oea_machdep.c revision 1.54 1 1.54 rmind /* $NetBSD: oea_machdep.c,v 1.54 2011/01/14 02:06:30 rmind Exp $ */
2 1.1 matt
3 1.1 matt /*
4 1.1 matt * Copyright (C) 2002 Matt Thomas
5 1.1 matt * Copyright (C) 1995, 1996 Wolfgang Solfrank.
6 1.1 matt * Copyright (C) 1995, 1996 TooLs GmbH.
7 1.1 matt * All rights reserved.
8 1.1 matt *
9 1.1 matt * Redistribution and use in source and binary forms, with or without
10 1.1 matt * modification, are permitted provided that the following conditions
11 1.1 matt * are met:
12 1.1 matt * 1. Redistributions of source code must retain the above copyright
13 1.1 matt * notice, this list of conditions and the following disclaimer.
14 1.1 matt * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 matt * notice, this list of conditions and the following disclaimer in the
16 1.1 matt * documentation and/or other materials provided with the distribution.
17 1.1 matt * 3. All advertising materials mentioning features or use of this software
18 1.1 matt * must display the following acknowledgement:
19 1.1 matt * This product includes software developed by TooLs GmbH.
20 1.1 matt * 4. The name of TooLs GmbH may not be used to endorse or promote products
21 1.1 matt * derived from this software without specific prior written permission.
22 1.1 matt *
23 1.1 matt * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR
24 1.1 matt * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
25 1.1 matt * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
26 1.1 matt * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
27 1.1 matt * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
28 1.1 matt * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
29 1.1 matt * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
30 1.1 matt * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
31 1.1 matt * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
32 1.1 matt * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 matt */
34 1.9 lukem
35 1.9 lukem #include <sys/cdefs.h>
36 1.54 rmind __KERNEL_RCSID(0, "$NetBSD: oea_machdep.c,v 1.54 2011/01/14 02:06:30 rmind Exp $");
37 1.1 matt
38 1.41 garbled #include "opt_ppcarch.h"
39 1.1 matt #include "opt_compat_netbsd.h"
40 1.1 matt #include "opt_ddb.h"
41 1.1 matt #include "opt_kgdb.h"
42 1.1 matt #include "opt_ipkdb.h"
43 1.1 matt #include "opt_multiprocessor.h"
44 1.1 matt #include "opt_altivec.h"
45 1.1 matt
46 1.1 matt #include <sys/param.h>
47 1.1 matt #include <sys/buf.h>
48 1.1 matt #include <sys/exec.h>
49 1.1 matt #include <sys/malloc.h>
50 1.1 matt #include <sys/mbuf.h>
51 1.1 matt #include <sys/mount.h>
52 1.1 matt #include <sys/msgbuf.h>
53 1.1 matt #include <sys/proc.h>
54 1.1 matt #include <sys/reboot.h>
55 1.1 matt #include <sys/syscallargs.h>
56 1.1 matt #include <sys/syslog.h>
57 1.1 matt #include <sys/systm.h>
58 1.1 matt #include <sys/kernel.h>
59 1.1 matt #include <sys/boot_flag.h>
60 1.1 matt
61 1.1 matt #include <uvm/uvm_extern.h>
62 1.1 matt
63 1.1 matt #include <net/netisr.h>
64 1.1 matt
65 1.1 matt #ifdef DDB
66 1.1 matt #include <machine/db_machdep.h>
67 1.1 matt #include <ddb/db_extern.h>
68 1.1 matt #endif
69 1.1 matt
70 1.1 matt #ifdef KGDB
71 1.1 matt #include <sys/kgdb.h>
72 1.1 matt #endif
73 1.1 matt
74 1.1 matt #ifdef IPKDB
75 1.1 matt #include <ipkdb/ipkdb.h>
76 1.1 matt #endif
77 1.1 matt
78 1.1 matt #include <powerpc/trap.h>
79 1.1 matt #include <powerpc/stdarg.h>
80 1.1 matt #include <powerpc/spr.h>
81 1.1 matt #include <powerpc/pte.h>
82 1.1 matt #include <powerpc/altivec.h>
83 1.54 rmind #include <powerpc/pcb.h>
84 1.1 matt #include <machine/powerpc.h>
85 1.1 matt
86 1.53 matt #include <powerpc/oea/spr.h>
87 1.53 matt #include <powerpc/oea/bat.h>
88 1.53 matt #include <powerpc/oea/sr_601.h>
89 1.53 matt #include <powerpc/oea/cpufeat.h>
90 1.53 matt
91 1.1 matt char machine[] = MACHINE; /* from <machine/param.h> */
92 1.1 matt char machine_arch[] = MACHINE_ARCH; /* from <machine/param.h> */
93 1.1 matt
94 1.1 matt struct vm_map *phys_map = NULL;
95 1.1 matt
96 1.1 matt /*
97 1.1 matt * Global variables used here and there
98 1.1 matt */
99 1.34 yamt static void trap0(void *);
