2 * File: arch/blackfin/kernel/traps.c
4 * Author: Hamish Macdonald
7 * Description: uses S/W interrupt 15 for the system calls
10 * Copyright 2004-2006 Analog Devices Inc.
12 * Bugs: Enter bugs at http://blackfin.uclinux.org/
14 * This program is free software; you can redistribute it and/or modify
15 * it under the terms of the GNU General Public License as published by
16 * the Free Software Foundation; either version 2 of the License, or
17 * (at your option) any later version.
19 * This program is distributed in the hope that it will be useful,
20 * but WITHOUT ANY WARRANTY; without even the implied warranty of
21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
22 * GNU General Public License for more details.
24 * You should have received a copy of the GNU General Public License
25 * along with this program; if not, see the file COPYING, or write
26 * to the Free Software Foundation, Inc.,
27 * 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
30 #include <asm/uaccess.h>
31 #include <asm/traps.h>
32 #include <asm/cacheflush.h>
33 #include <asm/blackfin.h>
34 #include <asm/uaccess.h>
35 #include <asm/irq_handler.h>
36 #include <linux/interrupt.h>
37 #include <linux/module.h>
38 #include <linux/kallsyms.h>
41 # include <linux/debugger.h>
42 # include <linux/kgdb.h>
45 /* Initiate the event table handler */
46 void __init
trap_init(void)
49 bfin_write_EVT3(trap
);
53 asmlinkage
void trap_c(struct pt_regs
*fp
);
55 int kstack_depth_to_print
= 48;
57 static int printk_address(unsigned long address
)
59 struct vm_list_struct
*vml
;
60 struct task_struct
*p
;
63 #ifdef CONFIG_KALLSYMS
64 unsigned long offset
= 0, symsize
;
70 /* look up the address and see if we are in kernel space */
71 symname
= kallsyms_lookup(address
, &symsize
, &offset
, &modname
, namebuf
);
74 /* yeah! kernel space! */
77 return printk("<0x%p> { %s%s%s%s + 0x%lx }",
78 (void*)address
, delim
, modname
, delim
, symname
,
79 (unsigned long)offset
);
84 /* looks like we're off in user-land, so let's walk all the
85 * mappings of all our processes and see if we can't be a whee
88 write_lock_irq(&tasklist_lock
);
94 vml
= mm
->context
.vmlist
;
96 struct vm_area_struct
*vma
= vml
->vma
;
98 if (address
>= vma
->vm_start
&& address
< vma
->vm_end
) {
100 struct file
*file
= vma
->vm_file
;
103 name
= d_path(file
->f_dentry
,
109 write_unlock_irq(&tasklist_lock
);
110 return printk("<0x%p> [ %s + 0x%lx ]",
111 (void*)address
, name
,
113 ((address
- vma
->vm_start
) +
114 (vma
->vm_pgoff
<< PAGE_SHIFT
)));
120 write_unlock_irq(&tasklist_lock
);
122 /* we were unable to find this address anywhere */
123 return printk("[<0x%p>]", (void*)address
);
126 #define trace_buffer_save(x) \
128 (x) = bfin_read_TBUFCTL(); \
129 bfin_write_TBUFCTL((x) & ~TBUFEN); \
131 #define trace_buffer_restore(x) \
133 bfin_write_TBUFCTL((x)); \
136 asmlinkage
void trap_c(struct pt_regs
*fp
)
140 unsigned long trapnr
= fp
->seqstat
& SEQSTAT_EXCAUSE
;
143 # define CHK_DEBUGGER_TRAP() do { CHK_DEBUGGER(trapnr, sig, info.si_code, fp,); } while (0)
144 # define CHK_DEBUGGER_TRAP_MAYBE() do { if (kgdb_connected) CHK_DEBUGGER_TRAP(); } while (0)
146 # define CHK_DEBUGGER_TRAP() do { } while (0)
147 # define CHK_DEBUGGER_TRAP_MAYBE() do { } while (0)
150 trace_buffer_save(j
);
152 /* trap_c() will be called for exceptions. During exceptions
153 * processing, the pc value should be set with retx value.
