trap.c revision 1.11 1 1.11 matt /* $NetBSD: trap.c,v 1.11 2003/02/02 20:43:23 matt Exp $ */
2 1.1 simonb
3 1.1 simonb /*
4 1.1 simonb * Copyright 2001 Wasabi Systems, Inc.
5 1.1 simonb * All rights reserved.
6 1.1 simonb *
7 1.1 simonb * Written by Eduardo Horvath and Simon Burge for Wasabi Systems, Inc.
8 1.1 simonb *
9 1.1 simonb * Redistribution and use in source and binary forms, with or without
10 1.1 simonb * modification, are permitted provided that the following conditions
11 1.1 simonb * are met:
12 1.1 simonb * 1. Redistributions of source code must retain the above copyright
13 1.1 simonb * notice, this list of conditions and the following disclaimer.
14 1.1 simonb * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 simonb * notice, this list of conditions and the following disclaimer in the
16 1.1 simonb * documentation and/or other materials provided with the distribution.
17 1.1 simonb * 3. All advertising materials mentioning features or use of this software
18 1.1 simonb * must display the following acknowledgement:
19 1.1 simonb * This product includes software developed for the NetBSD Project by
20 1.1 simonb * Wasabi Systems, Inc.
21 1.1 simonb * 4. The name of Wasabi Systems, Inc. may not be used to endorse
22 1.1 simonb * or promote products derived from this software without specific prior
23 1.1 simonb * written permission.
24 1.1 simonb *
25 1.1 simonb * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
26 1.1 simonb * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 1.1 simonb * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 1.1 simonb * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL WASABI SYSTEMS, INC
29 1.1 simonb * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 1.1 simonb * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 1.1 simonb * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 1.1 simonb * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 1.1 simonb * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 1.1 simonb * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 1.1 simonb * POSSIBILITY OF SUCH DAMAGE.
36 1.1 simonb */
37 1.1 simonb
38 1.1 simonb /*
39 1.1 simonb * Copyright (C) 1995, 1996 Wolfgang Solfrank.
40 1.1 simonb * Copyright (C) 1995, 1996 TooLs GmbH.
41 1.1 simonb * All rights reserved.
42 1.1 simonb *
43 1.1 simonb * Redistribution and use in source and binary forms, with or without
44 1.1 simonb * modification, are permitted provided that the following conditions
45 1.1 simonb * are met:
46 1.1 simonb * 1. Redistributions of source code must retain the above copyright
47 1.1 simonb * notice, this list of conditions and the following disclaimer.
48 1.1 simonb * 2. Redistributions in binary form must reproduce the above copyright
49 1.1 simonb * notice, this list of conditions and the following disclaimer in the
50 1.1 simonb * documentation and/or other materials provided with the distribution.
51 1.1 simonb * 3. All advertising materials mentioning features or use of this software
52 1.1 simonb * must display the following acknowledgement:
53 1.1 simonb * This product includes software developed by TooLs GmbH.
54 1.1 simonb * 4. The name of TooLs GmbH may not be used to endorse or promote products
55 1.1 simonb * derived from this software without specific prior written permission.
56 1.1 simonb *
57 1.1 simonb * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR
58 1.1 simonb * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
59 1.1 simonb * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
60 1.1 simonb * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
61 1.1 simonb * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
