fault.c revision 1.25 1 1.25 bjh21 /* $NetBSD: fault.c,v 1.25 2002/10/13 12:24:57 bjh21 Exp $ */
2 1.1 chris
3 1.1 chris /*
4 1.1 chris * Copyright (c) 1994-1997 Mark Brinicombe.
5 1.1 chris * Copyright (c) 1994 Brini.
6 1.1 chris * All rights reserved.
7 1.1 chris *
8 1.1 chris * This code is derived from software written for Brini by Mark Brinicombe
9 1.1 chris *
10 1.1 chris * Redistribution and use in source and binary forms, with or without
11 1.1 chris * modification, are permitted provided that the following conditions
12 1.1 chris * are met:
13 1.1 chris * 1. Redistributions of source code must retain the above copyright
14 1.1 chris * notice, this list of conditions and the following disclaimer.
15 1.1 chris * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 chris * notice, this list of conditions and the following disclaimer in the
17 1.1 chris * documentation and/or other materials provided with the distribution.
18 1.1 chris * 3. All advertising materials mentioning features or use of this software
19 1.1 chris * must display the following acknowledgement:
20 1.1 chris * This product includes software developed by Brini.
21 1.1 chris * 4. The name of the company nor the name of the author may be used to
22 1.1 chris * endorse or promote products derived from this software without specific
23 1.1 chris * prior written permission.
24 1.1 chris *
25 1.1 chris * THIS SOFTWARE IS PROVIDED BY BRINI ``AS IS'' AND ANY EXPRESS OR IMPLIED
26 1.1 chris * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
27 1.1 chris * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
28 1.1 chris * IN NO EVENT SHALL BRINI OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT,
29 1.1 chris * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
30 1.1 chris * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
31 1.1 chris * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
32 1.1 chris * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
33 1.1 chris * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
34 1.1 chris * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
35 1.1 chris * SUCH DAMAGE.
36 1.1 chris *
37 1.1 chris * RiscBSD kernel project
38 1.1 chris *
39 1.1 chris * fault.c
40 1.1 chris *
41 1.1 chris * Fault handlers
42 1.1 chris *
43 1.1 chris * Created : 28/11/94
44 1.1 chris */
45 1.1 chris
46 1.1 chris #include "opt_ddb.h"
47 1.1 chris #include "opt_pmap_debug.h"
48 1.1 chris
49 1.1 chris #include <sys/types.h>
50 1.25 bjh21 __KERNEL_RCSID(0, "$NetBSD: fault.c,v 1.25 2002/10/13 12:24:57 bjh21 Exp $");
51 1.21 bjh21
52 1.1 chris #include <sys/param.h>
53 1.1 chris #include <sys/systm.h>
54 1.1 chris #include <sys/proc.h>
55 1.1 chris #include <sys/user.h>
56 1.1 chris #include <sys/kernel.h>
57 1.1 chris
58 1.1 chris #include <uvm/uvm_extern.h>
59 1.18 thorpej
60 1.18 thorpej #include <arm/cpuconf.h>
61 1.1 chris
62 1.1 chris #include <machine/frame.h>
63 1.5 thorpej #include <arm/arm32/katelib.h>
64 1.1 chris #include <machine/cpu.h>
65 1.2 matt #include <machine/intr.h>
66 1.1 chris #ifdef DDB
67 1.1 chris #include <machine/db_machdep.h>
68 1.1 chris #endif
69 1.1 chris
70 1.1 chris #include <arch/arm/arm/disassem.h>
71 1.7 chris #include <arm/arm32/machdep.h>
72 1.7 chris
73 1.1 chris extern char fusubailout[];
74 1.1 chris
75 1.7 chris static void report_abort __P((const char *, u_int, u_int, u_int));
76 1.7 chris
77 1.1 chris /* Abort code */
78 1.1 chris
79 1.1 chris /* Define text descriptions of the different aborts */
80 1.1 chris
81 1.1 chris static const char *aborts[16] = {
82 1.1 chris "Write buffer fault",
83 1.1 chris "Alignment fault",
84 1.1 chris "Write buffer fault",