154 * With this change we can cleanup some code in signal.c- TODO
156 fp
->orig_pc
= fp
->retx
;
157 /* printk("exception: 0x%x, ipend=%x, reti=%x, retx=%x\n",
158 trapnr, fp->ipend, fp->pc, fp->retx); */
160 /* send the appropriate signal to the user program */
163 /* This table works in conjuction with the one in ./mach-common/entry.S
164 * Some exceptions are handled there (in assembly, in exception space)
165 * Some are handled here, (in C, in interrupt space)
166 * Some, like CPLB, are handled in both, where the normal path is
167 * handled in assembly/exception space, and the error path is handled
171 /* 0x00 - Linux Syscall, getting here is an error */
172 /* 0x01 - userspace gdb breakpoint, handled here */
174 info
.si_code
= TRAP_ILLTRAP
;
176 CHK_DEBUGGER_TRAP_MAYBE();
177 /* Check if this is a breakpoint in kernel space */
178 if (fp
->ipend
& 0xffc0)
183 case VEC_EXCPT02
: /* gdb connection */
184 info
.si_code
= TRAP_ILLTRAP
;
189 /* 0x02 - User Defined, Caught by default */
191 /* 0x03 - Atomic test and set */
193 info
.si_code
= SEGV_STACKFLOW
;
195 printk(KERN_EMERG EXC_0x03
);
198 /* 0x04 - spinlock - handled by _ex_spinlock,
199 getting here is an error */
200 /* 0x05 - User Defined, Caught by default */
201 /* 0x06 - User Defined, Caught by default */
202 /* 0x07 - User Defined, Caught by default */
203 /* 0x08 - User Defined, Caught by default */
204 /* 0x09 - User Defined, Caught by default */
205 /* 0x0A - User Defined, Caught by default */
206 /* 0x0B - User Defined, Caught by default */
207 /* 0x0C - User Defined, Caught by default */
208 /* 0x0D - User Defined, Caught by default */
209 /* 0x0E - User Defined, Caught by default */
210 /* 0x0F - User Defined, Caught by default */
211 /* 0x10 HW Single step, handled here */
213 info
.si_code
= TRAP_STEP
;
215 CHK_DEBUGGER_TRAP_MAYBE();
216 /* Check if this is a single step in kernel space */
217 if (fp
->ipend
& 0xffc0)
221 /* 0x11 - Trace Buffer Full, handled here */
223 info
.si_code
= TRAP_TRACEFLOW
;
225 printk(KERN_EMERG EXC_0x11
);
228 /* 0x12 - Reserved, Caught by default */
229 /* 0x13 - Reserved, Caught by default */
230 /* 0x14 - Reserved, Caught by default */
231 /* 0x15 - Reserved, Caught by default */
232 /* 0x16 - Reserved, Caught by default */
233 /* 0x17 - Reserved, Caught by default */
234 /* 0x18 - Reserved, Caught by default */
235 /* 0x19 - Reserved, Caught by default */
236 /* 0x1A - Reserved, Caught by default */
237 /* 0x1B - Reserved, Caught by default */
238 /* 0x1C - Reserved, Caught by default */
239 /* 0x1D - Reserved, Caught by default */
240 /* 0x1E - Reserved, Caught by default */
241 /* 0x1F - Reserved, Caught by default */
242 /* 0x20 - Reserved, Caught by default */
243 /* 0x21 - Undefined Instruction, handled here */
245 info
.si_code
= ILL_ILLOPC
;
247 printk(KERN_EMERG EXC_0x21
);
250 /* 0x22 - Illegal Instruction Combination, handled here */
252 info
.si_code
= ILL_ILLPARAOP
;
254 printk(KERN_EMERG EXC_0x22
);
257 /* 0x23 - Data CPLB Protection Violation,
258 normal case is handled in _cplb_hdr */
260 info
.si_code
= ILL_CPLB_VI
;