100 1.26 sanjayl
101 1.26 sanjayl /* XXXSL: The battable is not initialized to non-zero for PPC_OEA64 and PPC_OEA64_BRIDGE */
102 1.1 matt struct bat battable[512];
103 1.26 sanjayl
104 1.2 matt register_t iosrtable[16]; /* I/O segments, for kernel_pmap setup */
105 1.47 phx #ifndef MSGBUFADDR
106 1.1 matt paddr_t msgbuf_paddr;
107 1.47 phx #endif
108 1.1 matt
109 1.1 matt void
110 1.1 matt oea_init(void (*handler)(void))
111 1.1 matt {
112 1.6 matt extern int trapcode[], trapsize[];
113 1.6 matt extern int sctrap[], scsize[];
114 1.6 matt extern int alitrap[], alisize[];
115 1.6 matt extern int dsitrap[], dsisize[];
116 1.41 garbled extern int trapstart[], trapend[];
117 1.40 garbled #ifdef PPC_OEA601
118 1.6 matt extern int dsi601trap[], dsi601size[];
119 1.40 garbled #endif
120 1.6 matt extern int decrint[], decrsize[];
121 1.6 matt extern int tlbimiss[], tlbimsize[];
122 1.6 matt extern int tlbdlmiss[], tlbdlmsize[];
123 1.6 matt extern int tlbdsmiss[], tlbdsmsize[];
124 1.1 matt #if defined(DDB) || defined(KGDB)
125 1.6 matt extern int ddblow[], ddbsize[];
126 1.1 matt #endif
127 1.1 matt #ifdef IPKDB
128 1.6 matt extern int ipkdblow[], ipkdbsize[];
129 1.1 matt #endif
130 1.1 matt #ifdef ALTIVEC
131 1.1 matt register_t msr;
132 1.1 matt #endif
133 1.45 phx uintptr_t exc, exc_base;
134 1.38 garbled #if defined(ALTIVEC) || defined(PPC_OEA)
135 1.1 matt register_t scratch;
136 1.38 garbled #endif
137 1.1 matt unsigned int cpuvers;
138 1.1 matt size_t size;
139 1.1 matt struct cpu_info * const ci = &cpu_info[0];
140 1.1 matt
141 1.45 phx #ifdef PPC_HIGH_VEC
142 1.45 phx exc_base = EXC_HIGHVEC;
143 1.45 phx #else
144 1.45 phx exc_base = 0;
145 1.45 phx #endif
146 1.1 matt mtspr(SPR_SPRG0, ci);
147 1.1 matt cpuvers = mfpvr() >> 16;
148 1.1 matt
149 1.1 matt /*
150 1.1 matt * Initialize proc0 and current pcb and pmap pointers.
151 1.1 matt */
152 1.1 matt KASSERT(ci != NULL);
153 1.1 matt KASSERT(curcpu() == ci);
154 1.1 matt lwp0.l_cpu = ci;
155 1.51 rmind
156 1.50 matt curpcb = lwp_getpcb(&lwp0);
157 1.51 rmind memset(curpcb, 0, sizeof(struct pcb));
158 1.1 matt
159 1.5 matt #ifdef ALTIVEC
160 1.5 matt /*
161 1.5 matt * Initialize the vectors with NaNs
162 1.5 matt */
163 1.5 matt for (scratch = 0; scratch < 32; scratch++) {
164 1.5 matt curpcb->pcb_vr.vreg[scratch][0] = 0x7FFFDEAD;
165 1.5 matt curpcb->pcb_vr.vreg[scratch][1] = 0x7FFFDEAD;
166 1.5 matt curpcb->pcb_vr.vreg[scratch][2] = 0x7FFFDEAD;
167 1.5 matt curpcb->pcb_vr.vreg[scratch][3] = 0x7FFFDEAD;
168 1.5 matt }
169 1.5 matt curpcb->pcb_vr.vscr = 0;
170 1.5 matt curpcb->pcb_vr.vrsave = 0;
171 1.5 matt #endif
172 1.12 matt curpm = curpcb->pcb_pm = pmap_kernel();
173 1.1 matt
174 1.1 matt /*
175 1.1 matt * Cause a PGM trap if we branch to 0.
176 1.25 mrg *
177 1.25 mrg * XXX GCC4.1 complains about memset on address zero, so
178 1.25 mrg * don't use the builtin.
179 1.1 matt */
180 1.25 mrg #undef memset
181 1.1 matt memset(0, 0, 0x100);
182 1.1 matt
183 1.1 matt /*
184 1.1 matt * Set up trap vectors. Don't assume vectors are on 0x100.
185 1.1 matt */
186 1.45 phx for (exc = exc_base; exc <= exc_base + EXC_LAST; exc += 0x100) {
187 1.45 phx switch (exc - exc_base) {
188 1.1 matt default:
189 1.6 matt size = (size_t)trapsize;
190 1.6 matt memcpy((void *)exc, trapcode, size);
191 1.1 matt break;
192 1.1 matt #if 0
193 1.1 matt case EXC_EXI:
194 1.1 matt /*
195 1.1 matt * This one is (potentially) installed during autoconf
196 1.1 matt */
197 1.1 matt break;
198 1.1 matt #endif
199 1.1 matt case EXC_SC:
200 1.6 matt size = (size_t)scsize;
201 1.45 phx memcpy((void *)exc, sctrap, size);
202 1.1 matt break;
203 1.1 matt case EXC_ALI:
204 1.6 matt size = (size_t)alisize;
205 1.45 phx memcpy((void *)exc, alitrap, size);
206 1.1 matt break;
207 1.1 matt case EXC_DSI:
208 1.40 garbled #ifdef PPC_OEA601
209 1.1 matt if (cpuvers == MPC601) {
210 1.6 matt size = (size_t)dsi601size;
211 1.45 phx memcpy((void *)exc, dsi601trap, size);
212 1.42 matt break;
213 1.43 garbled } else
214 1.43 garbled #endif /* PPC_OEA601 */
215 1.43 garbled if (oeacpufeat & OEACPU_NOBAT) {
216 1.43 garbled size = (size_t)alisize;
217 1.45 phx memcpy((void *)exc, alitrap, size);