62 1.1 simonb * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
63 1.1 simonb * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
64 1.1 simonb * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
65 1.1 simonb * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
66 1.1 simonb * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
67 1.1 simonb */
68 1.1 simonb
69 1.1 simonb #include "opt_altivec.h"
70 1.1 simonb #include "opt_ddb.h"
71 1.1 simonb #include "opt_ktrace.h"
72 1.4 christos #include "opt_systrace.h"
73 1.1 simonb #include "opt_syscall_debug.h"
74 1.1 simonb
75 1.1 simonb #include <sys/param.h>
76 1.1 simonb #include <sys/proc.h>
77 1.1 simonb #include <sys/reboot.h>
78 1.1 simonb #include <sys/syscall.h>
79 1.1 simonb #include <sys/systm.h>
80 1.1 simonb #include <sys/user.h>
81 1.4 christos #ifdef KTRACE
82 1.1 simonb #include <sys/ktrace.h>
83 1.4 christos #endif
84 1.10 thorpej #include <sys/pool.h>
85 1.10 thorpej #include <sys/sa.h>
86 1.10 thorpej #include <sys/savar.h>
87 1.4 christos #ifdef SYSTRACE
88 1.4 christos #include <sys/systrace.h>
89 1.4 christos #endif
90 1.1 simonb
91 1.1 simonb #include <uvm/uvm_extern.h>
92 1.1 simonb
93 1.1 simonb #include <dev/cons.h>
94 1.1 simonb
95 1.1 simonb #include <machine/cpu.h>
96 1.1 simonb #include <machine/db_machdep.h>
97 1.1 simonb #include <machine/fpu.h>
98 1.1 simonb #include <machine/frame.h>
99 1.1 simonb #include <machine/pcb.h>
100 1.1 simonb #include <machine/psl.h>
101 1.1 simonb #include <machine/trap.h>
102 1.1 simonb
103 1.1 simonb #include <powerpc/spr.h>
104 1.1 simonb #include <powerpc/ibm4xx/pmap.h>
105 1.1 simonb #include <powerpc/ibm4xx/tlb.h>
106 1.1 simonb #include <powerpc/fpu/fpu_extern.h>
107 1.1 simonb
108 1.1 simonb /* These definitions should probably be somewhere else XXX */
109 1.1 simonb #define FIRSTARG 3 /* first argument is in reg 3 */
110 1.1 simonb #define NARGREG 8 /* 8 args are in registers */
111 1.1 simonb #define MOREARGS(sp) ((caddr_t)((int)(sp) + 8)) /* more args go here */
112 1.1 simonb
113 1.10 thorpej static int fix_unaligned __P((struct lwp *l, struct trapframe *frame));
114 1.1 simonb
115 1.1 simonb void trap __P((struct trapframe *)); /* Called from locore / trap_subr */
116 1.1 simonb /* Why are these not defined in a header? */
117 1.1 simonb int badaddr __P((void *, size_t));
118 1.1 simonb int badaddr_read __P((void *, size_t, int *));
119 1.1 simonb int ctx_setup __P((int, int));
120 1.1 simonb
121 1.1 simonb #ifdef DEBUG
122 1.1 simonb #define TDB_ALL 0x1
123 1.1 simonb int trapdebug = /* TDB_ALL */ 0;
124 1.1 simonb #define DBPRINTF(x, y) if (trapdebug & (x)) printf y
125 1.1 simonb #else
126 1.1 simonb #define DBPRINTF(x, y)
127 1.1 simonb #endif
128 1.1 simonb
129 1.1 simonb void
130 1.1 simonb trap(struct trapframe *frame)
131 1.1 simonb {
132 1.10 thorpej struct lwp *l = curlwp;
133 1.10 thorpej struct proc *p = l ? l->l_proc : NULL;
134 1.1 simonb int type = frame->exc;
135 1.1 simonb int ftype, rv;
136 1.1 simonb
137 1.10 thorpej KASSERT(l == 0 || (l->l_stat == LSONPROC));
138 1.1 simonb
139 1.1 simonb if (frame->srr1 & PSL_PR)
140 1.1 simonb type |= EXC_USER;
141 1.1 simonb
142 1.1 simonb ftype = VM_PROT_READ;
143 1.1 simonb
144 1.7 simonb DBPRINTF(TDB_ALL, ("trap(%x) at %x from frame %p &frame %p\n",
145 1.1 simonb type, frame->srr0, frame, &frame));
146 1.1 simonb
147 1.1 simonb switch (type) {
148 1.1 simonb case EXC_DEBUG|EXC_USER:
149 1.1 simonb {
150 1.1 simonb int srr2, srr3;
151 1.1 simonb __asm __volatile("mfspr %0,0x3f0" : "=r" (rv), "=r" (srr2), "=r" (srr3) :);
152 1.1 simonb printf("debug reg is %x srr2 %x srr3 %x\n", rv, srr2, srr3);
153 1.1 simonb }
154 1.1 simonb /*
155 1.1 simonb * DEBUG intr -- probably single-step.