85 1.1 chris "Alignment fault",
86 1.1 chris "Bus error (LF section)",
87 1.1 chris "Translation fault (section)",
88 1.1 chris "Bus error (page)",
89 1.1 chris "Translation fault (page)",
90 1.1 chris "Bus error (section)",
91 1.1 chris "Domain error (section)",
92 1.1 chris "Bus error (page)",
93 1.1 chris "Domain error (page)",
94 1.1 chris "Bus error trans (L1)",
95 1.1 chris "Permission error (section)",
96 1.1 chris "Bus error trans (L2)",
97 1.1 chris "Permission error (page)"
98 1.1 chris };
99 1.1 chris
100 1.7 chris static void
101 1.1 chris report_abort(prefix, fault_status, fault_address, fault_pc)
102 1.1 chris const char *prefix;
103 1.1 chris u_int fault_status;
104 1.1 chris u_int fault_address;
105 1.1 chris u_int fault_pc;
106 1.1 chris {
107 1.1 chris #ifndef DEBUG
108 1.1 chris if (prefix == NULL) {
109 1.1 chris #endif
110 1.1 chris if (prefix)
111 1.1 chris printf("%s ", prefix);
112 1.1 chris printf("Data abort: '%s' status=%03x address=%08x PC=%08x\n",
113 1.1 chris aborts[fault_status & FAULT_TYPE_MASK],
114 1.1 chris fault_status & 0xfff, fault_address, fault_pc);
115 1.1 chris #ifndef DEBUG
116 1.1 chris }
117 1.1 chris #endif
118 1.1 chris }
119 1.1 chris
120 1.3 thorpej static __volatile int data_abort_expected;
121 1.3 thorpej static __volatile int data_abort_received;
122 1.3 thorpej
123 1.3 thorpej int
124 1.3 thorpej badaddr_read(void *addr, size_t size, void *rptr)
125 1.3 thorpej {
126 1.3 thorpej u_long rcpt;
127 1.3 thorpej int rv;
128 1.3 thorpej
129 1.3 thorpej /* Tell the Data Abort handler that we're expecting one. */
130 1.3 thorpej data_abort_received = 0;
131 1.3 thorpej data_abort_expected = 1;
132 1.3 thorpej
133 1.3 thorpej cpu_drain_writebuf();
134 1.3 thorpej
135 1.3 thorpej /* Read from the test address. */
136 1.3 thorpej switch (size) {
137 1.3 thorpej case sizeof(uint8_t):
138 1.3 thorpej __asm __volatile("ldrb %0, [%1]"
139 1.3 thorpej : "=r" (rcpt)
140 1.3 thorpej : "r" (addr));
141 1.3 thorpej break;
142 1.3 thorpej
143 1.3 thorpej case sizeof(uint16_t):
144 1.3 thorpej __asm __volatile("ldrh %0, [%1]"
145 1.3 thorpej : "=r" (rcpt)
146 1.3 thorpej : "r" (addr));
147 1.3 thorpej break;
148 1.3 thorpej
149 1.3 thorpej case sizeof(uint32_t):
150 1.3 thorpej __asm __volatile("ldr %0, [%1]"
151 1.3 thorpej : "=r" (rcpt)
152 1.3 thorpej : "r" (addr));
153 1.3 thorpej break;
154 1.3 thorpej
155 1.3 thorpej default:
156 1.3 thorpej data_abort_expected = 0;
157 1.24 provos panic("badaddr: invalid size (%lu)", (u_long) size);
158 1.3 thorpej }
159 1.3 thorpej
160 1.3 thorpej /* Disallow further Data Aborts. */
161 1.3 thorpej data_abort_expected = 0;
162 1.3 thorpej
163 1.3 thorpej rv = data_abort_received;
164 1.3 thorpej data_abort_received = 0;
165 1.3 thorpej
166 1.3 thorpej /* Copy the data back if no fault occurred. */
167 1.3 thorpej if (rptr != NULL && rv == 0) {
168 1.3 thorpej switch (size) {
169 1.3 thorpej case sizeof(uint8_t):
170 1.3 thorpej *(uint8_t *) rptr = rcpt;
171 1.3 thorpej break;
172 1.3 thorpej
173 1.3 thorpej case sizeof(uint16_t):
174 1.3 thorpej *(uint16_t *) rptr = rcpt;
175 1.3 thorpej break;
176 1.3 thorpej
177 1.3 thorpej case sizeof(uint32_t):
178 1.3 thorpej *(uint32_t *) rptr = rcpt;
179 1.3 thorpej break;
180 1.3 thorpej }
181 1.3 thorpej }
182 1.3 thorpej
183 1.3 thorpej /* Return true if the address was invalid. */
184 1.3 thorpej return (rv);
185 1.3 thorpej }
186 1.3 thorpej
187 1.1 chris /*
188 1.1 chris * void data_abort_handler(trapframe_t *frame)
189 1.1 chris *
190 1.1 chris * Abort handler called when read/write occurs at an address of
191 1.1 chris * a non existent or restricted (access permissions) memory page.
