Home | History | Annotate | Line # | Download | only in ibm4xx
trap_subr.S revision 1.25
      1  1.25       rin /*	$NetBSD: trap_subr.S,v 1.25 2016/12/26 20:28:00 rin 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 /*
     70   1.1    simonb  * NOTICE: This is not a standalone file.  to use it, #include it in
     71   1.1    simonb  * your port's locore.S, like so:
     72   1.1    simonb  *
     73   1.5       chs  *	#include <powerpc/ibm4xx/trap_subr.S>
     74   1.1    simonb  */
     75   1.1    simonb 
     76   1.1    simonb /*
     77   1.1    simonb  * XXX Interrupt and spill stacks need to be per-CPU.
     78   1.1    simonb  */
     79   1.1    simonb 
     80   1.4    simonb #define	GET_PCB(rX)	\
     81   1.1    simonb 	GET_CPUINFO(rX);	\
     82   1.1    simonb 	lwz	rX,CI_CURPCB(rX)
     83   1.1    simonb 
     84  1.19  kiyohara #define	STANDARD_PROLOG(savearea)				\
     85  1.12      matt 	mtsprg1	%r1;			/* save SP */ 		\
     86  1.13      matt 	GET_CPUINFO(%r1);					\
     87  1.19  kiyohara 	stmw	%r28,(savearea+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
     88  1.12      matt 	mflr	%r28;			/* save LR */		\
     89  1.12      matt 	mfcr	%r29;			/* save CR */		\
     90  1.13      matt 	mfsrr0	%r30;						\
     91  1.13      matt 	mfsrr1	%r31; /* Test whether we already had PR set */	\
     92  1.13      matt 	stmw	%r30,(savearea+CPUSAVE_SRR0)(%r1); /* save srr0/srr1 */	\
     93  1.14  kiyohara 	mfsprg1	%r1;			/* restore SP */ 	\
     94  1.13      matt 	mtcr	%r31;						\
     95  1.15      matt 	bf	MSR_PR,1f;		/* branch if MSR[PR] is clear */ \
     96  1.14  kiyohara 	GET_PCB(%r1);						\
     97  1.13      matt 	addi	%r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
     98  1.13      matt 1:
     99  1.13      matt 
    100  1.13      matt #define	ACCESS_PROLOG(savearea)					\
    101  1.19  kiyohara 	mtsprg1	%r1;			/* save SP temporalily */ \
    102  1.13      matt 	GET_CPUINFO(%r1);					\
    103  1.19  kiyohara 	stmw	%r28,(savearea+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
    104  1.13      matt 	mflr	%r28;			/* save LR */		\
    105  1.13      matt 	mfcr	%r29;			/* save CR */		\
    106  1.13      matt 	mfdear	%r30;						\
    107  1.13      matt 	mfesr	%r31;						\
    108  1.25       rin 	stmw	%r30,(savearea+CPUSAVE_DEAR)(%r1); /* save esr/dear */ \
    109  1.13      matt 	mfsrr0	%r30;						\
    110  1.12      matt 	mfsrr1	%r31; /* Test whether we already had PR set */	\
    111  1.13      matt 	stmw	%r30,(savearea+CPUSAVE_SRR0)(%r1); /* save srr0/srr1 */	\
    112  1.14  kiyohara 	mfsprg1	%r1;			/* restore SP */ 	\
    113  1.12      matt 	mtcr	%r31;						\
    114  1.15      matt 	bf	MSR_PR,1f;		/* branch if MSR[PR] is clear */ \
    115  1.14  kiyohara 	GET_PCB(%r1);						\
    116  1.13      matt 	addi	%r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
    117   1.1    simonb 1:
    118   1.4    simonb 
    119  1.13      matt #define	CRITICAL_PROLOG(savearea)				\
    120  1.12      matt 	mtsprg1	%r1;			/* save SP */ 		\
    121  1.14  kiyohara 	GET_CPUINFO(%r1);					\
    122  1.19  kiyohara 	stmw	%r28,(savearea+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
    123  1.12      matt 	mflr	%r28;			/* save LR */		\
    124  1.12      matt 	mfcr	%r29;			/* save CR */		\
    125  1.12      matt 	mfsrr2	%r30; /* Fake a standard trap */		\
    126  1.12      matt 	mfsrr3	%r31; /* Test whether we already had PR set */	\
    127  1.13      matt 	stmw	%r30,(savearea+CPUSAVE_SRR0)(%r1); /* save srr0/srr1 */	\
    128  1.14  kiyohara 	mfsprg1	%r1;			/* restore SP */ 	\
    129  1.12      matt 	mtcr	%r31;						\
    130  1.15      matt 	bf	MSR_PR,1f;		/* branch if MSR[PR] is clear */ \
    131  1.14  kiyohara 	GET_PCB(%r1);						\
    132  1.13      matt 	addi	%r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
    133   1.1    simonb 1:
    134   1.1    simonb 
    135   1.1    simonb 
