trap_subr.S revision 1.15 1 /* $NetBSD: trap_subr.S,v 1.15 2011/06/05 16:52:25 matt Exp $ */
2
3 /*
4 * Copyright 2001 Wasabi Systems, Inc.
5 * All rights reserved.
6 *
7 * Written by Eduardo Horvath and Simon Burge for Wasabi Systems, Inc.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions
11 * are met:
12 * 1. Redistributions of source code must retain the above copyright
13 * notice, this list of conditions and the following disclaimer.
14 * 2. Redistributions in binary form must reproduce the above copyright
15 * notice, this list of conditions and the following disclaimer in the
16 * documentation and/or other materials provided with the distribution.
17 * 3. All advertising materials mentioning features or use of this software
18 * must display the following acknowledgement:
19 * This product includes software developed for the NetBSD Project by
20 * Wasabi Systems, Inc.
21 * 4. The name of Wasabi Systems, Inc. may not be used to endorse
22 * or promote products derived from this software without specific prior
23 * written permission.
24 *
25 * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
26 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
27 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
28 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL WASABI SYSTEMS, INC
29 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
30 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
31 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
32 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
33 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
34 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
35 * POSSIBILITY OF SUCH DAMAGE.
36 */
37
38 /*
39 * Copyright (C) 1995, 1996 Wolfgang Solfrank.
40 * Copyright (C) 1995, 1996 TooLs GmbH.
41 * All rights reserved.
42 *
43 * Redistribution and use in source and binary forms, with or without
44 * modification, are permitted provided that the following conditions
45 * are met:
46 * 1. Redistributions of source code must retain the above copyright
47 * notice, this list of conditions and the following disclaimer.
48 * 2. Redistributions in binary form must reproduce the above copyright
49 * notice, this list of conditions and the following disclaimer in the
50 * documentation and/or other materials provided with the distribution.
51 * 3. All advertising materials mentioning features or use of this software
52 * must display the following acknowledgement:
53 * This product includes software developed by TooLs GmbH.
54 * 4. The name of TooLs GmbH may not be used to endorse or promote products
55 * derived from this software without specific prior written permission.
56 *
57 * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR
58 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
59 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
60 * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
61 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
62 * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
63 * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
64 * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
65 * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
66 * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
67 */
68
69 /*
70 * NOTICE: This is not a standalone file. to use it, #include it in
71 * your port's locore.S, like so:
72 *
73 * #include <powerpc/ibm4xx/trap_subr.S>
74 */
75
76 /*
77 * XXX Interrupt and spill stacks need to be per-CPU.
78 */
79
80 #define GET_PCB(rX) \
81 GET_CPUINFO(rX); \
82 lwz rX,CI_CURPCB(rX)
83
84 #define STANDARD_PROLOG(savearea) \