156 1.1 simonb */
157 1.1 simonb case EXC_TRC|EXC_USER:
158 1.10 thorpej KERNEL_PROC_LOCK(l);
159 1.1 simonb frame->srr1 &= ~PSL_SE;
160 1.10 thorpej trapsignal(l, SIGTRAP, EXC_TRC);
161 1.10 thorpej KERNEL_PROC_UNLOCK(l);
162 1.1 simonb break;
163 1.7 simonb
164 1.1 simonb /* If we could not find and install appropriate TLB entry, fall through */
165 1.7 simonb
166 1.1 simonb case EXC_DSI:
167 1.1 simonb /* FALLTHROUGH */
168 1.1 simonb case EXC_DTMISS:
169 1.1 simonb {
170 1.1 simonb struct vm_map *map;
171 1.1 simonb vaddr_t va;
172 1.11 matt struct faultbuf *fb = NULL;
173 1.1 simonb
174 1.1 simonb KERNEL_LOCK(LK_CANRECURSE|LK_EXCLUSIVE);
175 1.11 matt va = frame->dar;
176 1.11 matt if (frame->tf_xtra[TF_PID] == KERNEL_PID) {
177 1.1 simonb map = kernel_map;
178 1.1 simonb } else {
179 1.1 simonb map = &p->p_vmspace->vm_map;
180 1.1 simonb }
181 1.1 simonb
182 1.11 matt if (frame->tf_xtra[TF_ESR] & (ESR_DST|ESR_DIZ))
183 1.3 chs ftype = VM_PROT_WRITE;
184 1.1 simonb
185 1.7 simonb DBPRINTF(TDB_ALL, ("trap(EXC_DSI) at %x %s fault on %p esr %x\n",
186 1.11 matt frame->srr0, (ftype&VM_PROT_WRITE) ? "write" : "read", (void *)va, frame->tf_xtra[TF_ESR]));
187 1.1 simonb rv = uvm_fault(map, trunc_page(va), 0, ftype);
188 1.1 simonb KERNEL_UNLOCK();
189 1.1 simonb if (rv == 0)
190 1.1 simonb goto done;
191 1.10 thorpej if ((fb = l->l_addr->u_pcb.pcb_onfault) != NULL) {
192 1.11 matt frame->tf_xtra[TF_PID] = KERNEL_PID;
193 1.11 matt frame->srr0 = fb->fb_pc;
194 1.1 simonb frame->srr1 |= PSL_IR; /* Re-enable IMMU */
195 1.11 matt frame->fixreg[1] = fb->fb_sp;
196 1.11 matt frame->fixreg[2] = fb->fb_r2;
197 1.1 simonb frame->fixreg[3] = 1; /* Return TRUE */
198 1.11 matt frame->cr = fb->fb_cr;
199 1.11 matt memcpy(&frame->fixreg[13], fb->fb_fixreg,
200 1.11 matt sizeof(fb->fb_fixreg));
201 1.1 simonb goto done;
202 1.1 simonb }
203 1.1 simonb }
204 1.1 simonb goto brain_damage;
205 1.7 simonb
206 1.1 simonb case EXC_DSI|EXC_USER:
207 1.1 simonb /* FALLTHROUGH */
208 1.1 simonb case EXC_DTMISS|EXC_USER:
209 1.10 thorpej KERNEL_PROC_LOCK(l);
210 1.7 simonb
211 1.11 matt if (frame->tf_xtra[TF_ESR] & (ESR_DST|ESR_DIZ))
212 1.3 chs ftype = VM_PROT_WRITE;
213 1.1 simonb
214 1.7 simonb DBPRINTF(TDB_ALL, ("trap(EXC_DSI|EXC_USER) at %x %s fault on %x %x\n",
215 1.11 matt frame->srr0, (ftype&VM_PROT_WRITE) ? "write" : "read", frame->dar, frame->tf_xtra[TF_ESR]));
216 1.10 thorpej KASSERT(l == curlwp && (l->l_stat == LSONPROC));
217 1.1 simonb rv = uvm_fault(&p->p_vmspace->vm_map,
218 1.11 matt trunc_page(frame->dar), 0, ftype);
219 1.1 simonb if (rv == 0) {
220 1.10 thorpej KERNEL_PROC_UNLOCK(l);
221 1.1 simonb break;
222 1.1 simonb }
223 1.1 simonb if (rv == ENOMEM) {
224 1.10 thorpej printf("UVM: pid %d (%s) lid %d, uid %d killed: "
225 1.1 simonb "out of swap\n",
226 1.10 thorpej p->p_pid, p->p_comm, l->l_lid,
227 1.1 simonb p->p_cred && p->p_ucred ?
