1 nisimura i = *(volatile short *)addr;
837 1.1 nisimura break;
838 1.1 nisimura
839 1.1 nisimura case 4:
840 1.1 nisimura i = *(volatile int *)addr;
841 1.1 nisimura break;
842 1.1 nisimura
843 1.1 nisimura default:
844 1.1 nisimura panic("badaddr: bad request");
845 1.1 nisimura }
846 1.1 nisimura nofault = (int *) 0;
847 1.1 nisimura return (0);
848 1.1 nisimura }
849 1.1 nisimura
850 1.1 nisimura void luna68k_abort __P((char *));
851 1.1 nisimura
852 1.1 nisimura static int innmihand; /* simple mutex */
853 1.1 nisimura
854 1.1 nisimura /*
855 1.1 nisimura * Level 7 interrupts are caused by e.g. the ABORT switch.
856 1.1 nisimura *
857 1.1 nisimura * If we have DDB, then break into DDB on ABORT. In a production
858 1.1 nisimura * environment, bumping the ABORT switch would be bad, so we enable
859 1.1 nisimura * panic'ing on ABORT with the kernel option "PANICBUTTON".
860 1.1 nisimura */
861 1.1 nisimura void
862 1.1 nisimura nmihand(frame)
863 1.1 nisimura struct frame frame;
864 1.1 nisimura {
865 1.1 nisimura /* Prevent unwanted recursion */
866 1.1 nisimura if (innmihand)
867 1.1 nisimura return;
868 1.1 nisimura innmihand = 1;
869 1.1 nisimura
870 1.1 nisimura luna68k_abort("ABORT SWITCH");
871 1.1 nisimura }
872 1.1 nisimura
873 1.1 nisimura /*
874 1.1 nisimura * Common code for handling ABORT signals from buttons, switches,
875 1.1 nisimura * serial lines, etc.
876 1.1 nisimura */
877 1.1 nisimura void
878 1.1 nisimura luna68k_abort(cp)
879 1.1 nisimura char *cp;
880 1.1 nisimura {
881 1.1 nisimura #ifdef DDB
882 1.1 nisimura printf("%s\n", cp);
883 1.1 nisimura cpu_Debugger();
884 1.1 nisimura #else
885 1.1 nisimura #ifdef PANICBUTTON
886 1.1 nisimura panic(cp);
887 1.1 nisimura #else
888 1.1 nisimura printf("%s ignored\n", cp);
889 1.1 nisimura #endif /* PANICBUTTON */
890 1.1 nisimura #endif /* DDB */
891 1.1 nisimura }
892 1.1 nisimura
893 1.1 nisimura /*
894 1.1 nisimura * cpu_exec_aout_makecmds():
895 1.1 nisimura * cpu-dependent a.out format hook for execve().
896 1.1 nisimura *
897 1.1 nisimura * Determine of the given exec package refers to something which we
898 1.1 nisimura * understand and, if so, set up the vmcmds for it.
899 1.1 nisimura */
900 1.1 nisimura int
901 1.1 nisimura cpu_exec_aout_makecmds(p, epp)
902 1.1 nisimura struct proc *p;
903 1.1 nisimura struct exec_package *epp;
904 1.1 nisimura {
905 1.1 nisimura int error = ENOEXEC;
906 1.1 nisimura #ifdef COMPAT_SUNOS
907 1.1 nisimura extern sunos_exec_aout_makecmds
908 1.1 nisimura __P((struct proc *, struct exec_package *));
909 1.1 nisimura if ((error = sunos_exec_aout_makecmds(p, epp)) == 0)
910 1.1 nisimura return 0;
911 1.1 nisimura #endif
912 1.1 nisimura return error;
913 1.1 nisimura }
914 1.1 nisimura
915 1.1 nisimura /*
916 1.1 nisimura * Return the best possible estimate of the time in the timeval
917 1.1 nisimura * to which tvp points. Unfortunately, we can't read the hardware registers.
918 1.1 nisimura * We guarantee that the time will be greater than the value obtained by a
919 1.1 nisimura * previous call.