85 mtsprg1 %r1; /* save SP */ \
86 GET_CPUINFO(%r1); \
87 stmw %r28,(savearea+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
88 mflr %r28; /* save LR */ \
89 mfcr %r29; /* save CR */ \
90 mfsrr0 %r30; \
91 mfsrr1 %r31; /* Test whether we already had PR set */ \
92 stmw %r30,(savearea+CPUSAVE_SRR0)(%r1); /* save srr0/srr1 */ \
93 mfsprg1 %r1; /* restore SP */ \
94 mtcr %r31; \
95 bf MSR_PR,1f; /* branch if MSR[PR] is clear */ \
96 GET_PCB(%r1); \
97 addi %r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
98 1:
99
100 #define ACCESS_PROLOG(savearea) \
101 mtsprg1 %r1; /* save SP temporalily */ \
102 GET_CPUINFO(%r1); \
103 stmw %r28,(savearea+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
104 mflr %r28; /* save LR */ \
105 mfcr %r29; /* save CR */ \
106 mfdear %r30; \
107 mfesr %r31; \
108 stmw %r30,(savearea+CPUSAVE_DEAR)(%r1); \
109 mfsrr0 %r30; \
110 mfsrr1 %r31; /* Test whether we already had PR set */ \
111 stmw %r30,(savearea+CPUSAVE_SRR0)(%r1); /* save srr0/srr1 */ \
112 mfsprg1 %r1; /* restore SP */ \
113 mtcr %r31; \
114 bf MSR_PR,1f; /* branch if MSR[PR] is clear */ \
115 GET_PCB(%r1); \
116 addi %r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
117 1:
118
119 #define CRITICAL_PROLOG(savearea) \
120 mtsprg1 %r1; /* save SP */ \
121 GET_CPUINFO(%r1); \
122 stmw %r28,(savearea+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
123 mflr %r28; /* save LR */ \
124 mfcr %r29; /* save CR */ \
125 mfsrr2 %r30; /* Fake a standard trap */ \
126 mfsrr3 %r31; /* Test whether we already had PR set */ \
127 stmw %r30,(savearea+CPUSAVE_SRR0)(%r1); /* save srr0/srr1 */ \
128 mfsprg1 %r1; /* restore SP */ \
129 mtcr %r31; \
130 bf MSR_PR,1f; /* branch if MSR[PR] is clear */ \
131 GET_PCB(%r1); \
132 addi %r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
133 1:
134
135
136 /* Standard handler saves r1,r28-31,LR,CR, sets up the stack and calls s_trap */
137 #define STANDARD_EXC_HANDLER(name)\
138 .globl _C_LABEL(name ## trap),_C_LABEL(name ## size) ; \
139 _C_LABEL(name ## trap): \
140 STANDARD_PROLOG(CI_TEMPSAVE); \
141 bla s_trap ; \
142 _C_LABEL(name ## size) = .-_C_LABEL(name ## trap)
143
144 /* Access exceptions also need DEAR and ESR saved */
145 #define ACCESS_EXC_HANDLER(name)\
146 .globl _C_LABEL(name ## trap),_C_LABEL(name ## size) ; \
147 _C_LABEL(name ## trap): \
148 ACCESS_PROLOG(CI_TEMPSAVE); \
149 bla s_trap ; \
150 _C_LABEL(name ## size) = .-_C_LABEL(name ## trap)
151
152 /* Maybe this should call ddb.... */
153 #define CRITICAL_EXC_HANDLER(name)\
154 .globl _C_LABEL(name ## trap),_C_LABEL(name ## size) ; \
155 _C_LABEL(name ## trap): \
156 CRITICAL_PROLOG(CI_TEMPSAVE); \
157 bla s_trap ; \
158 _C_LABEL(name ## size) = .-_C_LABEL(name ## trap)
159
160 #define INTR_PROLOG(tempsave) \
161 mtsprg1 %r1; /* save SP */ \
162 GET_CPUINFO(%r1); \
163 stmw %r28,(tempsave+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
164 mflr %r28; /* save LR */ \
165 mfcr %r29; /* save CR */ \
166 mfxer %r30; /* save XER */ \
167 lwz %r31,CI_IDEPTH(%r1); /* already running on intstk? */ \
168 addic. %r31,%r31,1; \
169 stw %r31,CI_IDEPTH(%r1); \
170 lwz %r1,CI_INTSTK(%r1); /* get intstk */ \
171 beq 1f; \
172 mfsprg1 %r1; /* yes, get old SP */ \
173 1:
174
175 /*
176 * This code gets copied to all the trap vectors
177 * (except ISI/DSI, ALI, the interrupts, and possibly the debugging
178 * traps when using IPKDB).
179 */
180 .text
181 STANDARD_EXC_HANDLER(default)
182 ACCESS_EXC_HANDLER(ali)
183 ACCESS_EXC_HANDLER(dsi)
184 ACCESS_EXC_HANDLER(isi)
185 STANDARD_EXC_HANDLER(debug)
186 CRITICAL_EXC_HANDLER(mchk)
187
188 /*
189 * This one for the external interrupt handler.