218 1.43 garbled } else {
219 1.43 garbled size = (size_t)dsisize;
220 1.45 phx memcpy((void *)exc, dsitrap, size);
221 1.1 matt }
222 1.1 matt break;
223 1.1 matt case EXC_DECR:
224 1.6 matt size = (size_t)decrsize;
225 1.45 phx memcpy((void *)exc, decrint, size);
226 1.1 matt break;
227 1.1 matt case EXC_IMISS:
228 1.6 matt size = (size_t)tlbimsize;
229 1.45 phx memcpy((void *)exc, tlbimiss, size);
230 1.1 matt break;
231 1.1 matt case EXC_DLMISS:
232 1.6 matt size = (size_t)tlbdlmsize;
233 1.45 phx memcpy((void *)exc, tlbdlmiss, size);
234 1.1 matt break;
235 1.1 matt case EXC_DSMISS:
236 1.6 matt size = (size_t)tlbdsmsize;
237 1.45 phx memcpy((void *)exc, tlbdsmiss, size);
238 1.1 matt break;
239 1.1 matt case EXC_PERF:
240 1.6 matt size = (size_t)trapsize;
241 1.45 phx memcpy((void *)exc, trapcode, size);
242 1.45 phx memcpy((void *)(exc_base + EXC_VEC), trapcode, size);
243 1.1 matt break;
244 1.1 matt #if defined(DDB) || defined(IPKDB) || defined(KGDB)
245 1.1 matt case EXC_RUNMODETRC:
246 1.42 matt #ifdef PPC_OEA601
247 1.1 matt if (cpuvers != MPC601) {
248 1.42 matt #endif
249 1.6 matt size = (size_t)trapsize;
250 1.45 phx memcpy((void *)exc, trapcode, size);
251 1.1 matt break;
252 1.42 matt #ifdef PPC_OEA601
253 1.1 matt }
254 1.1 matt /* FALLTHROUGH */
255 1.42 matt #endif
256 1.1 matt case EXC_PGM:
257 1.1 matt case EXC_TRC:
258 1.1 matt case EXC_BPT:
259 1.1 matt #if defined(DDB) || defined(KGDB)
260 1.6 matt size = (size_t)ddbsize;
261 1.6 matt memcpy((void *)exc, ddblow, size);
262 1.1 matt #if defined(IPKDB)
263 1.1 matt #error "cannot enable IPKDB with DDB or KGDB"
264 1.1 matt #endif
265 1.1 matt #else
266 1.6 matt size = (size_t)ipkdbsize;
267 1.6 matt memcpy((void *)exc, ipkdblow, size);
268 1.1 matt #endif
269 1.1 matt break;
270 1.1 matt #endif /* DDB || IPKDB || KGDB */
271 1.1 matt }
272 1.1 matt #if 0
273 1.1 matt exc += roundup(size, 32);
274 1.1 matt #endif
275 1.1 matt }
276 1.1 matt
277 1.1 matt /*
278 1.34 yamt * Install a branch absolute to trap0 to force a panic.
279 1.34 yamt */
280 1.45 phx if ((uintptr_t)trap0 < 0x2000000) {
281 1.45 phx *(uint32_t *) 0 = 0x7c6802a6;
282 1.45 phx *(uint32_t *) 4 = 0x48000002 | (uintptr_t) trap0;
283 1.45 phx }
284 1.34 yamt
285 1.34 yamt /*
286 1.1 matt * Get the cache sizes because install_extint calls __syncicache.
287 1.1 matt */
288 1.1 matt cpu_probe_cache();
289 1.1 matt
290 1.1 matt #define MxSPR_MASK 0x7c1fffff
291 1.1 matt #define MFSPR_MQ 0x7c0002a6
292 1.1 matt #define MTSPR_MQ 0x7c0003a6
293 1.17 kleink #define MTSPR_IBAT0L 0x7c1183a6
294 1.17 kleink #define MTSPR_IBAT1L 0x7c1383a6
295 1.1 matt #define NOP 0x60000000
296 1.17 kleink #define B 0x48000000
297 1.18 kleink #define TLBSYNC 0x7c00046c
298 1.18 kleink #define SYNC 0x7c0004ac
299 1.1 matt
300 1.1 matt #ifdef ALTIVEC
301 1.1 matt #define MFSPR_VRSAVE 0x7c0042a6
302 1.1 matt #define MTSPR_VRSAVE 0x7c0043a6
303 1.1 matt
304 1.1 matt /*
305 1.1 matt * Try to set the VEC bit in the MSR. If it doesn't get set, we are
306 1.1 matt * not on a AltiVec capable processor.
307 1.1 matt */
308 1.24 perry __asm volatile (
309 1.1 matt "mfmsr %0; oris %1,%0,%2@h; mtmsr %1; isync; "
310 1.1 matt "mfmsr %1; mtmsr %0; isync"
311 1.1 matt : "=r"(msr), "=r"(scratch)
312 1.1 matt : "J"(PSL_VEC));
313 1.1 matt
314 1.1 matt /*
315 1.17 kleink * If we aren't on an AltiVec capable processor, we need to zap any of
316 1.17 kleink * the sequences we save/restore the VRSAVE SPR into NOPs.
317 1.1 matt */
318 1.1 matt if (scratch & PSL_VEC) {
319 1.1 matt cpu_altivec = 1;
320 1.1 matt } else {
321 1.1 matt int *ip = trapstart;
322 1.1 matt
323 1.1 matt for (; ip < trapend; ip++) {
324 1.1 matt if ((ip[0] & MxSPR_MASK) == MFSPR_VRSAVE) {
325 1.1 matt ip[0] = NOP; /* mfspr */
326 1.1 matt ip[1] = NOP; /* stw */
327 1.1 matt } else if ((ip[0] & MxSPR_MASK) == MTSPR_VRSAVE) {
328 1.1 matt ip[-1] = NOP; /* lwz */
329 1.1 matt ip[0] = NOP; /* mtspr */
330 1.1 matt }
331 1.1 matt }
332 1.1 matt }
333 1.1 matt #endif
334 1.1 matt
335 1.41 garbled /* XXX It would seem like this code could be elided ifndef 601, but
336 1.41 garbled * doing so breaks my power3 machine.