920 1.1 nisimura */
921 1.1 nisimura void
922 1.1 nisimura microtime(tvp)
923 1.1 nisimura register struct timeval *tvp;
924 1.1 nisimura {
925 1.1 nisimura int s = splclock();
926 1.1 nisimura static struct timeval lasttime;
927 1.1 nisimura
928 1.1 nisimura *tvp = time;
929 1.1 nisimura #ifdef notdef
930 1.1 nisimura tvp->tv_usec += clkread();
931 1.1 nisimura while (tvp->tv_usec > 1000000) {
932 1.1 nisimura tvp->tv_sec++;
933 1.1 nisimura tvp->tv_usec -= 1000000;
934 1.1 nisimura }
935 1.1 nisimura #endif
936 1.1 nisimura if (tvp->tv_sec == lasttime.tv_sec &&
937 1.1 nisimura tvp->tv_usec <= lasttime.tv_usec &&
938 1.1 nisimura (tvp->tv_usec = lasttime.tv_usec + 1) > 1000000) {
939 1.1 nisimura tvp->tv_sec++;
940 1.1 nisimura tvp->tv_usec -= 1000000;
941 1.1 nisimura }
942 1.1 nisimura lasttime = *tvp;
943 1.1 nisimura splx(s);
944 1.1 nisimura }
945 1.1 nisimura
946 1.2 nisimura #if 1
947 1.1 nisimura
948 1.1 nisimura struct consdev *cn_tab = &syscons;
949 1.1 nisimura
950 1.1 nisimura #else
951 1.1 nisimura
952 1.1 nisimura /*
953 1.1 nisimura * romcons is useful until m68k TC register is initialized.
954 1.1 nisimura */
955 1.1 nisimura int romcngetc __P((dev_t));
956 1.1 nisimura void romcnputc __P((dev_t, int));
957 1.1 nisimura
958 1.1 nisimura struct consdev romcons = {
959 1.1 nisimura NULL,
960 1.1 nisimura NULL,
961 1.1 nisimura romcngetc,
962 1.1 nisimura romcnputc,
963 1.1 nisimura nullcnpollc,
964 1.1 nisimura makedev(7, 0), /* XXX */
965 1.1 nisimura CN_DEAD,
966 1.1 nisimura };
967 1.1 nisimura struct consdev *cn_tab = &romcons;
968 1.1 nisimura
969 1.2 nisimura #define __ ((int **)0x41000000)
970 1.2 nisimura #define GETC() (*(int (*)())__[6])()
971 1.2 nisimura #define PUTC(x) (*(void (*)())__[7])(x)
972 1.2 nisimura
973 1.2 nisimura #define ROMPUTC(x) \
974 1.2 nisimura ({ \
975 1.2 nisimura register _r; \
976 1.2 nisimura asm volatile (" \
977 1.2 nisimura movc vbr,%0 ; \
978 1.2 nisimura movel %0,sp@- ; \
979 1.2 nisimura clrl %0 ; \
980 1.2 nisimura movc %0,vbr" \
981 1.2 nisimura : "=r" (_r)); \
982 1.2 nisimura PUTC(x); \
983 1.2 nisimura asm volatile (" \
984 1.2 nisimura movel sp@+,%0 ; \
985 1.2 nisimura movc %0,vbr" \
986 1.2 nisimura : "=r" (_r)); \
987 1.2 nisimura })
988 1.2 nisimura
989 1.2 nisimura #define ROMGETC() \
990 1.2 nisimura ({ \
991 1.2 nisimura register _r, _c; \
992 1.2 nisimura asm volatile (" \
993 1.2 nisimura movc vbr,%0 ; \
994 1.2 nisimura movel %0,sp@- ; \
995 1.2 nisimura clrl %0 ; \
996 1.2 nisimura movc %0,vbr" \
997 1.2 nisimura : "=r" (_r)); \
998 1.2 nisimura _c = GETC(); \
999 1.2 nisimura asm volatile (" \
1000 1.2 nisimura movel sp@+,%0 ; \
1001 1.2 nisimura movc %0,vbr" \
1002 1.2 nisimura : "=r" (_r)); \
1003 1.2 nisimura _c; \
1004 1.2 nisimura })
1005 1.1 nisimura
1006 1.1 nisimura void
1007 1.1 nisimura romcnputc(dev, c)
1008 1.1 nisimura dev_t dev;
1009 1.1 nisimura int c;
1010 1.1 nisimura {
1011 1.2 nisimura int s;
1012 1.2 nisimura
1013 1.2 nisimura s = splhigh();
1014 1.1 nisimura ROMPUTC(c);
1015 1.2 nisimura splx(s);
1016 1.1 nisimura }
1017 1.1 nisimura
1018 1.1 nisimura int
1019 1.1 nisimura romcngetc(dev)
1020 1.1 nisimura dev_t dev;
1021 1.1 nisimura {
1022 1.2 nisimura int s, c;
1023 1.1 nisimura
1024 1.1 nisimura do {
1025 1.2 nisimura s = splhigh();
1026 1.1 nisimura c = ROMGETC();
1027 1.2 nisimura splx(s);
1028 1.1 nisimura } while (c == -1);
1029 1.1 nisimura return c;
1030 1.1 nisimura }
1031 1.1 nisimura #endif
1032