190 */
191 .globl _C_LABEL(extint),_C_LABEL(extsize)
192 _C_LABEL(extint):
193 INTR_PROLOG(CI_TEMPSAVE)
194 ba extintr
195 _C_LABEL(extsize) = .-_C_LABEL(extint)
196
197
198 #if defined(DDB) || defined(KGDB)
199 /*
200 * In case of DDB we want a separate trap catcher for it
201 */
202 .lcomm ddbstk,INTSTK,16 /* ddb stack */
203
204 .globl _C_LABEL(ddblow),_C_LABEL(ddbsize)
205 _C_LABEL(ddblow):
206 mtsprg1 %r1 /* save SP */
207 GET_CPUINFO(%r1)
208 stmw %r28,CI_DDBSAVE(%r1) /* free r28-r31 */
209 mflr %r28 /* save LR */
210 mfcr %r29 /* save CR */
211 lis %r1,ddbstk+INTSTK-CALLFRAMELEN@ha /* get new SP */
212 addi %r1,%r1,ddbstk+INTSTK-CALLFRAMELEN@l
213 bla ddbtrap
214 _C_LABEL(ddbsize) = .-_C_LABEL(ddblow)
215 #endif /* DDB || KGDB */
216
217 #ifdef IPKDB
218 /*
219 * In case of IPKDB we want a separate trap catcher for it
220 */
221
222 .lcomm ipkdbstk,INTSTK,16 /* ipkdb stack */
223
224 .globl _C_LABEL(ipkdblow),_C_LABEL(ipkdbsize)
225 _C_LABEL(ipkdblow):
226 mtsprg1 %r1 /* save SP */
227 GET_CPUINFO(%r1)
228 stmw %r28,CI_IPKDBSAVE(%r1) /* free r28-r31 */
229 mflr %r28 /* save LR */
230 mfcr %r29 /* save CR */
231 lis %r1,ipkdbstk+INTSTK-CALLFRAMELEN@ha /* get new SP */
232 addi %r1,%r1,ipkdbstk+INTSTK-CALLFRAMELEN@l
233 bla ipkdbtrap
234 _C_LABEL(ipkdbsize) = .-_C_LABEL(ipkdblow)
235 #endif /* IPKDB */
236
237 #ifdef DEBUG
238 #define TRAP_IF_ZERO(r) tweqi r,0
239 #else
240 #define TRAP_IF_ZERO(r)
241 #endif
242
243 #define ENABLE_TRANSLATION(pidreg,tmpreg) \
244 mfpid pidreg; \
245 li tmpreg, KERNEL_PID; \
246 mtpid tmpreg; \
247 mfmsr tmpreg; \
248 ori tmpreg,tmpreg,(PSL_DR|PSL_IR)@l; \
249 mtmsr tmpreg; \
250 isync
251
252 /*
253 * FRAME_SETUP assumes:
254 * SPRG1 SP (r1)
255 * savearea r28-r31,DEAR,ESR,SRR0,SRR1 (DEAR & ESR only for DSI traps)
256 * %r28 LR
257 * %r29 CR
258 * %r1 kernel stack
259 * LR trap type
260 */
261 #define FRAME_SETUP(savearea) \
262 /* Have to enable translation to allow access of kernel stack: */ \
263 ENABLE_TRANSLATION(%r30,%r31); \
264 mfsprg1 %r31; \
265 stwu %r31,-FRAMELEN(%r1); \
266 stw %r30,FRAME_PID(%r1); \
267 stw %r0,FRAME_R0(%r1); \
268 stw %r31,FRAME_R1(%r1); \
269 stw %r2,FRAME_R2(%r1); \
270 GET_CPUINFO(%r2); \
271 stw %r28,FRAME_LR(%r1); \
272 stw %r29,FRAME_CR(%r1); \
273 lmw %r28,(savearea+CPUSAVE_R28)(%r2); \
274 stmw %r3,FRAME_R3(%r1); \
275 lmw %r28,(savearea+CPUSAVE_DEAR)(%r2); \
276 lwz %r13,CI_CURLWP(%r2); \
277 mfxer %r3; \
278 mfctr %r4; \
279 mflr %r5; \
280 andi. %r5,%r5,0xff00; \
281 stw %r3,FRAME_XER(%r1); \
282 stw %r4,FRAME_CTR(%r1); \
283 stw %r5,FRAME_EXC(%r1); \
284 stw %r28,FRAME_DEAR(%r1); \
285 stw %r29,FRAME_ESR(%r1); \
286 stw %r30,FRAME_SRR0(%r1); \
287 stw %r31,FRAME_SRR1(%r1)
288
289 #define FRAME_SAVE_CALLEE \
290 stmw %r13, FRAME_R13(%r1)
291
292 #define FRAME_RESTORE \
293 lwz %r6,FRAME_LR(%r1); \
294 lwz %r7,FRAME_CR(%r1); \
295 lwz %r8,FRAME_XER(%r1); \
296 lwz %r9,FRAME_CTR(%r1); \
297 lwz %r10,FRAME_SRR0(%r1); \
298 lwz %r11,FRAME_SRR1(%r1); \
299 mtlr %r6; \
300 mtcr %r7; \
301 mtxer %r8; \
302 mtctr %r9; \
303 mtsrr0 %r10; \
304 mtsrr1 %r11; \
305 lwz %r13,FRAME_R13(%r1); \
306 lwz %r12,FRAME_R12(%r1); \
307 lwz %r11,FRAME_R11(%r1); \
308 lwz %r10,FRAME_R10(%r1); \
309 lwz %r9,FRAME_R9(%r1); \
310 lwz %r8,FRAME_R8(%r1); \
311 lwz %r7,FRAME_R7(%r1); \
312 lwz %r6,FRAME_R6(%r1); \
313 lwz %r5,FRAME_R5(%r1); \
314 lwz %r4,FRAME_R4(%r1); \
315 lwz %r3,FRAME_R3(%r1); \
316 lwz %r2,FRAME_R2(%r1); \
317 lwz %r0,FRAME_R1(%r1); \
318 mtsprg1 %r0; \
319 lwz %r0,FRAME_R0(%r1)
320
321 /*
322 * Now the common trap catching code.