228 1.1 simonb p->p_ucred->cr_uid : -1);
229 1.10 thorpej trapsignal(l, SIGKILL, EXC_DSI);
230 1.1 simonb } else {
231 1.10 thorpej trapsignal(l, SIGSEGV, EXC_DSI);
232 1.1 simonb }
233 1.10 thorpej KERNEL_PROC_UNLOCK(l);
234 1.1 simonb break;
235 1.1 simonb case EXC_ITMISS|EXC_USER:
236 1.1 simonb case EXC_ISI|EXC_USER:
237 1.10 thorpej KERNEL_PROC_LOCK(l);
238 1.1 simonb ftype = VM_PROT_READ | VM_PROT_EXECUTE;
239 1.7 simonb DBPRINTF(TDB_ALL, ("trap(EXC_ISI|EXC_USER) at %x %s fault on %x tf %p\n",
240 1.1 simonb frame->srr0, (ftype&VM_PROT_WRITE) ? "write" : "read", frame->srr0, frame));
241 1.1 simonb rv = uvm_fault(&p->p_vmspace->vm_map, trunc_page(frame->srr0), 0, ftype);
242 1.1 simonb if (rv == 0) {
243 1.10 thorpej KERNEL_PROC_UNLOCK(l);
244 1.1 simonb break;
245 1.1 simonb }
246 1.10 thorpej trapsignal(l, SIGSEGV, EXC_ISI);
247 1.10 thorpej KERNEL_PROC_UNLOCK(l);
248 1.1 simonb break;
249 1.1 simonb
250 1.1 simonb case EXC_AST|EXC_USER:
251 1.11 matt curcpu()->ci_astpending = 0; /* we are about to do it */
252 1.10 thorpej KERNEL_PROC_LOCK(l);
253 1.1 simonb uvmexp.softs++;
254 1.1 simonb if (p->p_flag & P_OWEUPC) {
255 1.1 simonb p->p_flag &= ~P_OWEUPC;
256 1.1 simonb ADDUPROF(p);
257 1.1 simonb }
258 1.1 simonb /* Check whether we are being preempted. */
259 1.11 matt if (curcpu()->ci_want_resched)
260 1.10 thorpej preempt(0);
261 1.10 thorpej KERNEL_PROC_UNLOCK(l);
262 1.1 simonb break;
263 1.1 simonb
264 1.1 simonb
265 1.1 simonb case EXC_ALI|EXC_USER:
266 1.10 thorpej KERNEL_PROC_LOCK(l);
267 1.10 thorpej if (fix_unaligned(l, frame) != 0)
268 1.10 thorpej trapsignal(l, SIGBUS, EXC_ALI);
269 1.1 simonb else
270 1.1 simonb frame->srr0 += 4;
271 1.10 thorpej KERNEL_PROC_UNLOCK(l);
272 1.1 simonb break;
273 1.1 simonb
274 1.1 simonb case EXC_PGM|EXC_USER:
275 1.7 simonb /*
276 1.7 simonb * Illegal insn:
277 1.1 simonb *
278 1.7 simonb * let's try to see if it's FPU and can be emulated.
279 1.1 simonb */
280 1.1 simonb uvmexp.traps ++;
281 1.10 thorpej if (!(l->l_addr->u_pcb.pcb_flags & PCB_FPU)) {
282 1.10 thorpej memset(&l->l_addr->u_pcb.pcb_fpu, 0,
283 1.10 thorpej sizeof l->l_addr->u_pcb.pcb_fpu);
284 1.10 thorpej l->l_addr->u_pcb.pcb_flags |= PCB_FPU;
285 1.1 simonb }
286 1.1 simonb
287 1.7 simonb if ((rv = fpu_emulate(frame,
288 1.10 thorpej (struct fpreg *)&l->l_addr->u_pcb.pcb_fpu))) {
289 1.10 thorpej KERNEL_PROC_LOCK(l);
290 1.10 thorpej trapsignal(l, rv, EXC_PGM);
291 1.10 thorpej KERNEL_PROC_UNLOCK(l);
292 1.1 simonb }
293 1.1 simonb break;
294 1.1 simonb
295 1.1 simonb case EXC_MCHK:
296 1.1 simonb {
297 1.11 matt struct faultbuf *fb;
298 1.1 simonb
299 1.10 thorpej if ((fb = l->l_addr->u_pcb.pcb_onfault) != NULL) {
300 1.11 matt frame->tf_xtra[TF_PID] = KERNEL_PID;
301 1.11 matt frame->srr0 = fb->fb_pc;
302 1.1 simonb frame->srr1 |= PSL_IR; /* Re-enable IMMU */
303 1.11 matt frame->fixreg[1] = fb->fb_sp;
304 1.11 matt frame->fixreg[2] = fb->fb_r2;
305 1.1 simonb frame->fixreg[3] = 1; /* Return TRUE */