337 1.41 garbled */
338 1.1 matt /*
339 1.17 kleink * If we aren't on a MPC601 processor, we need to zap any of the
340 1.17 kleink * sequences we save/restore the MQ SPR into NOPs, and skip over the
341 1.17 kleink * sequences where we zap/restore BAT registers on kernel exit/entry.
342 1.1 matt */
343 1.1 matt if (cpuvers != MPC601) {
344 1.1 matt int *ip = trapstart;
345 1.1 matt
346 1.1 matt for (; ip < trapend; ip++) {
347 1.1 matt if ((ip[0] & MxSPR_MASK) == MFSPR_MQ) {
348 1.1 matt ip[0] = NOP; /* mfspr */
349 1.1 matt ip[1] = NOP; /* stw */
350 1.1 matt } else if ((ip[0] & MxSPR_MASK) == MTSPR_MQ) {
351 1.1 matt ip[-1] = NOP; /* lwz */
352 1.1 matt ip[0] = NOP; /* mtspr */
353 1.17 kleink } else if ((ip[0] & MxSPR_MASK) == MTSPR_IBAT0L) {
354 1.17 kleink if ((ip[1] & MxSPR_MASK) == MTSPR_IBAT1L)
355 1.17 kleink ip[-1] = B | 0x14; /* li */
356 1.17 kleink else
357 1.17 kleink ip[-4] = B | 0x24; /* lis */
358 1.1 matt }
359 1.1 matt }
360 1.1 matt }
361 1.1 matt
362 1.17 kleink /*
363 1.17 kleink * Sync the changed instructions.
364 1.17 kleink */
365 1.17 kleink __syncicache((void *) trapstart,
366 1.17 kleink (uintptr_t) trapend - (uintptr_t) trapstart);
367 1.41 garbled #ifdef PPC_OEA601
368 1.1 matt
369 1.1 matt /*
370 1.18 kleink * If we are on a MPC601 processor, we need to zap any tlbsync
371 1.18 kleink * instructions into sync. This differs from the above in
372 1.18 kleink * examing all kernel text, as opposed to just the exception handling.
373 1.18 kleink * We sync the icache on every instruction found since there are
374 1.18 kleink * only very few of them.
375 1.18 kleink */
376 1.18 kleink if (cpuvers == MPC601) {
377 1.18 kleink extern int kernel_text[], etext[];
378 1.18 kleink int *ip;
379 1.18 kleink
380 1.18 kleink for (ip = kernel_text; ip < etext; ip++)
381 1.18 kleink if (*ip == TLBSYNC) {
382 1.18 kleink *ip = SYNC;
383 1.18 kleink __syncicache(ip, sizeof(*ip));
384 1.18 kleink }
385 1.18 kleink }
386 1.40 garbled #endif /* PPC_OEA601 */
387 1.18 kleink
388 1.19 kleink /*
389 1.19 kleink * Configure a PSL user mask matching this processor.
390 1.19 kleink */
391 1.19 kleink cpu_psluserset = PSL_EE | PSL_PR | PSL_ME | PSL_IR | PSL_DR | PSL_RI;
392 1.19 kleink cpu_pslusermod = PSL_FP | PSL_FE0 | PSL_FE1 | PSL_LE | PSL_SE | PSL_BE;
393 1.40 garbled #ifdef PPC_OEA601
394 1.19 kleink if (cpuvers == MPC601) {
395 1.19 kleink cpu_psluserset &= PSL_601_MASK;
396 1.19 kleink cpu_pslusermod &= PSL_601_MASK;
397 1.19 kleink }
398 1.40 garbled #endif
399 1.19 kleink #ifdef ALTIVEC
400 1.19 kleink if (cpu_altivec)
401 1.19 kleink cpu_pslusermod |= PSL_VEC;
402 1.19 kleink #endif
403 1.45 phx #ifdef PPC_HIGH_VEC
404 1.45 phx cpu_psluserset |= PSL_IP; /* XXX ok? */
405 1.45 phx #endif
406 1.19 kleink
407 1.18 kleink /*
408 1.1 matt * external interrupt handler install
409 1.1 matt */
410 1.1 matt if (handler)
411 1.1 matt oea_install_extint(handler);
412 1.1 matt
413 1.45 phx __syncicache((void *)exc_base, EXC_LAST + 0x100);
414 1.1 matt
415 1.1 matt /*
416 1.1 matt * Now enable translation (and machine checks/recoverable interrupts).
417 1.1 matt */
418 1.26 sanjayl #ifdef PPC_OEA
419 1.24 perry __asm volatile ("sync; mfmsr %0; ori %0,%0,%1; mtmsr %0; isync"
420 1.1 matt : "=r"(scratch)
421 1.1 matt : "K"(PSL_IR|PSL_DR|PSL_ME|PSL_RI));
422 1.26 sanjayl #endif
423 1.1 matt
424 1.1 matt KASSERT(curcpu() == ci);
425 1.1 matt }
426 1.1 matt
427 1.40 garbled #ifdef PPC_OEA601
428 1.1 matt void
429 1.1 matt mpc601_ioseg_add(paddr_t pa, register_t len)
430 1.1 matt {
431 1.1 matt const u_int i = pa >> ADDR_SR_SHFT;
432 1.1 matt
433 1.1 matt if (len != BAT_BL_256M)
434 1.1 matt panic("mpc601_ioseg_add: len != 256M");
435 1.1 matt
436 1.1 matt /*
437 1.1 matt * Translate into an I/O segment, load it, and stash away for use
438 1.1 matt * in pmap_bootstrap().