323 */
324 s_trap:
325 FRAME_SETUP(CI_TEMPSAVE)
326 /* R31 = SRR1 */
327 /* Now we can recover interrupts again: */
328 trapagain:
329 wrtee %r31 /* reenable interrupts */
330 /* Call C trap code: */
331 addi %r3,%r1,FRAME_TF
332 bl _C_LABEL(trap)
333 .globl _C_LABEL(trapexit)
334 _C_LABEL(trapexit):
335 /* Disable interrupts: */
336 wrteei 0
337
338 /* Test AST pending: */
339 mtcr %r31
340 bf MSR_PR,trapleave_to_kernel /* branch if MSR[PR] is false */
341
342 lwz %r4,L_MD_ASTPENDING(%r13)
343 andi. %r4,%r4,1
344 beq trapleave_to_user
345
346 li %r6,EXC_AST
347 stw %r6,FRAME_EXC(%r1)
348 b trapagain
349
350 trapleave_to_kernel:
351 lmw %r14, FRAME_R14(%r1) /* restore callee registers */
352
353 intrleave_to_kernel:
354 FRAME_RESTORE /* old SP is now in sprg1 */
355 /*
356 * Now that we are done with the trapframe, we can load the original SP
357 */
358 mfsprg1 %r1
359 rfi
360 ba . /* Protect against prefetch */
361
362 trapleave_to_user:
363 lmw %r13, FRAME_R13(%r1) /* restore callee registers */
364
365 intrleave_to_user:
366 /* Now restore regs: */
367 lwz %r3,FRAME_PID(%r1)
368 lwz %r4,FRAME_SRR1(%r1)
369 bl _C_LABEL(ctx_setup)
370 TRAP_IF_ZERO(%r3)
371 stw %r3,FRAME_PID(%r1)
372
373 FRAME_RESTORE /* old SP is now in sprg1 */
374
375 /*
376 * We are returning to userspace so we need to switch PIDs.
377 * Since the kernel executes out of what would be userspace,
378 * we need to turn off translation before we set the PID.
379 *
380 * Alterantively, we could map a kernel page at 0xfffff000
381 * that had the mtpid code in it and branch to it and avoid
382 * all this. (ba foo; foo: mtpid %r31; mfsprg3 %r31; rfi;)
383 */
384 mfmsr %r30
385 li %r31,(PSL_DR|PSL_IR)@l
386 andc %r30,%r30,%r31
387 lwz %r31,FRAME_PID(%r1)
388 TRAP_IF_ZERO(%r31)
389 /*
390 * Now that we are done with the trapframe, we can load the original SP
391 */
392 mfsprg1 %r1
393 mtmsr %r30 /* disable translation */
394 isync
395 mtpid %r31
396 mfsprg3 %r31
397 mfsprg2 %r30
398 rfi
399 ba . /* Protect against prefetch */
400
401
402 .globl _C_LABEL(sctrap),_C_LABEL(scsize),_C_LABEL(sctrapexit)
403 _C_LABEL(sctrap):
404 STANDARD_PROLOG(CI_TEMPSAVE)
405 bla s_sctrap
406 _C_LABEL(scsize) = .-_C_LABEL(sctrap)
407
408 s_sctrap:
409 FRAME_SETUP(CI_TEMPSAVE)
410 /* Now we can recover interrupts again: */
411 wrteei 1 /* Enable interrupts */
412 /* Call the appropriate syscall handler: */
413 addi %r3,%r1,FRAME_TF
414 lwz %r4,L_PROC(%r13)
415 lwz %r4,P_MD_SYSCALL(%r4)
416 mtctr %r4
417 bctrl
418 _C_LABEL(sctrapexit):
419 b trapexit
420
421 /*
422 * External interrupt second level handler
423 */
424
425 #define INTR_SAVE(tempsave) \
426 /* Save non-volatile registers: */ \