192 1.1 chris * We first need to identify the type of page fault.
193 1.1 chris */
194 1.1 chris
195 1.1 chris #define TRAP_CODE ((fault_status & 0x0f) | (fault_address & 0xfffffff0))
196 1.1 chris
197 1.1 chris void
198 1.1 chris data_abort_handler(frame)
199 1.1 chris trapframe_t *frame;
200 1.1 chris {
201 1.1 chris struct proc *p;
202 1.1 chris struct pcb *pcb;
203 1.1 chris u_int fault_address;
204 1.1 chris u_int fault_status;
205 1.1 chris u_int fault_pc;
206 1.1 chris u_int fault_instruction;
207 1.1 chris int fault_code;
208 1.1 chris int user;
209 1.1 chris int error;
210 1.1 chris void *onfault;
211 1.3 thorpej
212 1.3 thorpej /*
213 1.3 thorpej * If we were expecting a Data Abort, signal that we got
214 1.3 thorpej * one, adjust the PC to skip the faulting insn, and
215 1.3 thorpej * return.
216 1.3 thorpej */
217 1.3 thorpej if (data_abort_expected) {
218 1.3 thorpej data_abort_received = 1;
219 1.3 thorpej frame->tf_pc += INSN_SIZE;
220 1.3 thorpej return;
221 1.3 thorpej }
222 1.1 chris
223 1.1 chris /*
224 1.1 chris * Must get fault address and status from the CPU before
225 1.1 chris * re-enabling interrupts. (Interrupt handlers may take
226 1.1 chris * R/M emulation faults.)
227 1.1 chris */
228 1.1 chris fault_address = cpu_faultaddress();
229 1.1 chris fault_status = cpu_faultstatus();
230 1.1 chris fault_pc = frame->tf_pc;
231 1.1 chris
232 1.1 chris /*
233 1.1 chris * Enable IRQ's (disabled by CPU on abort) if trapframe
234 1.1 chris * shows they were enabled.
235 1.1 chris */
236 1.1 chris if (!(frame->tf_spsr & I32_bit))
237 1.1 chris enable_interrupts(I32_bit);
238 1.1 chris
239 1.1 chris #ifdef DEBUG
240 1.1 chris if ((GetCPSR() & PSR_MODE) != PSR_SVC32_MODE)
241 1.1 chris panic("data_abort_handler: not in SVC32 mode");
242 1.1 chris #endif
243 1.1 chris
244 1.1 chris /* Update vmmeter statistics */
245 1.1 chris uvmexp.traps++;
246 1.1 chris
247 1.1 chris /* Extract the fault code from the fault status */
248 1.1 chris fault_code = fault_status & FAULT_TYPE_MASK;
249 1.1 chris
250 1.1 chris /* Get the current proc structure or proc0 if there is none */
251 1.1 chris if ((p = curproc) == NULL)
252 1.1 chris p = &proc0;
253 1.1 chris
254 1.1 chris /*
255 1.1 chris * can't use curpcb, as it might be NULL; and we have p in
256 1.1 chris * a register anyway
257 1.1 chris */
258 1.1 chris pcb = &p->p_addr->u_pcb;
259 1.1 chris
260 1.1 chris /* fusubailout is used by [fs]uswintr to avoid page faulting */
261 1.1 chris if (pcb->pcb_onfault
262 1.1 chris && ((fault_code != FAULT_TRANS_S && fault_code != FAULT_TRANS_P &&
263 1.1 chris fault_code != FAULT_PERM_S && fault_code != FAULT_PERM_P)
264 1.1 chris || pcb->pcb_onfault == fusubailout)) {
265 1.1 chris
266 1.20 bjh21 frame->tf_r0 = EFAULT;
267 1.1 chris copyfault:
268 1.1 chris #ifdef DEBUG
269 1.1 chris printf("Using pcb_onfault=%p addr=%08x st=%08x p=%p\n",
270 1.1 chris pcb->pcb_onfault, fault_address, fault_status, p);
271 1.1 chris #endif
272 1.1 chris frame->tf_pc = (u_int)pcb->pcb_onfault;
273 1.1 chris if ((frame->tf_spsr & PSR_MODE) == PSR_USR32_MODE)