439 1.1 matt */
440 1.1 matt iosrtable[i] = SR601(SR601_Ks, SR601_BUID_MEMFORCED, 0, i);
441 1.24 perry __asm volatile ("mtsrin %0,%1"
442 1.1 matt :: "r"(iosrtable[i]),
443 1.1 matt "r"(pa));
444 1.1 matt }
445 1.40 garbled #endif /* PPC_OEA601 */
446 1.26 sanjayl
447 1.39 garbled #if defined (PPC_OEA) || defined (PPC_OEA64_BRIDGE)
448 1.1 matt void
449 1.1 matt oea_iobat_add(paddr_t pa, register_t len)
450 1.1 matt {
451 1.1 matt static int n = 1;
452 1.1 matt const u_int i = pa >> 28;
453 1.1 matt battable[i].batl = BATL(pa, BAT_I|BAT_G, BAT_PP_RW);
454 1.1 matt battable[i].batu = BATU(pa, len, BAT_Vs);
455 1.1 matt
456 1.1 matt /*
457 1.1 matt * Let's start loading the BAT registers.
458 1.1 matt */
459 1.1 matt switch (n) {
460 1.1 matt case 1:
461 1.24 perry __asm volatile ("mtdbatl 1,%0; mtdbatu 1,%1;"
462 1.1 matt :: "r"(battable[i].batl),
463 1.1 matt "r"(battable[i].batu));
464 1.1 matt n = 2;
465 1.1 matt break;
466 1.1 matt case 2:
467 1.24 perry __asm volatile ("mtdbatl 2,%0; mtdbatu 2,%1;"
468 1.1 matt :: "r"(battable[i].batl),
469 1.1 matt "r"(battable[i].batu));
470 1.1 matt n = 3;
471 1.1 matt break;
472 1.1 matt case 3:
473 1.24 perry __asm volatile ("mtdbatl 3,%0; mtdbatu 3,%1;"
474 1.1 matt :: "r"(battable[i].batl),
475 1.1 matt "r"(battable[i].batu));
476 1.1 matt n = 4;
477 1.1 matt break;
478 1.1 matt default:
479 1.1 matt break;
480 1.3 matt }
481 1.3 matt }
482 1.3 matt
483 1.3 matt void
484 1.3 matt oea_iobat_remove(paddr_t pa)
485 1.3 matt {
486 1.3 matt register_t batu;
487 1.3 matt int i, n;
488 1.3 matt
489 1.3 matt n = pa >> ADDR_SR_SHFT;
490 1.3 matt if (!BAT_VA_MATCH_P(battable[n].batu, pa) ||
491 1.3 matt !BAT_VALID_P(battable[n].batu, PSL_PR))
492 1.3 matt return;
493 1.3 matt battable[n].batl = 0;
494 1.3 matt battable[n].batu = 0;
495 1.3 matt #define BAT_RESET(n) \
496 1.24 perry __asm volatile("mtdbatu %0,%1; mtdbatl %0,%1" :: "n"(n), "r"(0))
497 1.24 perry #define BATU_GET(n, r) __asm volatile("mfdbatu %0,%1" : "=r"(r) : "n"(n))
498 1.3 matt
499 1.3 matt for (i=1 ; i<4 ; i++) {
500 1.3 matt switch (i) {
501 1.3 matt case 1:
502 1.3 matt BATU_GET(1, batu);
503 1.3 matt if (BAT_VA_MATCH_P(batu, pa) &&
504 1.3 matt BAT_VALID_P(batu, PSL_PR))
505 1.3 matt BAT_RESET(1);
506 1.3 matt break;
507 1.3 matt case 2:
508 1.3 matt BATU_GET(2, batu);
509 1.3 matt if (BAT_VA_MATCH_P(batu, pa) &&
510 1.3 matt BAT_VALID_P(batu, PSL_PR))
511 1.3 matt BAT_RESET(2);
512 1.3 matt break;
513 1.3 matt case 3:
514 1.3 matt BATU_GET(3, batu);
515 1.3 matt if (BAT_VA_MATCH_P(batu, pa) &&
516 1.3 matt BAT_VALID_P(batu, PSL_PR))
517 1.3 matt BAT_RESET(3);
518 1.3 matt break;
519 1.3 matt default:
520 1.3 matt break;
521 1.3 matt }
522 1.1 matt }
523 1.1 matt }
524 1.1 matt
525 1.1 matt void
526 1.1 matt oea_batinit(paddr_t pa, ...)
527 1.1 matt {
528 1.1 matt struct mem_region *allmem, *availmem, *mp;
529 1.1 matt unsigned int cpuvers;
530 1.7 matt register_t msr = mfmsr();
531 1.1 matt va_list ap;
532 1.1 matt
533 1.1 matt cpuvers = mfpvr() >> 16;
534 1.1 matt
535 1.1 matt /*
536 1.1 matt * Initialize BAT registers to unmapped to not generate
537 1.1 matt * overlapping mappings below.
538 1.1 matt *
539 1.1 matt * The 601's implementation differs in the Valid bit being situated
540 1.1 matt * in the lower BAT register, and in being a unified BAT only whose
541 1.1 matt * four entries are accessed through the IBAT[0-3] SPRs.
542 1.1 matt *
543 1.1 matt * Also, while the 601 does distinguish between supervisor/user
544 1.14 uebayasi * protection keys, it does _not_ distinguish between validity in
545 1.14 uebayasi * supervisor/user mode.