427 stwu %r1,-FRAMELEN(%r1); /* temporarily */ \
428 stw %r0,FRAME_R0(%r1); \
429 mfsprg1 %r0; /* get original SP */ \
430 stw %r0,FRAME_R1(%r1); /* and store it */ \
431 stw %r2,FRAME_R2(%r1); \
432 stw %r3,FRAME_R3(%r1); \
433 stw %r4,FRAME_R4(%r1); \
434 stw %r5,FRAME_R5(%r1); \
435 stw %r6,FRAME_R6(%r1); \
436 stw %r7,FRAME_R7(%r1); \
437 stw %r8,FRAME_R8(%r1); \
438 stw %r9,FRAME_R9(%r1); \
439 stw %r10,FRAME_R10(%r1); \
440 stw %r11,FRAME_R11(%r1); \
441 stw %r12,FRAME_R12(%r1); \
442 mfctr %r31; \
443 stmw %r28,FRAME_LR(%r1); /* save LR, CR, XER, CTR */ \
444 GET_CPUINFO(%r5); \
445 lmw %r28,(tempsave+CPUSAVE_R28)(%r5); /* restore r28-r31 */ \
446 lwz %r13,CI_CURLWP(%r5); \
447 lwz %r5,CI_IDEPTH(%r5); \
448 mfsrr0 %r4; \
449 mfsrr1 %r3; \
450 stw %r5,FRAME_IDEPTH(%r1); \
451 stw %r4,FRAME_SRR0(%r1); \
452 stw %r3,FRAME_SRR1(%r1); \
453 /* interrupts are recoverable here, and enable translation */ \
454 ENABLE_TRANSLATION(%r0,%r5); \
455 stw %r0,FRAME_PID(%r1); \
456
457 .globl _C_LABEL(extint_call)
458 extintr:
459 INTR_SAVE(CI_TEMPSAVE)
460 _C_LABEL(extint_call):
461 bl _C_LABEL(extint_call) /* to be filled in later */
462
463 intr_exit:
464 /* Disable interrupts */
465 wrteei 0
466 isync
467 GET_CPUINFO(%r5)
468 lwz %r4,CI_IDEPTH(%r5)
469 addi %r4,%r4,-1 /* adjust reentrancy count */
470 stw %r4,CI_IDEPTH(%r5)
471
472 lwz %r4,FRAME_SRR1(%r1)
473 /* Returning to user mode? */
474 mtcr %r4 /* saved SRR1 */
475 bf MSR_PR,intrleave_to_kernel /* branch if MSR[PR] is false */
476
477 lwz %r4,L_MD_ASTPENDING(%r13)/* Test AST pending */
478 andi. %r4,%r4,1
479 beq intrleave_to_user
480
481 FRAME_SAVE_CALLEE /* save rest of callee registers */
482 li %r6,EXC_AST
483 stw %r6,FRAME_EXC(%r1)
484 mr %r31,%r5 /* move SRR1 to R31 */
485 b trapagain
486
487 /*
488 * PIT interrupt handler.
489 */
490 .align 5
491 _C_LABEL(pitint):
492 INTR_PROLOG(CI_TEMPSAVE)
493 INTR_SAVE(CI_TEMPSAVE)
494 addi %r3,%r1,FRAME_CF /* intr frame */
495 bl _C_LABEL(decr_intr)
496 b intr_exit
497
498 /*
499 * FIT interrupt handler.
500 */
501 .align 5
502 _C_LABEL(fitint):
503 INTR_PROLOG(CI_TEMPSAVE)
504 INTR_SAVE(CI_TEMPSAVE)
505 addi %r3,%r1,FRAME_TF /* intr frame */
506 bl _C_LABEL(stat_intr)
507 b intr_exit
508
509 #if defined(DDB) || defined(KGDB)
510 /*
511 * Deliberate entry to ddbtrap
512 */
513 .globl _C_LABEL(ddb_trap)
514 _C_LABEL(ddb_trap):
515 mtsprg1 %r1
516 GET_CPUINFO(%r4)
517 mfmsr %r3
518 stw %r3,CI_DDBSAVE+CPUSAVE_SRR1(%r4)
519 wrteei 0 /* disable interrupts */
520 isync
521 stmw %r28,CI_DDBSAVE(%r1)
522 mflr %r28
523 stw %r28,CI_DDBSAVE+CPUSAVE_SRR0(%r4)
524 li %r29,EXC_BPT
525 mtlr %r29
526 mfcr %r29
527
528 /*
529 * Now the ddb/kgdb trap catching code.