274 1.24 provos panic("Yikes pcb_onfault=%p during USR mode fault",
275 1.1 chris pcb->pcb_onfault);
276 1.1 chris return;
277 1.1 chris }
278 1.1 chris
279 1.1 chris /* More debug stuff */
280 1.1 chris
281 1.1 chris fault_instruction = ReadWord(fault_pc);
282 1.1 chris
283 1.1 chris #ifdef PMAP_DEBUG
284 1.1 chris if (pmap_debug_level >= 0) {
285 1.1 chris report_abort(NULL, fault_status, fault_address, fault_pc);
286 1.1 chris printf("Instruction @V%08x = %08x\n",
287 1.1 chris fault_pc, fault_instruction);
288 1.1 chris }
289 1.1 chris #endif
290 1.1 chris
291 1.1 chris /* Call the cpu specific abort fixup routine */
292 1.1 chris error = cpu_dataabt_fixup(frame);
293 1.1 chris if (error == ABORT_FIXUP_RETURN)
294 1.1 chris return;
295 1.1 chris if (error == ABORT_FIXUP_FAILED) {
296 1.11 reinoud printf("pc = 0x%08x, opcode 0x%08x, insn = ", fault_pc, *((u_int *)fault_pc));
297 1.1 chris disassemble(fault_pc);
298 1.11 reinoud printf("data abort handler: fixup failed for this instruction\n");
299 1.1 chris }
300 1.1 chris
301 1.1 chris #ifdef PMAP_DEBUG
302 1.1 chris if (pmap_debug_level >= 0)
303 1.1 chris printf("fault in process %p\n", p);
304 1.1 chris #endif
305 1.1 chris
306 1.1 chris #ifdef DEBUG
307 1.1 chris /* Is this needed ? */
308 1.1 chris if (pcb != curpcb) {
309 1.1 chris printf("data_abort: Alert ! pcb(%p) != curpcb(%p)\n",
310 1.1 chris pcb, curpcb);
311 1.1 chris printf("data_abort: Alert ! proc(%p), curproc(%p)\n",
312 1.1 chris p, curproc);
313 1.1 chris }
314 1.1 chris #endif /* DEBUG */
315 1.1 chris
316 1.1 chris /* Were we in user mode when the abort occurred ? */
317 1.1 chris if ((frame->tf_spsr & PSR_MODE) == PSR_USR32_MODE) {
318 1.1 chris /*
319 1.1 chris * Note that the fault was from USR mode.
320 1.1 chris */
321 1.1 chris user = 1;
322 1.1 chris p->p_addr->u_pcb.pcb_tf = frame;
323 1.1 chris } else
324 1.1 chris user = 0;
325 1.11 reinoud
326 1.11 reinoud /* check if this was a failed fixup */
327 1.11 reinoud if (error == ABORT_FIXUP_FAILED) {
328 1.11 reinoud if (user) {
329 1.11 reinoud trapsignal(p, SIGSEGV, TRAP_CODE);
330 1.11 reinoud userret(p);
331 1.11 reinoud return;
332 1.11 reinoud };
333 1.24 provos panic("Data abort fixup failed in kernel - we're dead");
334 1.11 reinoud };
335 1.1 chris
336 1.1 chris /* Now act on the fault type */
337 1.1 chris switch (fault_code) {
338 1.1 chris case FAULT_WRTBUF_0: /* Write Buffer Fault */
339 1.1 chris case FAULT_WRTBUF_1: /* Write Buffer Fault */
340 1.1 chris /* If this happens forget it no point in continuing */
341 1.1 chris
342 1.1 chris /* FALLTHROUGH */
343 1.1 chris
344 1.1 chris case FAULT_ALIGN_0: /* Alignment Fault */
345 1.1 chris case FAULT_ALIGN_1: /* Alignment Fault */
346 1.1 chris /*
347 1.1 chris * Really this should just kill the process.
348 1.1 chris * Alignment faults are turned off in the kernel
349 1.1 chris * in order to get better performance from shorts with
350 1.1 chris * GCC so an alignment fault means somebody has played
351 1.1 chris * with the control register in the CPU. Might as well
352 1.1 chris * panic as the kernel was not compiled for aligned accesses.