262 printk(KERN_EMERG EXC_0x23
);
265 /* 0x24 - Data access misaligned, handled here */
267 info
.si_code
= BUS_ADRALN
;
269 printk(KERN_EMERG EXC_0x24
);
272 /* 0x25 - Unrecoverable Event, handled here */
274 info
.si_code
= ILL_ILLEXCPT
;
276 printk(KERN_EMERG EXC_0x25
);
279 /* 0x26 - Data CPLB Miss, normal case is handled in _cplb_hdr,
280 error case is handled here */
282 info
.si_code
= BUS_ADRALN
;
284 printk(KERN_EMERG EXC_0x26
);
287 /* 0x27 - Data CPLB Multiple Hits - Linux Trap Zero, handled here */
289 info
.si_code
= ILL_CPLB_MULHIT
;
290 #ifdef CONFIG_DEBUG_HUNT_FOR_ZERO
292 printk(KERN_EMERG
"\n\nNULL pointer access (probably)\n");
295 printk(KERN_EMERG EXC_0x27
);
299 /* 0x28 - Emulation Watchpoint, handled here */
301 info
.si_code
= TRAP_WATCHPT
;
304 CHK_DEBUGGER_TRAP_MAYBE();
305 /* Check if this is a watchpoint in kernel space */
306 if (fp
->ipend
& 0xffc0)
311 /* 0x29 - Instruction fetch access error (535 only) */
312 case VEC_ISTRU_VL
: /* ADSP-BF535 only (MH) */
313 info
.si_code
= BUS_OPFETCH
;
315 printk(KERN_EMERG
"BF535: VEC_ISTRU_VL\n");
319 /* 0x29 - Reserved, Caught by default */
321 /* 0x2A - Instruction fetch misaligned, handled here */
323 info
.si_code
= BUS_ADRALN
;
325 printk(KERN_EMERG EXC_0x2A
);
328 /* 0x2B - Instruction CPLB protection Violation,
329 handled in _cplb_hdr */
331 info
.si_code
= ILL_CPLB_VI
;
333 printk(KERN_EMERG EXC_0x2B
);
336 /* 0x2C - Instruction CPLB miss, handled in _cplb_hdr */
338 info
.si_code
= ILL_CPLB_MISS
;
340 printk(KERN_EMERG EXC_0x2C
);
343 /* 0x2D - Instruction CPLB Multiple Hits, handled here */
344 case VEC_CPLB_I_MHIT
:
345 info
.si_code
= ILL_CPLB_MULHIT
;
346 #ifdef CONFIG_DEBUG_HUNT_FOR_ZERO
348 printk(KERN_EMERG
"\n\nJump to address 0 - 0x0fff\n");
351 printk(KERN_EMERG EXC_0x2D
);
355 /* 0x2E - Illegal use of Supervisor Resource, handled here */
357 info
.si_code
= ILL_PRVOPC
;
359 printk(KERN_EMERG EXC_0x2E
);
362 /* 0x2F - Reserved, Caught by default */
363 /* 0x30 - Reserved, Caught by default */
364 /* 0x31 - Reserved, Caught by default */
365 /* 0x32 - Reserved, Caught by default */
366 /* 0x33 - Reserved, Caught by default */
367 /* 0x34 - Reserved, Caught by default */
368 /* 0x35 - Reserved, Caught by default */
369 /* 0x36 - Reserved, Caught by default */
370 /* 0x37 - Reserved, Caught by default */
371 /* 0x38 - Reserved, Caught by default */
372 /* 0x39 - Reserved, Caught by default */
373 /* 0x3A - Reserved, Caught by default */
374 /* 0x3B - Reserved, Caught by default */
375 /* 0x3C - Reserved, Caught by default */
376 /* 0x3D - Reserved, Caught by default */
377 /* 0x3E - Reserved, Caught by default */
378 /* 0x3F - Reserved, Caught by default */
380 info
.si_code
= TRAP_ILLTRAP
;
382 printk(KERN_EMERG
"Caught Unhandled Exception, code = %08lx\n",
383 (fp
->seqstat
& SEQSTAT_EXCAUSE
));
390 info
.si_addr
= (void *)fp
->pc
;
391 force_sig_info(sig
, &info
, current
);
392 if (sig
!= 0 && sig
!= SIGTRAP
) {
394 dump_bfin_regs(fp
, (void *)fp
->retx
);
395 dump_bfin_trace_buffer();
396 show_stack(current
, &stack
);
397 if (current
->mm
== NULL
)