546 1.1 matt */
547 1.7 matt if ((msr & (PSL_IR|PSL_DR)) == 0) {
548 1.40 garbled #ifdef PPC_OEA601
549 1.7 matt if (cpuvers == MPC601) {
550 1.24 perry __asm volatile ("mtibatl 0,%0" :: "r"(0));
551 1.24 perry __asm volatile ("mtibatl 1,%0" :: "r"(0));
552 1.24 perry __asm volatile ("mtibatl 2,%0" :: "r"(0));
553 1.24 perry __asm volatile ("mtibatl 3,%0" :: "r"(0));
554 1.40 garbled } else
555 1.40 garbled #endif /* PPC_OEA601 */
556 1.40 garbled {
557 1.24 perry __asm volatile ("mtibatu 0,%0" :: "r"(0));
558 1.24 perry __asm volatile ("mtibatu 1,%0" :: "r"(0));
559 1.24 perry __asm volatile ("mtibatu 2,%0" :: "r"(0));
560 1.24 perry __asm volatile ("mtibatu 3,%0" :: "r"(0));
561 1.24 perry __asm volatile ("mtdbatu 0,%0" :: "r"(0));
562 1.24 perry __asm volatile ("mtdbatu 1,%0" :: "r"(0));
563 1.24 perry __asm volatile ("mtdbatu 2,%0" :: "r"(0));
564 1.24 perry __asm volatile ("mtdbatu 3,%0" :: "r"(0));
565 1.7 matt }
566 1.1 matt }
567 1.1 matt
568 1.1 matt /*
569 1.1 matt * Set up BAT to map physical memory
570 1.1 matt */
571 1.40 garbled #ifdef PPC_OEA601
572 1.1 matt if (cpuvers == MPC601) {
573 1.40 garbled int i;
574 1.40 garbled
575 1.1 matt /*
576 1.1 matt * Set up battable to map the lowest 256 MB area.
577 1.1 matt * Map the lowest 32 MB area via BAT[0-3];
578 1.1 matt * BAT[01] are fixed, BAT[23] are floating.
579 1.1 matt */
580 1.1 matt for (i = 0; i < 32; i++) {
581 1.1 matt battable[i].batl = BATL601(i << 23,
582 1.1 matt BAT601_BSM_8M, BAT601_V);
583 1.1 matt battable[i].batu = BATU601(i << 23,
584 1.1 matt BAT601_M, BAT601_Ku, BAT601_PP_NONE);
585 1.1 matt }
586 1.24 perry __asm volatile ("mtibatu 0,%1; mtibatl 0,%0"
587 1.1 matt :: "r"(battable[0x00000000 >> 23].batl),
588 1.1 matt "r"(battable[0x00000000 >> 23].batu));
589 1.24 perry __asm volatile ("mtibatu 1,%1; mtibatl 1,%0"
590 1.1 matt :: "r"(battable[0x00800000 >> 23].batl),
591 1.1 matt "r"(battable[0x00800000 >> 23].batu));
592 1.24 perry __asm volatile ("mtibatu 2,%1; mtibatl 2,%0"
593 1.1 matt :: "r"(battable[0x01000000 >> 23].batl),
594 1.1 matt "r"(battable[0x01000000 >> 23].batu));
595 1.24 perry __asm volatile ("mtibatu 3,%1; mtibatl 3,%0"
596 1.1 matt :: "r"(battable[0x01800000 >> 23].batl),
597 1.1 matt "r"(battable[0x01800000 >> 23].batu));
598 1.40 garbled } else
599 1.40 garbled #endif /* PPC_OEA601 */
600 1.40 garbled {
601 1.1 matt /*
602 1.1 matt * Set up BAT0 to only map the lowest 256 MB area
603 1.1 matt */
604 1.1 matt battable[0].batl = BATL(0x00000000, BAT_M, BAT_PP_RW);
605 1.1 matt battable[0].batu = BATU(0x00000000, BAT_BL_256M, BAT_Vs);
606 1.1 matt
607 1.24 perry __asm volatile ("mtibatl 0,%0; mtibatu 0,%1;"
608 1.1 matt "mtdbatl 0,%0; mtdbatu 0,%1;"
609 1.1 matt :: "r"(battable[0].batl), "r"(battable[0].batu));
610 1.1 matt }
611 1.1 matt
612 1.1 matt /*
613 1.1 matt * Now setup other fixed bat registers
614 1.1 matt *
615 1.1 matt * Note that we still run in real mode, and the BAT
616 1.1 matt * registers were cleared above.
617 1.1 matt */
618 1.1 matt
619 1.1 matt va_start(ap, pa);
620 1.1 matt
621 1.1 matt /*
622 1.1 matt * Add any I/O BATs specificed;
623 1.1 matt * use I/O segments on the BAT-starved 601.
624 1.1 matt */
625 1.40 garbled #ifdef PPC_OEA601
626 1.1 matt if (cpuvers == MPC601) {
627 1.1 matt while (pa != 0) {
628 1.1 matt register_t len = va_arg(ap, register_t);
629 1.1 matt mpc601_ioseg_add(pa, len);
630 1.1 matt pa = va_arg(ap, paddr_t);
631 1.1 matt }
632 1.40 garbled } else
633 1.40 garbled #endif
634 1.40 garbled {
635 1.1 matt while (pa != 0) {
636 1.1 matt register_t len = va_arg(ap, register_t);
637 1.1 matt oea_iobat_add(pa, len);
638 1.1 matt pa = va_arg(ap, paddr_t);
639 1.1 matt }
640 1.1 matt }
641 1.1 matt
642 1.1 matt va_end(ap);
643 1.1 matt
644 1.1 matt /*
645 1.1 matt * Set up battable to map all RAM regions.
646 1.1 matt * This is here because mem_regions() call needs bat0 set up.