353 1.1 chris */
354 1.1 chris
355 1.1 chris /* FALLTHROUGH */
356 1.1 chris
357 1.1 chris case FAULT_BUSERR_0: /* Bus Error LF Section */
358 1.1 chris case FAULT_BUSERR_1: /* Bus Error Page */
359 1.1 chris case FAULT_BUSERR_2: /* Bus Error Section */
360 1.1 chris case FAULT_BUSERR_3: /* Bus Error Page */
361 1.1 chris /* What will accutally cause a bus error ? */
362 1.1 chris /* Real bus errors are not a process problem but hardware */
363 1.1 chris
364 1.1 chris /* FALLTHROUGH */
365 1.1 chris
366 1.1 chris case FAULT_DOMAIN_S: /* Section Domain Error Fault */
367 1.1 chris case FAULT_DOMAIN_P: /* Page Domain Error Fault*/
368 1.1 chris /*
369 1.1 chris * Right well we dont use domains, everything is
370 1.1 chris * always a client and thus subject to access permissions.
371 1.1 chris * If we get a domain error then we have corrupts PTE's
372 1.1 chris * so we might as well die !
373 1.1 chris * I suppose eventually this should just kill the process
374 1.1 chris * who owns the PTE's but if this happens it implies a
375 1.1 chris * kernel problem.
376 1.1 chris */
377 1.1 chris
378 1.1 chris /* FALLTHROUGH */
379 1.1 chris
380 1.1 chris case FAULT_BUSTRNL1: /* Bus Error Trans L1 Fault */
381 1.1 chris case FAULT_BUSTRNL2: /* Bus Error Trans L2 Fault */
382 1.1 chris /*
383 1.1 chris * These faults imply that the PTE is corrupt.
384 1.1 chris * Likely to be a kernel fault so we had better stop.
385 1.1 chris */
386 1.1 chris
387 1.1 chris /* FALLTHROUGH */
388 1.1 chris
389 1.1 chris default :
390 1.1 chris /* Are there any combinations I have missed ? */
391 1.1 chris report_abort(NULL, fault_status, fault_address, fault_pc);
392 1.1 chris
393 1.1 chris we_re_toast:
394 1.1 chris /*
395 1.1 chris * Were are dead, try and provide some debug
396 1.1 chris * information before dying.
397 1.1 chris */
398 1.1 chris #ifdef DDB
399 1.1 chris printf("Unhandled trap (frame = %p)\n", frame);
400 1.1 chris report_abort(NULL, fault_status, fault_address, fault_pc);
401 1.1 chris kdb_trap(-1, frame);
402 1.1 chris return;
403 1.1 chris #else
404 1.1 chris panic("Unhandled trap (frame = %p)", frame);
405 1.1 chris #endif /* DDB */
406 1.1 chris
407 1.1 chris case FAULT_TRANS_P: /* Page Translation Fault */
408 1.1 chris case FAULT_PERM_P: /* Page Permission Fault */
409 1.1 chris case FAULT_TRANS_S: /* Section Translation Fault */
410 1.1 chris case FAULT_PERM_S: /* Section Permission Fault */
411 1.1 chris /*
412 1.1 chris * Page/section translation/permission fault -- need to fault in
413 1.1 chris * the page and possibly the page table page.
414 1.1 chris */
415 1.14 thorpej {
416 1.1 chris register vaddr_t va;
417 1.1 chris register struct vmspace *vm = p->p_vmspace;
418 1.1 chris register struct vm_map *map;
419 1.1 chris int rv;
420 1.1 chris vm_prot_t ftype;
421 1.1 chris extern struct vm_map *kernel_map;
422 1.1 chris
423 1.1 chris va = trunc_page((vaddr_t)fault_address);
424 1.1 chris
425 1.1 chris #ifdef PMAP_DEBUG
426 1.1 chris if (pmap_debug_level >= 0)
427 1.1 chris printf("page fault: addr=V%08lx ", va);
428 1.1 chris #endif
429 1.1 chris
430 1.1 chris /*
431 1.1 chris * It is only a kernel address space fault iff:
432 1.1 chris * 1. user == 0 and
433 1.1 chris * 2. pcb_onfault not set or
434 1.1 chris * 3. pcb_onfault set but supervisor space fault
435 1.1 chris * The last can occur during an exec() copyin where the
436 1.1 chris * argument space is lazy-allocated.
437 1.1 chris */
438 1.1 chris if (!user &&
439 1.1 chris (va >= VM_MIN_KERNEL_ADDRESS || va < VM_MIN_ADDRESS)) {
440 1.1 chris /* Was the fault due to the FPE/IPKDB ? */
441 1.1 chris if ((frame->tf_spsr & PSR_MODE) == PSR_UND32_MODE) {
442 1.1 chris report_abort("UND32", fault_status,
443 1.1 chris fault_address, fault_pc);
444 1.1 chris trapsignal(p, SIGSEGV, TRAP_CODE);
445 1.1 chris
446 1.1 chris /*
447 1.1 chris * Force exit via userret()
448 1.1 chris * This is necessary as the FPE is an extension
449 1.1 chris * to userland that actually runs in a
450 1.1 chris * priveledged mode but uses USR mode
451 1.1 chris * permissions for its accesses.