306 1.11 matt frame->cr = fb->fb_cr;
307 1.11 matt memcpy(&frame->fixreg[13], fb->fb_fixreg,
308 1.11 matt sizeof(fb->fb_fixreg));
309 1.1 simonb goto done;
310 1.1 simonb }
311 1.1 simonb }
312 1.1 simonb goto brain_damage;
313 1.1 simonb default:
314 1.1 simonb brain_damage:
315 1.11 matt printf("trap type 0x%x at 0x%lx\n", type, frame->srr0);
316 1.1 simonb #ifdef DDB
317 1.1 simonb if (kdb_trap(type, frame))
318 1.1 simonb goto done;
319 1.1 simonb #endif
320 1.1 simonb #ifdef TRAP_PANICWAIT
321 1.1 simonb printf("Press a key to panic.\n");
322 1.1 simonb cngetc();
323 1.1 simonb #endif
324 1.1 simonb panic("trap");
325 1.1 simonb }
326 1.1 simonb
327 1.1 simonb /* Take pending signals. */
328 1.1 simonb {
329 1.1 simonb int sig;
330 1.1 simonb
331 1.10 thorpej while ((sig = CURSIG(l)) != 0)
332 1.1 simonb postsig(sig);
333 1.1 simonb }
334 1.1 simonb
335 1.10 thorpej /* Invoke per-process kernel-exit handling, if any */
336 1.10 thorpej if (p->p_userret)
337 1.10 thorpej (p->p_userret)(l, p->p_userret_arg);
338 1.10 thorpej
339 1.10 thorpej /* Invoke any pending upcalls */
340 1.10 thorpej while (l->l_flag & L_SA_UPCALL)
341 1.10 thorpej sa_upcall_userret(l);
342 1.10 thorpej
343 1.10 thorpej curcpu()->ci_schedstate.spc_curpriority = l->l_priority = l->l_usrpri;
344 1.1 simonb done:
345 1.9 thorpej return;
346 1.1 simonb }
347 1.1 simonb
348 1.1 simonb int
349 1.1 simonb ctx_setup(int ctx, int srr1)
350 1.1 simonb {
351 1.1 simonb volatile struct pmap *pm;
352 1.1 simonb
353 1.1 simonb /* Update PID if we're returning to user mode. */
354 1.1 simonb if (srr1 & PSL_PR) {
355 1.1 simonb pm = curproc->p_vmspace->vm_map.pmap;
356 1.1 simonb if (!pm->pm_ctx) {
357 1.1 simonb ctx_alloc((struct pmap *)pm);
358 1.1 simonb }
359 1.1 simonb ctx = pm->pm_ctx;
360 1.1 simonb if (srr1 & PSL_SE) {
361 1.1 simonb int dbreg, mask = 0x48000000;
362 1.1 simonb /*
363 1.1 simonb * Set the Internal Debug and
364 1.1 simonb * Instruction Completion bits of
365 1.1 simonb * the DBCR0 register.
366 1.1 simonb *
367 1.1 simonb * XXX this is also used by jtag debuggers...
368 1.1 simonb */
369 1.1 simonb __asm __volatile("mfspr %0,0x3f2;"
370 1.1 simonb "or %0,%0,%1;"
371 1.1 simonb "mtspr 0x3f2,%0;" :
372 1.1 simonb "=&r" (dbreg) : "r" (mask));
373 1.1 simonb }
374 1.1 simonb }
375 1.1 simonb else if (!ctx) {
376 1.1 simonb ctx = KERNEL_PID;
377 1.1 simonb }
378 1.1 simonb return (ctx);
379 1.1 simonb }
380 1.1 simonb
381 1.1 simonb /*
382 1.1 simonb * Used by copyin()/copyout()
383 1.1 simonb */
384 1.1 simonb extern vaddr_t vmaprange __P((struct proc *, vaddr_t, vsize_t, int));
385 1.1 simonb extern void vunmaprange __P((vaddr_t, vsize_t));
386 1.1 simonb static int bigcopyin __P((const void *, void *, size_t ));
387 1.1 simonb static int bigcopyout __P((const void *, void *, size_t ));
388 1.1 simonb
389 1.1 simonb int
390 1.1 simonb copyin(const void *udaddr, void *kaddr, size_t len)