647 1.1 matt */
648 1.1 matt mem_regions(&allmem, &availmem);
649 1.40 garbled #ifdef PPC_OEA601
650 1.1 matt if (cpuvers == MPC601) {
651 1.1 matt for (mp = allmem; mp->size; mp++) {
652 1.22 he paddr_t paddr = mp->start & 0xff800000;
653 1.1 matt paddr_t end = mp->start + mp->size;
654 1.1 matt
655 1.1 matt do {
656 1.22 he u_int ix = paddr >> 23;
657 1.1 matt
658 1.22 he battable[ix].batl =
659 1.22 he BATL601(paddr, BAT601_BSM_8M, BAT601_V);
660 1.22 he battable[ix].batu =
661 1.22 he BATU601(paddr, BAT601_M, BAT601_Ku, BAT601_PP_NONE);
662 1.22 he paddr += (1 << 23);
663 1.22 he } while (paddr < end);
664 1.1 matt }
665 1.40 garbled } else
666 1.40 garbled #endif
667 1.40 garbled {
668 1.1 matt for (mp = allmem; mp->size; mp++) {
669 1.22 he paddr_t paddr = mp->start & 0xf0000000;
670 1.1 matt paddr_t end = mp->start + mp->size;
671 1.1 matt
672 1.1 matt do {
673 1.22 he u_int ix = paddr >> 28;
674 1.1 matt
675 1.22 he battable[ix].batl =
676 1.22 he BATL(paddr, BAT_M, BAT_PP_RW);
677 1.22 he battable[ix].batu =
678 1.22 he BATU(paddr, BAT_BL_256M, BAT_Vs);
679 1.22 he paddr += SEGMENT_LENGTH;
680 1.22 he } while (paddr < end);
681 1.1 matt }
682 1.1 matt }
683 1.1 matt }
684 1.39 garbled #endif /* PPC_OEA || PPC_OEA64_BRIDGE */
685 1.1 matt
686 1.1 matt void
687 1.1 matt oea_install_extint(void (*handler)(void))
688 1.1 matt {
689 1.6 matt extern int extint[], extsize[];
690 1.6 matt extern int extint_call[];
691 1.6 matt uintptr_t offset = (uintptr_t)handler - (uintptr_t)extint_call;
692 1.1 matt int omsr, msr;
693 1.1 matt
694 1.1 matt #ifdef DIAGNOSTIC
695 1.1 matt if (offset > 0x1ffffff)
696 1.1 matt panic("install_extint: %p too far away (%#lx)", handler,
697 1.1 matt (unsigned long) offset);
698 1.1 matt #endif
699 1.24 perry __asm volatile ("mfmsr %0; andi. %1,%0,%2; mtmsr %1"
700 1.1 matt : "=r" (omsr), "=r" (msr)
701 1.1 matt : "K" ((u_short)~PSL_EE));
702 1.6 matt extint_call[0] = (extint_call[0] & 0xfc000003) | offset;
703 1.45 phx __syncicache((void *)extint_call, sizeof extint_call[0]);
704 1.45 phx #ifdef PPC_HIGH_VEC
705 1.45 phx memcpy((void *)(EXC_HIGHVEC + EXC_EXI), extint, (size_t)extsize);
706 1.45 phx __syncicache((void *)(EXC_HIGHVEC + EXC_EXI), (int)extsize);
707 1.45 phx #else
708 1.6 matt memcpy((void *)EXC_EXI, extint, (size_t)extsize);
709 1.6 matt __syncicache((void *)EXC_EXI, (int)extsize);
710 1.45 phx #endif
711 1.24 perry __asm volatile ("mtmsr %0" :: "r"(omsr));
712 1.1 matt }
713 1.1 matt
714 1.1 matt /*
715 1.1 matt * Machine dependent startup code.
716 1.1 matt */
717 1.1 matt void
718 1.1 matt oea_startup(const char *model)
719 1.1 matt {
720 1.1 matt uintptr_t sz;
721 1.32 christos void *v;
722 1.1 matt vaddr_t minaddr, maxaddr;
723 1.1 matt char pbuf[9];
724 1.1 matt
725 1.1 matt KASSERT(curcpu() != NULL);
726 1.1 matt KASSERT(lwp0.l_cpu != NULL);
727 1.4 matt KASSERT(curcpu()->ci_intstk != 0);
728 1.4 matt KASSERT(curcpu()->ci_intrdepth == -1);
729 1.1 matt
730 1.47 phx sz = round_page(MSGBUFSIZE);
731 1.47 phx #ifdef MSGBUFADDR
732 1.47 phx v = (void *) MSGBUFADDR;
733 1.47 phx #else
734 1.1 matt /*
735 1.1 matt * If the msgbuf is not in segment 0, allocate KVA for it and access
736 1.1 matt * it via mapped pages. [This prevents unneeded BAT switches.]
737 1.1 matt */
738 1.32 christos v = (void *) msgbuf_paddr;
739 1.1 matt if (msgbuf_paddr + sz > SEGMENT_LENGTH) {
740 1.47 phx u_int i;
741 1.47 phx
742 1.1 matt minaddr = 0;
743 1.1 matt if (uvm_map(kernel_map, &minaddr, sz,
744 1.1 matt NULL, UVM_UNKNOWN_OFFSET, 0,
745 1.1 matt UVM_MAPFLAG(UVM_PROT_NONE, UVM_PROT_NONE,
746 1.1 matt UVM_INH_NONE, UVM_ADV_NORMAL, 0)) != 0)
747 1.1 matt panic("startup: cannot allocate VM for msgbuf");
748 1.32 christos v = (void *)minaddr;
749 1.8 thorpej for (i = 0; i < sz; i += PAGE_SIZE) {
750 1.1 matt pmap_kenter_pa(minaddr + i, msgbuf_paddr + i,
751 1.48 cegger VM_PROT_READ|VM_PROT_WRITE, 0);
752 1.1 matt }
753 1.1 matt pmap_update(pmap_kernel());
754 1.1 matt }
755 1.47 phx #endif
756 1.1 matt initmsgbuf(v, sz);
757 1.1 matt
758 1.21 lukem printf("%s%s", copyright, version);
759 1.1 matt if (model != NULL)
760 1.1 matt printf("Model: %s\n", model);
761 1.1 matt cpu_identify(NULL, 0);
762 1.1 matt
763 1.1 matt format_bytes(pbuf, sizeof(pbuf), ctob((u_int)physmem));
764 1.1 matt printf("total memory = %s\n", pbuf);
765 1.1 matt
766 1.1 matt /*
767 1.1 matt * Allocate away the pages that map to 0xDEA[CDE]xxxx. Do this after
768 1.1 matt * the bufpages are allocated in case they overlap since it's not
769 1.1 matt * fatal if we can't allocate these.