452 1.1 chris */
453 1.1 chris userret(p);
454 1.1 chris return;
455 1.1 chris }
456 1.1 chris map = kernel_map;
457 1.1 chris } else
458 1.1 chris map = &vm->vm_map;
459 1.1 chris
460 1.1 chris #ifdef PMAP_DEBUG
461 1.1 chris if (pmap_debug_level >= 0)
462 1.1 chris printf("vmmap=%p ", map);
463 1.1 chris #endif
464 1.1 chris
465 1.1 chris if (map == NULL)
466 1.10 thorpej panic("No map for fault address va = 0x%08lx", va);
467 1.1 chris
468 1.1 chris /*
469 1.1 chris * We need to know whether the page should be mapped
470 1.1 chris * as R or R/W. The MMU does not give us the info as
471 1.1 chris * to whether the fault was caused by a read or a write.
472 1.1 chris * This means we need to disassemble the instruction
473 1.1 chris * responsible and determine if it was a read or write
474 1.1 chris * instruction.
475 1.1 chris */
476 1.1 chris /* STR instruction ? */
477 1.1 chris if ((fault_instruction & 0x0c100000) == 0x04000000)
478 1.8 chs ftype = VM_PROT_WRITE;
479 1.1 chris /* STM or CDT instruction ? */
480 1.1 chris else if ((fault_instruction & 0x0a100000) == 0x08000000)
481 1.8 chs ftype = VM_PROT_WRITE;
482 1.1 chris /* STRH, STRSH or STRSB instruction ? */
483 1.1 chris else if ((fault_instruction & 0x0e100090) == 0x00000090)
484 1.8 chs ftype = VM_PROT_WRITE;
485 1.1 chris /* SWP instruction ? */
486 1.1 chris else if ((fault_instruction & 0x0fb00ff0) == 0x01000090)
487 1.9 bjh21 ftype = VM_PROT_READ | VM_PROT_WRITE;
488 1.1 chris else
489 1.1 chris ftype = VM_PROT_READ;
490 1.1 chris
491 1.1 chris #ifdef PMAP_DEBUG
492 1.1 chris if (pmap_debug_level >= 0)
493 1.1 chris printf("fault protection = %d\n", ftype);
494 1.1 chris #endif
495 1.1 chris
496 1.1 chris if ((ftype & VM_PROT_WRITE) ?
497 1.1 chris pmap_modified_emulation(map->pmap, va) :
498 1.1 chris pmap_handled_emulation(map->pmap, va))
499 1.1 chris goto out;
500 1.1 chris
501 1.1 chris if (current_intr_depth > 0) {
502 1.1 chris #ifdef DDB
503 1.1 chris printf("Non-emulated page fault with intr_depth > 0\n");
504 1.1 chris report_abort(NULL, fault_status, fault_address, fault_pc);
505 1.1 chris kdb_trap(-1, frame);
506 1.1 chris return;
507 1.1 chris #else
508 1.1 chris panic("Fault with intr_depth > 0");
509 1.1 chris #endif /* DDB */
510 1.1 chris }
511 1.1 chris
512 1.1 chris onfault = pcb->pcb_onfault;
513 1.1 chris pcb->pcb_onfault = NULL;
514 1.1 chris rv = uvm_fault(map, va, 0, ftype);
515 1.1 chris pcb->pcb_onfault = onfault;
516 1.23 nathanw if (rv == 0) {
517 1.23 nathanw if (user != 0) /* Record any stack growth... */
518 1.23 nathanw uvm_grow(p, trunc_page(va));
519 1.1 chris goto out;
520 1.23 nathanw }
521 1.1 chris if (user == 0) {
522 1.20 bjh21 if (pcb->pcb_onfault) {
523 1.20 bjh21 frame->tf_r0 = rv;
524 1.1 chris goto copyfault;
525 1.20 bjh21 }
526 1.1 chris printf("[u]vm_fault(%p, %lx, %x, 0) -> %x\n",
527 1.1 chris map, va, ftype, rv);
528 1.1 chris goto we_re_toast;
529 1.1 chris }
530 1.1 chris
531 1.1 chris report_abort("", fault_status, fault_address, fault_pc);
532 1.1 chris if (rv == ENOMEM) {
533 1.1 chris printf("UVM: pid %d (%s), uid %d killed: "
534 1.1 chris "out of swap\n", p->p_pid, p->p_comm,
535 1.1 chris p->p_cred && p->p_ucred ?