398 panic("Kernel exception");
401 /* if the address that we are about to return to is not valid, set it
402 * to a valid address, if we have a current application or panic
404 if (!(fp
->pc
<= physical_mem_end
405 #if L1_CODE_LENGTH != 0
406 || (fp
->pc
>= L1_CODE_START
&&
407 fp
->pc
<= (L1_CODE_START
+ L1_CODE_LENGTH
))
411 fp
->pc
= current
->mm
->start_code
;
413 printk(KERN_EMERG
"I can't return to memory that doesn't exist - bad things happen\n");
414 panic("Help - I've fallen and can't get up\n");
418 trace_buffer_restore(j
);
422 /* Typical exception handling routines */
424 void dump_bfin_trace_buffer(void)
427 trace_buffer_save(tflags
);
429 if (likely(bfin_read_TBUFSTAT() & TBUFCNT
)) {
431 printk(KERN_EMERG
"Hardware Trace:\n");
432 for (i
= 0; bfin_read_TBUFSTAT() & TBUFCNT
; i
++) {
433 printk(KERN_EMERG
"%2i Target : ", i
);
434 printk_address((unsigned long)bfin_read_TBUF());
435 printk("\n" KERN_EMERG
" Source : ");
436 printk_address((unsigned long)bfin_read_TBUF());
441 trace_buffer_restore(tflags
);
443 EXPORT_SYMBOL(dump_bfin_trace_buffer
);
445 static void show_trace(struct task_struct
*tsk
, unsigned long *sp
)
449 printk("\nCall Trace:");
450 #ifdef CONFIG_KALLSYMS
454 while (!kstack_end(sp
)) {
457 * If the address is either in the text segment of the
458 * kernel, or in the region which contains vmalloc'ed
459 * memory, it *may* be the address of a calling
460 * routine; if so, print it so that someone tracing
461 * down the cause of the crash will be able to figure
462 * out the call path that was taken.
464 if (kernel_text_address(addr
))
471 void show_stack(struct task_struct
*task
, unsigned long *stack
)
473 unsigned long *endstack
, addr
;
476 /* Cannot call dump_bfin_trace_buffer() here as show_stack() is
477 * called externally in some places in the kernel.
482 stack
= (unsigned long *)task
->thread
.ksp
;
484 stack
= (unsigned long *)&stack
;
487 addr
= (unsigned long)stack
;
488 endstack
= (unsigned long *)PAGE_ALIGN(addr
);
490 printk(KERN_EMERG
"Stack from %08lx:", (unsigned long)stack
);
491 for (i
= 0; i
< kstack_depth_to_print
; i
++) {
492 if (stack
+ 1 > endstack
)
495 printk("\n" KERN_EMERG
" ");
496 printk(" %08lx", *stack
++);
499 show_trace(task
, stack
);
502 void dump_stack(void)
506 trace_buffer_save(tflags
);
507 dump_bfin_trace_buffer();
508 show_stack(current
, &stack
);
509 trace_buffer_restore(tflags
);
512 EXPORT_SYMBOL(dump_stack
);
514 void dump_bfin_regs(struct pt_regs
*fp
, void *retaddr
)
517 printk("\nCURRENT PROCESS:\n\n");
518 printk("COMM=%s PID=%d\n", current
->comm
, current
->pid
);
521 ("\nNo Valid pid - Either things are really messed up, or you are in the kernel\n");
525 printk("TEXT = 0x%p-0x%p DATA = 0x%p-0x%p\n"
526 "BSS = 0x%p-0x%p USER-STACK = 0x%p\n\n",
527 (void*)current
->mm
->start_code
,
528 (void*)current
->mm
->end_code
,
529 (void*)current
->mm
->start_data
,
530 (void*)current
->mm
->end_data
,
531 (void*)current
->mm
->end_data
,
532 (void*)current
->mm
->brk
,
533 (void*)current
->mm
->start_stack
);
536 printk("return address: 0x%p; contents of [PC-16...PC+8]:\n", retaddr