770 1.1 matt */
771 1.4 matt if (KERNEL_SR == 13 || KERNEL2_SR == 14) {
772 1.4 matt int error;
773 1.4 matt minaddr = 0xDEAC0000;
774 1.4 matt error = uvm_map(kernel_map, &minaddr, 0x30000,
775 1.4 matt NULL, UVM_UNKNOWN_OFFSET, 0,
776 1.4 matt UVM_MAPFLAG(UVM_PROT_NONE, UVM_PROT_NONE, UVM_INH_NONE,
777 1.4 matt UVM_ADV_NORMAL, UVM_FLAG_FIXED));
778 1.4 matt if (error != 0 || minaddr != 0xDEAC0000)
779 1.4 matt printf("oea_startup: failed to allocate DEAD "
780 1.4 matt "ZONE: error=%d\n", error);
781 1.1 matt }
782 1.13 pk
783 1.4 matt minaddr = 0;
784 1.1 matt
785 1.1 matt /*
786 1.1 matt * Allocate a submap for physio
787 1.1 matt */
788 1.1 matt phys_map = uvm_km_suballoc(kernel_map, &minaddr, &maxaddr,
789 1.31 thorpej VM_PHYS_SIZE, 0, false, NULL);
790 1.1 matt
791 1.1 matt format_bytes(pbuf, sizeof(pbuf), ptoa(uvmexp.free));
792 1.1 matt printf("avail memory = %s\n", pbuf);
793 1.1 matt }
794 1.1 matt
795 1.1 matt /*
796 1.1 matt * Crash dump handling.
797 1.1 matt */
798 1.1 matt
799 1.1 matt void
800 1.1 matt oea_dumpsys(void)
801 1.1 matt {
802 1.1 matt printf("dumpsys: TBD\n");
803 1.1 matt }
804 1.1 matt
805 1.1 matt /*
806 1.1 matt * Convert kernel VA to physical address
807 1.1 matt */
808 1.1 matt paddr_t
809 1.32 christos kvtop(void *addr)
810 1.1 matt {
811 1.1 matt vaddr_t va;
812 1.1 matt paddr_t pa;
813 1.1 matt uintptr_t off;
814 1.1 matt extern char end[];
815 1.1 matt
816 1.33 macallan if (addr < (void *)end)
817 1.1 matt return (paddr_t)addr;
818 1.1 matt
819 1.1 matt va = trunc_page((vaddr_t)addr);
820 1.1 matt off = (uintptr_t)addr - va;
821 1.1 matt
822 1.31 thorpej if (pmap_extract(pmap_kernel(), va, &pa) == false) {
823 1.1 matt /*printf("kvtop: zero page frame (va=0x%x)\n", addr);*/
824 1.1 matt return (paddr_t)addr;
825 1.1 matt }
826 1.1 matt
827 1.1 matt return(pa + off);
828 1.1 matt }
829 1.1 matt
830 1.1 matt /*
831 1.1 matt * Allocate vm space and mapin the I/O address
832 1.1 matt */
833 1.1 matt void *
834 1.1 matt mapiodev(paddr_t pa, psize_t len)
835 1.1 matt {
836 1.1 matt paddr_t faddr;
837 1.1 matt vaddr_t taddr, va;
838 1.1 matt int off;
839 1.1 matt
840 1.1 matt faddr = trunc_page(pa);
841 1.1 matt off = pa - faddr;
842 1.1 matt len = round_page(off + len);
843 1.20 yamt va = taddr = uvm_km_alloc(kernel_map, len, 0, UVM_KMF_VAONLY);
844 1.1 matt
845 1.1 matt if (va == 0)
846 1.1 matt return NULL;
847 1.1 matt
848 1.8 thorpej for (; len > 0; len -= PAGE_SIZE) {
849 1.48 cegger pmap_kenter_pa(taddr, faddr, VM_PROT_READ | VM_PROT_WRITE, 0);
850 1.8 thorpej faddr += PAGE_SIZE;
851 1.8 thorpej taddr += PAGE_SIZE;
852 1.1 matt }
853 1.1 matt pmap_update(pmap_kernel());
854 1.1 matt return (void *)(va + off);
855 1.1 matt }
856 1.27 matt
857 1.27 matt void
858 1.27 matt unmapiodev(vaddr_t va, vsize_t len)
859 1.27 matt {
860 1.27 matt paddr_t faddr;
861 1.27 matt
862 1.28 freza if (! va)
863 1.28 freza return;
864 1.28 freza
865 1.27 matt faddr = trunc_page(va);
866 1.27 matt len = round_page(va - faddr + len);
867 1.27 matt
868 1.27 matt pmap_kremove(faddr, len);
869 1.27 matt pmap_update(pmap_kernel());
870 1.27 matt uvm_km_free(kernel_map, faddr, len, UVM_KMF_VAONLY);
871 1.27 matt }
872 1.34 yamt
873 1.34 yamt void
874 1.34 yamt trap0(void *lr)
875 1.34 yamt {
876 1.34 yamt panic("call to null-ptr from %p", lr);
877 1.34 yamt }
878