530 */
531 ddbtrap:
532 FRAME_SETUP(CI_DDBSAVE)
533 /* Call C trap code: */
534 addi %r3,%r1,FRAME_TF
535 bl _C_LABEL(ddb_trap_glue)
536 or. %r3,%r3,%r3
537 addi %r3,%r1,FRAME_TF
538 beq trapagain
539 b trapexit
540 #endif /* DDB || KGDB */
541
542 #ifdef IPKDB
543 /*
544 * Deliberate entry to ipkdbtrap
545 */
546 .globl _C_LABEL(ipkdb_trap)
547 _C_LABEL(ipkdb_trap):
548 mtsprg1 %r1
549 GET_CPUINFO(%r4)
550 mfmsr %r3
551 stw %r3,(CI_IPKDBSAVE+CPUSAVE_SRR1)(%r4)
552 wrteei 0 /* disable interrupts */
553 isync
554 stmw %r28,CI_IPKDBSAVE(%r4)
555 mflr %r28
556 stw %r28,(CI_IPKDBSAVE+CPUSAVE_SRR0)(%r4)
557 li %r29,EXC_BPT
558 mtlr %r29
559 mfcr %r29
560
561 /*
562 * Now the ipkdb trap catching code.
563 */
564 ipkdbtrap:
565 FRAME_SETUP(CI_IPKDBSAVE)
566 /* Call C trap code: */
567 addi %r3,%r1,FRAME_TF
568 bl _C_LABEL(ipkdb_trap_glue)
569 or. %r3,%r3,%r3
570 beq trapagain
571 b trapexit
572
573 ipkdbfault:
574 ba _ipkdbfault
575 _ipkdbfault:
576 mfsrr0 %r3
577 addi %r3,%r3,4
578 mtsrr0 %r3
579 li %r3,-1
580 rfi
581 ba . /* Protect against prefetch */
582
583 /*
584 * int ipkdbfbyte(unsigned char *p)
585 */
586 .globl _C_LABEL(ipkdbfbyte)
587 _C_LABEL(ipkdbfbyte):
588 li %r9,EXC_DSI /* establish new fault routine */
589 lwz %r5,0(%r9)
590 lis %r6,ipkdbfault@ha
591 lwz %r6,ipkdbfault@l(%r6)
592 stw %r6,0(%r9)
593 #ifdef IPKDBUSERHACK
594 #ifndef PPC_IBM4XX
595 lis %r8,_C_LABEL(ipkdbsr)@ha
596 lwz %r8,_C_LABEL(ipkdbsr)@l(%r8)
597 mtsr USER_SR,%r8
598 isync
599 #endif
600 #endif
601 dcbst %r0,%r9 /* flush data... */
602 sync
603 icbi %r0,%r9 /* and instruction caches */
604 lbz %r3,0(%r3) /* fetch data */
605 stw %r5,0(%r9) /* restore previous fault handler */
606 dcbst %r0,%r9 /* and flush data... */
607 sync
608 icbi %r0,%r9 /* and instruction caches */
609 blr
610
611 /*
612 * int ipkdbsbyte(unsigned char *p, int c)
613 */
614 .globl _C_LABEL(ipkdbsbyte)
615 _C_LABEL(ipkdbsbyte):
616 li %r9,EXC_DSI /* establish new fault routine */
617 lwz %r5,0(%r9)
618 lis %r6,ipkdbfault@ha
619 lwz %r6,ipkdbfault@l(%r6)
620 stw %r6,0(%r9)
621 #ifdef IPKDBUSERHACK
622 #ifndef PPC_IBM4XX
623 lis %r8,_C_LABEL(ipkdbsr)@ha
624 lwz %r8,_C_LABEL(ipkdbsr)@l(%r8)
625 mtsr USER_SR,%r8
626 isync
627 #endif
628 #endif
629 dcbst %r0,%r9 /* flush data... */
630 sync
631 icbi %r0,%r9 /* and instruction caches */
632 mr %r6,%r3
633 xor %r3,%r3,%r3
634 stb %r4,0(%r6)
635 dcbst %r0,%r6 /* Now do appropriate flushes
636 to data... */
637 sync
638 icbi %r0,%r6 /* and instruction caches */
639 stw %r5,0(%r9) /* restore previous fault handler */
640 dcbst %r0,%r9 /* and flush data... */
641 sync
642 icbi %r0,%r9 /* and instruction caches */
643 blr
644 #endif /* IPKDB */
645