391 1.1 simonb {
392 1.1 simonb struct pmap *pm = curproc->p_vmspace->vm_map.pmap;
393 1.1 simonb int msr, pid, tmp, ctx;
394 1.11 matt struct faultbuf env;
395 1.1 simonb
396 1.1 simonb /* For bigger buffers use the faster copy */
397 1.1 simonb if (len > 256) return (bigcopyin(udaddr, kaddr, len));
398 1.1 simonb
399 1.11 matt if (setfault(&env)) {
400 1.1 simonb curpcb->pcb_onfault = 0;
401 1.1 simonb return EFAULT;
402 1.1 simonb }
403 1.1 simonb
404 1.1 simonb if (!(ctx = pm->pm_ctx)) {
405 1.1 simonb /* No context -- assign it one */
406 1.1 simonb ctx_alloc(pm);
407 1.1 simonb ctx = pm->pm_ctx;
408 1.1 simonb }
409 1.1 simonb
410 1.1 simonb asm volatile("addi %6,%6,1; mtctr %6;" /* Set up counter */
411 1.1 simonb "mfmsr %0;" /* Save MSR */
412 1.1 simonb "li %1,0x20; "
413 1.1 simonb "andc %1,%0,%1; mtmsr %1;" /* Disable IMMU */
414 1.1 simonb "mfpid %1;" /* Save old PID */
415 1.1 simonb "sync; isync;"
416 1.1 simonb
417 1.1 simonb "1: bdz 2f;" /* while len */
418 1.1 simonb "mtpid %3; sync;" /* Load user ctx */
419 1.1 simonb "lbz %2,0(%4); addi %4,%4,1;" /* Load byte */
420 1.1 simonb "sync; isync;"
421 1.1 simonb "mtpid %1;sync;"
422 1.1 simonb "stb %2,0(%5); dcbf 0,%5; addi %5,%5,1;" /* Store kernel byte */
423 1.1 simonb "sync; isync;"
424 1.1 simonb "b 1b;" /* repeat */
425 1.1 simonb
426 1.1 simonb "2: mtpid %1; mtmsr %0;" /* Restore PID and MSR */
427 1.1 simonb "sync; isync;"
428 1.1 simonb : "=&r" (msr), "=&r" (pid), "=&r" (tmp)
429 1.1 simonb : "r" (ctx), "r" (udaddr), "r" (kaddr), "r" (len));
430 1.1 simonb
431 1.1 simonb curpcb->pcb_onfault = 0;
432 1.1 simonb return 0;
433 1.1 simonb }
434 1.1 simonb
435 1.1 simonb static int
436 1.1 simonb bigcopyin(const void *udaddr, void *kaddr, size_t len)
437 1.1 simonb {
438 1.1 simonb const char *up;
439 1.1 simonb char *kp = kaddr;
440 1.10 thorpej struct lwp *l = curlwp;
441 1.10 thorpej struct proc *p;
442 1.1 simonb int error;
443 1.1 simonb
444 1.10 thorpej if (!l) {
445 1.1 simonb return EFAULT;
446 1.1 simonb }
447 1.1 simonb
448 1.10 thorpej p = l->l_proc;
449 1.10 thorpej
450 1.1 simonb /*
451 1.7 simonb * Stolen from physio():
452 1.1 simonb */
453 1.10 thorpej PHOLD(l);
454 1.1 simonb error = uvm_vslock(p, (caddr_t)udaddr, len, VM_PROT_READ);
455 1.1 simonb if (error) {
456 1.10 thorpej PRELE(l);
457 1.1 simonb return EFAULT;
458 1.1 simonb }
459 1.1 simonb up = (char *)vmaprange(p, (vaddr_t)udaddr, len, VM_PROT_READ);
460 1.1 simonb
461 1.2 wiz memcpy(kp, up, len);
462 1.1 simonb vunmaprange((vaddr_t)up, len);
463 1.1 simonb uvm_vsunlock(p, (caddr_t)udaddr, len);
464 1.10 thorpej PRELE(l);
465 1.1 simonb
466 1.7 simonb return 0;
467 1.1 simonb }
468 1.1 simonb
469 1.1 simonb int
470 1.1 simonb copyout(const void *kaddr, void *udaddr, size_t len)
471 1.1 simonb {
472 1.1 simonb struct pmap *pm = curproc->p_vmspace->vm_map.pmap;
473 1.1 simonb int msr, pid, tmp, ctx;
474 1.11 matt struct faultbuf env;
475 1.1 simonb