);
537 if (retaddr
!= 0 && retaddr
<= (void*)physical_mem_end
538 #if L1_CODE_LENGTH != 0
539 /* FIXME: Copy the code out of L1 Instruction SRAM through dma
541 && !(retaddr
>= (void*)L1_CODE_START
542 && retaddr
< (void*)(L1_CODE_START
+ L1_CODE_LENGTH
))
546 unsigned short x
= 0;
547 for (i
= -16; i
< 8; i
++) {
548 if (get_user(x
, (unsigned short *)retaddr
+ i
))
550 #ifndef CONFIG_DEBUG_HWERR
551 /* If one of the last few instructions was a STI
552 * it is likily that the error occured awhile ago
553 * and we just noticed
555 if (x
>= 0x0040 && x
<= 0x0047 && i
<= 0)
556 panic("\n\nWARNING : You should reconfigure the kernel to turn on\n"
557 " 'Hardware error interrupt debugging'\n"
558 " The rest of this error is meanless\n");
568 printk("Cannot look at the [PC] for it is in unreadable L1 SRAM - sorry\n");
572 printk("RETE: %08lx RETN: %08lx RETX: %08lx RETS: %08lx\n",
573 fp
->rete
, fp
->retn
, fp
->retx
, fp
->rets
);
574 printk("IPEND: %04lx SYSCFG: %04lx\n", fp
->ipend
, fp
->syscfg
);
575 printk("SEQSTAT: %08lx SP: %08lx\n", (long)fp
->seqstat
, (long)fp
);
576 printk("R0: %08lx R1: %08lx R2: %08lx R3: %08lx\n",
577 fp
->r0
, fp
->r1
, fp
->r2
, fp
->r3
);
578 printk("R4: %08lx R5: %08lx R6: %08lx R7: %08lx\n",
579 fp
->r4
, fp
->r5
, fp
->r6
, fp
->r7
);
580 printk("P0: %08lx P1: %08lx P2: %08lx P3: %08lx\n",
581 fp
->p0
, fp
->p1
, fp
->p2
, fp
->p3
);
582 printk("P4: %08lx P5: %08lx FP: %08lx\n", fp
->p4
, fp
->p5
, fp
->fp
);
583 printk("A0.w: %08lx A0.x: %08lx A1.w: %08lx A1.x: %08lx\n",
584 fp
->a0w
, fp
->a0x
, fp
->a1w
, fp
->a1x
);
586 printk("LB0: %08lx LT0: %08lx LC0: %08lx\n", fp
->lb0
, fp
->lt0
,
588 printk("LB1: %08lx LT1: %08lx LC1: %08lx\n", fp
->lb1
, fp
->lt1
,
590 printk("B0: %08lx L0: %08lx M0: %08lx I0: %08lx\n", fp
->b0
, fp
->l0
,
592 printk("B1: %08lx L1: %08lx M1: %08lx I1: %08lx\n", fp
->b1
, fp
->l1
,
594 printk("B2: %08lx L2: %08lx M2: %08lx I2: %08lx\n", fp
->b2
, fp
->l2
,
596 printk("B3: %08lx L3: %08lx M3: %08lx I3: %08lx\n", fp
->b3
, fp
->l3
,
599 printk("\nUSP: %08lx ASTAT: %08lx\n", rdusp(), fp
->astat
);
600 if ((long)fp
->seqstat
& SEQSTAT_EXCAUSE
) {
601 printk(KERN_EMERG
"DCPLB_FAULT_ADDR=%p\n", (void*)bfin_read_DCPLB_FAULT_ADDR());
602 printk(KERN_EMERG
"ICPLB_FAULT_ADDR=%p\n", (void*)bfin_read_ICPLB_FAULT_ADDR());
608 #ifdef CONFIG_SYS_BFIN_SPINLOCK_L1
609 asmlinkage
int sys_bfin_spinlock(int *spinlock
)__attribute__((l1_text
));
612 asmlinkage
int sys_bfin_spinlock(int *spinlock
)
618 ret
= get_user(tmp
, spinlock
);
623 put_user(tmp
, spinlock
);
629 void panic_cplb_error(int cplb_panic
, struct pt_regs
*fp
)
631 switch (cplb_panic
) {
632 case CPLB_NO_UNLOCKED
:
633 printk(KERN_EMERG
"All CPLBs are locked\n");
637 case CPLB_NO_ADDR_MATCH
:
639 case CPLB_UNKNOWN_ERR
:
640 printk(KERN_EMERG
"Unknown CPLB Exception\n");
644 printk(KERN_EMERG
"DCPLB_FAULT_ADDR=%p\n", (void*)bfin_read_DCPLB_FAULT_ADDR());
645 printk(KERN_EMERG
"ICPLB_FAULT_ADDR=%p\n", (void*)bfin_read_ICPLB_FAULT_ADDR());
646 dump_bfin_regs(fp
, (void *)fp
->retx
);
648 panic("Unrecoverable event\n");