536 1.1 chris p->p_ucred->cr_uid : -1);
537 1.1 chris trapsignal(p, SIGKILL, TRAP_CODE);
538 1.1 chris } else
539 1.1 chris trapsignal(p, SIGSEGV, TRAP_CODE);
540 1.1 chris break;
541 1.14 thorpej }
542 1.1 chris }
543 1.1 chris
544 1.14 thorpej out:
545 1.1 chris /* Call userret() if it was a USR mode fault */
546 1.1 chris if (user)
547 1.1 chris userret(p);
548 1.1 chris }
549 1.1 chris
550 1.1 chris
551 1.1 chris /*
552 1.1 chris * void prefetch_abort_handler(trapframe_t *frame)
553 1.1 chris *
554 1.1 chris * Abort handler called when instruction execution occurs at
555 1.1 chris * a non existent or restricted (access permissions) memory page.
556 1.1 chris * If the address is invalid and we were in SVC mode then panic as
557 1.1 chris * the kernel should never prefetch abort.
558 1.1 chris * If the address is invalid and the page is mapped then the user process
559 1.1 chris * does no have read permission so send it a signal.
560 1.1 chris * Otherwise fault the page in and try again.
561 1.1 chris */
562 1.1 chris
563 1.1 chris extern int kernel_debug;
564 1.1 chris
565 1.1 chris void
566 1.1 chris prefetch_abort_handler(frame)
567 1.1 chris trapframe_t *frame;
568 1.1 chris {
569 1.14 thorpej struct proc *p;
570 1.14 thorpej struct vm_map *map;
571 1.14 thorpej vaddr_t fault_pc, va;
572 1.1 chris int error;
573 1.1 chris
574 1.1 chris /*
575 1.1 chris * Enable IRQ's (disabled by the abort) This always comes
576 1.1 chris * from user mode so we know interrupts were not disabled.
577 1.1 chris * But we check anyway.
578 1.1 chris */
579 1.1 chris if (!(frame->tf_spsr & I32_bit))
580 1.1 chris enable_interrupts(I32_bit);
581 1.1 chris
582 1.1 chris #ifdef DEBUG
583 1.1 chris if ((GetCPSR() & PSR_MODE) != PSR_SVC32_MODE)
584 1.1 chris panic("prefetch_abort_handler: not in SVC32 mode");
585 1.1 chris #endif
586 1.1 chris
587 1.1 chris /* Update vmmeter statistics */
588 1.1 chris uvmexp.traps++;
589 1.1 chris
590 1.1 chris /* Call the cpu specific abort fixup routine */
591 1.1 chris error = cpu_prefetchabt_fixup(frame);
592 1.1 chris if (error == ABORT_FIXUP_RETURN)
593 1.1 chris return;
594 1.1 chris if (error == ABORT_FIXUP_FAILED)
595 1.24 provos panic("prefetch abort fixup failed");
596 1.1 chris
597 1.1 chris /* Get the current proc structure or proc0 if there is none */
598 1.1 chris if ((p = curproc) == 0) {
599 1.1 chris p = &proc0;
600 1.1 chris #ifdef DEBUG
601 1.1 chris printf("Prefetch abort with curproc == 0\n");
602 1.1 chris #endif
603 1.1 chris }
604 1.1 chris
605 1.1 chris #ifdef PMAP_DEBUG
606 1.1 chris if (pmap_debug_level >= 0)
607 1.1 chris printf("prefetch fault in process %p %s\n", p, p->p_comm);
608 1.1 chris #endif
609 1.1 chris
610 1.4 thorpej /* Get fault address */
611 1.4 thorpej fault_pc = frame->tf_pc;
612 1.14 thorpej va = trunc_page(fault_pc);
613 1.4 thorpej
614 1.1 chris /* Was the prefectch abort from USR32 mode ? */
615 1.1 chris if ((frame->tf_spsr & PSR_MODE) == PSR_USR32_MODE) {
616 1.1 chris p->p_addr->u_pcb.pcb_tf = frame;
617 1.1 chris } else {
618 1.1 chris /*
619 1.1 chris * All the kernel code pages are loaded at boot time
620 1.1 chris * and do not get paged
621 1.1 chris */
622 1.24 provos panic("Prefetch abort in non-USR mode (frame=%p PC=0x%08lx)",
623 1.4 thorpej frame, fault_pc);
624 1.1 chris }
625 1.1 chris
626 1.14 thorpej map = &p->p_vmspace->vm_map;
627 1.14 thorpej
628 1.1 chris #ifdef PMAP_DEBUG
629 1.1 chris if (pmap_debug_level >= 0)
630 1.16 thorpej printf("prefetch_abort: PC = %08lx\n", fault_pc);
631 1.1 chris #endif
632 1.1 chris /* Ok validate the address, can only execute in USER space */
633 1.1 chris if (fault_pc < VM_MIN_ADDRESS || fault_pc >= VM_MAXUSER_ADDRESS) {
634 1.1 chris #ifdef DEBUG
635 1.19 ichiro printf("prefetch: pc (%08lx) not in user process space\n",
636 1.1 chris fault_pc);
637 1.1 chris #endif
638 1.1 chris trapsignal(p, SIGSEGV, fault_pc);
639 1.1 chris userret(p);
640 1.1 chris return;
641 1.1 chris }
642 1.1 chris
643 1.12 thorpej #ifdef CPU_SA110
644 1.12 thorpej /*
645 1.12 thorpej * There are bugs in the rev K SA110. This is a check for one
646 1.12 thorpej * of them.