476 1.1 simonb /* For big copies use more efficient routine */
477 1.1 simonb if (len > 256) return (bigcopyout(kaddr, udaddr, len));
478 1.1 simonb
479 1.11 matt if (setfault(&env)) {
480 1.1 simonb curpcb->pcb_onfault = 0;
481 1.1 simonb return EFAULT;
482 1.1 simonb }
483 1.1 simonb
484 1.1 simonb if (!(ctx = pm->pm_ctx)) {
485 1.1 simonb /* No context -- assign it one */
486 1.1 simonb ctx_alloc(pm);
487 1.1 simonb ctx = pm->pm_ctx;
488 1.1 simonb }
489 1.1 simonb
490 1.1 simonb asm volatile("addi %6,%6,1; mtctr %6;" /* Set up counter */
491 1.1 simonb "mfmsr %0;" /* Save MSR */
492 1.1 simonb "li %1,0x20; "
493 1.1 simonb "andc %1,%0,%1; mtmsr %1;" /* Disable IMMU */
494 1.1 simonb "mfpid %1;" /* Save old PID */
495 1.1 simonb "sync; isync;"
496 1.1 simonb
497 1.1 simonb "1: bdz 2f;" /* while len */
498 1.1 simonb "mtpid %1;sync;"
499 1.1 simonb "lbz %2,0(%5); addi %5,%5,1;" /* Load kernel byte */
500 1.1 simonb "sync; isync;"
501 1.1 simonb "mtpid %3; sync;" /* Load user ctx */
502 1.1 simonb "stb %2,0(%4); dcbf 0,%4; addi %4,%4,1;" /* Store user byte */
503 1.1 simonb "sync; isync;"
504 1.1 simonb "b 1b;" /* repeat */
505 1.1 simonb
506 1.1 simonb "2: mtpid %1; mtmsr %0;" /* Restore PID and MSR */
507 1.1 simonb "sync; isync;"
508 1.1 simonb : "=&r" (msr), "=&r" (pid), "=&r" (tmp)
509 1.1 simonb : "r" (ctx), "r" (udaddr), "r" (kaddr), "r" (len));
510 1.1 simonb
511 1.1 simonb curpcb->pcb_onfault = 0;
512 1.1 simonb return 0;
513 1.1 simonb }
514 1.1 simonb
515 1.1 simonb static int
516 1.1 simonb bigcopyout(const void *kaddr, void *udaddr, size_t len)
517 1.1 simonb {
518 1.1 simonb char *up;
519 1.1 simonb const char *kp = (char *)kaddr;
520 1.10 thorpej struct lwp *l = curlwp;
521 1.10 thorpej struct proc *p;
522 1.1 simonb int error;
523 1.1 simonb
524 1.10 thorpej if (!l) {
525 1.1 simonb return EFAULT;
526 1.1 simonb }
527 1.1 simonb
528 1.10 thorpej p = l->l_proc;
529 1.10 thorpej
530 1.1 simonb /*
531 1.7 simonb * Stolen from physio():
532 1.1 simonb */
533 1.10 thorpej PHOLD(l);
534 1.3 chs error = uvm_vslock(p, udaddr, len, VM_PROT_WRITE);
535 1.1 simonb if (error) {
536 1.10 thorpej PRELE(l);
537 1.1 simonb return EFAULT;
538 1.1 simonb }
539 1.7 simonb up = (char *)vmaprange(p, (vaddr_t)udaddr, len,
540 1.1 simonb VM_PROT_READ|VM_PROT_WRITE);
541 1.1 simonb
542 1.2 wiz memcpy(up, kp, len);
543 1.1 simonb vunmaprange((vaddr_t)up, len);
544 1.1 simonb uvm_vsunlock(p, udaddr, len);
545 1.10 thorpej PRELE(l);
546 1.1 simonb
547 1.7 simonb return 0;
548 1.1 simonb }
549 1.1 simonb
550 1.1 simonb /*
551 1.1 simonb * kcopy(const void *src, void *dst, size_t len);
552 1.1 simonb *
553 1.1 simonb * Copy len bytes from src to dst, aborting if we encounter a fatal
554 1.1 simonb * page fault.
555 1.1 simonb *
556 1.1 simonb * kcopy() _must_ save and restore the old fault handler since it is
557 1.1 simonb * called by uiomove(), which may be in the path of servicing a non-fatal
558 1.1 simonb * page fault.