647 1.12 thorpej */
648 1.25 bjh21 if (curcpu()->ci_arm_cputype == CPU_ID_SA110 &&
649 1.25 bjh21 curcpu()->ci_arm_cpurev < 3) {
650 1.12 thorpej /* Always current pmap */
651 1.12 thorpej pt_entry_t *pte = vtopte((vaddr_t) fault_pc);
652 1.12 thorpej struct pmap *pmap = p->p_vmspace->vm_map.pmap;
653 1.12 thorpej
654 1.12 thorpej if (pmap_pde_v(pmap_pde(pmap, (vaddr_t) fault_pc)) &&
655 1.12 thorpej pmap_pte_v(pte)) {
656 1.12 thorpej if (kernel_debug & 1) {
657 1.12 thorpej printf("prefetch_abort: page is already "
658 1.12 thorpej "mapped - pte=%p *pte=%08x\n", pte, *pte);
659 1.14 thorpej printf("prefetch_abort: pc=%08lx proc=%p "
660 1.12 thorpej "process=%s\n", fault_pc, p, p->p_comm);
661 1.12 thorpej printf("prefetch_abort: far=%08x fs=%x\n",
662 1.12 thorpej cpu_faultaddress(), cpu_faultstatus());
663 1.12 thorpej printf("prefetch_abort: trapframe=%08x\n",
664 1.12 thorpej (u_int)frame);
665 1.12 thorpej }
666 1.12 thorpej #ifdef DDB
667 1.12 thorpej if (kernel_debug & 2)
668 1.12 thorpej Debugger();
669 1.17 skrll #endif
670 1.1 chris }
671 1.1 chris }
672 1.12 thorpej #endif /* CPU_SA110 */
673 1.12 thorpej
674 1.14 thorpej if (pmap_handled_emulation(map->pmap, va))
675 1.14 thorpej goto out;
676 1.14 thorpej
677 1.14 thorpej if (current_intr_depth > 0) {
678 1.14 thorpej #ifdef DDB
679 1.14 thorpej printf("Non-emulated prefetch abort with intr_depth > 0\n");
680 1.14 thorpej kdb_trap(-1, frame);
681 1.14 thorpej return;
682 1.14 thorpej #else
683 1.14 thorpej panic("Prefetch Abort with intr_depth > 0");
684 1.1 chris #endif
685 1.1 chris }
686 1.1 chris
687 1.14 thorpej error = uvm_fault(map, va, 0, VM_PROT_READ);
688 1.14 thorpej if (error == 0)
689 1.14 thorpej goto out;
690 1.14 thorpej
691 1.14 thorpej if (error == ENOMEM) {
692 1.14 thorpej printf("UVM: pid %d (%s), uid %d killed: "
693 1.14 thorpej "out of swap\n", p->p_pid, p->p_comm,
694 1.14 thorpej p->p_cred && p->p_ucred ?
695 1.14 thorpej p->p_ucred->cr_uid : -1);
696 1.14 thorpej trapsignal(p, SIGKILL, fault_pc);
697 1.14 thorpej } else
698 1.14 thorpej trapsignal(p, SIGSEGV, fault_pc);
699 1.14 thorpej out:
700 1.1 chris userret(p);
701 1.1 chris }
702