559 1.1 simonb */
560 1.1 simonb int
561 1.1 simonb kcopy(const void *src, void *dst, size_t len)
562 1.1 simonb {
563 1.11 matt struct faultbuf env, *oldfault;
564 1.1 simonb
565 1.1 simonb oldfault = curpcb->pcb_onfault;
566 1.11 matt if (setfault(&env)) {
567 1.1 simonb curpcb->pcb_onfault = oldfault;
568 1.1 simonb return EFAULT;
569 1.1 simonb }
570 1.1 simonb
571 1.2 wiz memcpy(dst, src, len);
572 1.1 simonb
573 1.1 simonb curpcb->pcb_onfault = oldfault;
574 1.1 simonb return 0;
575 1.1 simonb }
576 1.1 simonb
577 1.1 simonb int
578 1.1 simonb badaddr(void *addr, size_t size)
579 1.1 simonb {
580 1.1 simonb
581 1.1 simonb return badaddr_read(addr, size, NULL);
582 1.1 simonb }
583 1.1 simonb
584 1.1 simonb int
585 1.1 simonb badaddr_read(void *addr, size_t size, int *rptr)
586 1.1 simonb {
587 1.11 matt struct faultbuf env;
588 1.1 simonb int x;
589 1.1 simonb
590 1.1 simonb /* Get rid of any stale machine checks that have been waiting. */
591 1.1 simonb __asm __volatile ("sync; isync");
592 1.1 simonb
593 1.11 matt if (setfault(&env)) {
594 1.1 simonb curpcb->pcb_onfault = 0;
595 1.1 simonb __asm __volatile ("sync");
596 1.1 simonb return 1;
597 1.1 simonb }
598 1.1 simonb
599 1.1 simonb __asm __volatile ("sync");
600 1.1 simonb
601 1.1 simonb switch (size) {
602 1.1 simonb case 1:
603 1.1 simonb x = *(volatile int8_t *)addr;
604 1.1 simonb break;
605 1.1 simonb case 2:
606 1.1 simonb x = *(volatile int16_t *)addr;
607 1.1 simonb break;
608 1.1 simonb case 4:
609 1.1 simonb x = *(volatile int32_t *)addr;
610 1.1 simonb break;
611 1.1 simonb default:
612 1.1 simonb panic("badaddr: invalid size (%d)", size);
613 1.1 simonb }
614 1.1 simonb
615 1.1 simonb /* Make sure we took the machine check, if we caused one. */
616 1.1 simonb __asm __volatile ("sync; isync");
617 1.1 simonb
618 1.1 simonb curpcb->pcb_onfault = 0;
619 1.1 simonb __asm __volatile ("sync"); /* To be sure. */
620 1.1 simonb
621 1.1 simonb /* Use the value to avoid reorder. */
622 1.1 simonb if (rptr)
623 1.1 simonb *rptr = x;
624 1.1 simonb
625 1.1 simonb return 0;
626 1.1 simonb }
627 1.1 simonb
628 1.1 simonb /*
629 1.1 simonb * For now, this only deals with the particular unaligned access case
630 1.1 simonb * that gcc tends to generate. Eventually it should handle all of the
631 1.1 simonb * possibilities that can happen on a 32-bit PowerPC in big-endian mode.
632 1.1 simonb */
633 1.1 simonb
634 1.1 simonb static int
635 1.10 thorpej fix_unaligned(struct lwp *l, struct trapframe *frame)
636 1.1 simonb {
637 1.1 simonb
638 1.1 simonb return -1;
639 1.10 thorpej }
640 1.10 thorpej
641 1.10 thorpej /*
642 1.10 thorpej * Start a new LWP
643 1.10 thorpej */
644 1.10 thorpej void
645 1.10 thorpej startlwp(arg)
646 1.10 thorpej void *arg;
647 1.10 thorpej {
648 1.10 thorpej int err;
649 1.10 thorpej ucontext_t *uc = arg;
650 1.10 thorpej struct lwp *l = curlwp;
651 1.10 thorpej
652 1.10 thorpej err = cpu_setmcontext(l, &uc->uc_mcontext, uc->uc_flags);
653 1.10 thorpej #if DIAGNOSTIC
654 1.10 thorpej if (err) {
655 1.10 thorpej printf("Error %d from cpu_setmcontext.", err);
656 1.10 thorpej }
657 1.10 thorpej #endif
658 1.10 thorpej pool_put(&lwp_uc_pool, uc);
659 1.10 thorpej
660 1.10 thorpej upcallret(l);
661 1.10 thorpej }
662 1.10 thorpej
663 1.10 thorpej /*
664 1.10 thorpej * XXX This is a terrible name.
665 1.10 thorpej */
666 1.10 thorpej void
667 1.10 thorpej upcallret(l)
668 1.10 thorpej struct lwp *l;
669 1.10 thorpej {
670 1.10 thorpej int sig;
671 1.10 thorpej
672 1.10 thorpej /* Take pending signals. */
673 1.10 thorpej while ((sig = CURSIG(l)) != 0)
674 1.10 thorpej postsig(sig);
675 1.10 thorpej
676 1.10 thorpej /* Invoke per-process kernel-exit handling, if any */
677 1.10 thorpej if (l->l_proc->p_userret)
678 1.10 thorpej (l->l_proc->p_userret)(l, l->l_proc->p_userret_arg);
679 1.10 thorpej
680 1.10 thorpej /* Invoke any pending upcalls */
681 1.10 thorpej while (l->l_flag & L_SA_UPCALL)
682 1.10 thorpej sa_upcall_userret(l);
683 1.10 thorpej
684 1.10 thorpej curcpu()->ci_schedstate.spc_curpriority = l->l_priority = l->l_usrpri;
685 1.1 simonb }
686