    136   1.4    simonb /* Standard handler saves r1,r28-31,LR,CR, sets up the stack and calls s_trap */
    137   1.1    simonb #define STANDARD_EXC_HANDLER(name)\
    138   1.1    simonb 	.globl	_C_LABEL(name ## trap),_C_LABEL(name ## size) ;	\
    139   1.1    simonb _C_LABEL(name ## trap):						\
    140  1.13      matt 	STANDARD_PROLOG(CI_TEMPSAVE);				\
    141  1.19  kiyohara 	bla	s_trap;						\
    142   1.1    simonb _C_LABEL(name ## size) = .-_C_LABEL(name ## trap)
    143   1.1    simonb 
    144   1.4    simonb /* Access exceptions also need DEAR and ESR saved */
    145   1.1    simonb #define ACCESS_EXC_HANDLER(name)\
    146   1.1    simonb 	.globl	_C_LABEL(name ## trap),_C_LABEL(name ## size) ;	\
    147   1.1    simonb _C_LABEL(name ## trap):						\
    148  1.13      matt 	ACCESS_PROLOG(CI_TEMPSAVE);				\
    149  1.19  kiyohara 	bla	s_trap;						\
    150   1.1    simonb _C_LABEL(name ## size) = .-_C_LABEL(name ## trap)
    151   1.1    simonb 
    152   1.1    simonb /* Maybe this should call ddb.... */
    153   1.1    simonb #define CRITICAL_EXC_HANDLER(name)\
    154   1.1    simonb 	.globl	_C_LABEL(name ## trap),_C_LABEL(name ## size) ;	\
    155   1.1    simonb _C_LABEL(name ## trap):						\
    156  1.13      matt 	CRITICAL_PROLOG(CI_TEMPSAVE);				\
    157  1.19  kiyohara 	bla	s_trap;						\
    158   1.1    simonb _C_LABEL(name ## size) = .-_C_LABEL(name ## trap)
    159   1.4    simonb 
    160  1.13      matt #define	INTR_PROLOG(tempsave)					\
    161  1.13      matt 	mtsprg1	%r1;			/* save SP */		\
    162  1.13      matt 	GET_CPUINFO(%r1);					\
    163  1.13      matt 	stmw	%r28,(tempsave+CPUSAVE_R28)(%r1); /* free r28-r31 */ \
    164  1.13      matt 	mflr	%r28;			/* save LR */		\
    165  1.13      matt 	mfcr	%r29;			/* save CR */		\
    166  1.13      matt 	mfxer	%r30;			/* save XER */		\
    167  1.22  kiyohara 	mfsrr1	%r31;						\
    168  1.22  kiyohara 	mtcr	%r31;						\
    169  1.24  kiyohara 	mfsprg1	%r1;			/* restore SP */ 	\
    170  1.24  kiyohara 	bf	MSR_PR,1f;		/* branch if PSL_PR is false */ \
    171  1.24  kiyohara 	GET_PCB(%r1);						\
    172  1.24  kiyohara 	addi	%r1,%r1,USPACE-CALLFRAMELEN; /* stack is top of user struct */ \
    173  1.13      matt 1:
    174  1.13      matt 
    175   1.1    simonb 	.text
    176   1.1    simonb 	STANDARD_EXC_HANDLER(default)
    177  1.25       rin 	ACCESS_EXC_HANDLER(access)
    178  1.25       rin 	CRITICAL_EXC_HANDLER(critical)
    179   1.1    simonb 
    180   1.1    simonb /*
    181   1.1    simonb  * This one for the external interrupt handler.
    182   1.1    simonb  */
    183   1.1    simonb 	.globl	_C_LABEL(extint),_C_LABEL(extsize)
    184   1.1    simonb _C_LABEL(extint):
    185  1.13      matt 	INTR_PROLOG(CI_TEMPSAVE)
    186   1.1    simonb 	ba	extintr
    187   1.1    simonb _C_LABEL(extsize) = .-_C_LABEL(extint)
    188   1.1    simonb 
    189   1.4    simonb 
    190  1.11   garbled #if defined(DDB) || defined(KGDB)
    191   1.1    simonb /*
    192   1.1    simonb  * In case of DDB we want a separate trap catcher for it
    193   1.1    simonb  */
    194  1.13      matt 	.lcomm	ddbstk,INTSTK,16	/* ddb stack */
    195   1.1    simonb 
    196   1.1    simonb 	.globl	_C_LABEL(ddblow),_C_LABEL(ddbsize)
    197   1.1    simonb _C_LABEL(ddblow):
    198  1.12      matt 	mtsprg1	%r1			/* save SP */
    199  1.13      matt 	GET_CPUINFO(%r1)
    200  1.13      matt 	stmw	%r28,CI_DDBSAVE(%r1)	/* free r28-r31 */
    201  1.12      matt 	mflr	%r28			/* save LR */
    202  1.12      matt 	mfcr	%r29			/* save CR */
    203  1.19  kiyohara 	mfsrr0	%r30
    204  1.19  kiyohara 	mfsrr1	%r31
    205  1.19  kiyohara 	stmw	%r30,(CI_DDBSAVE+CPUSAVE_SRR0)(%r1)	/* save srr0/srr1 */
    206  1.13      matt 	lis	%r1,ddbstk+INTSTK-CALLFRAMELEN@ha	/* get new SP */
    207  1.13      matt 	addi	%r1,%r1,ddbstk+INTSTK-CALLFRAMELEN@l
    208   1.1    simonb 	bla	ddbtrap
    209   1.1    simonb _C_LABEL(ddbsize) = .-_C_LABEL(ddblow)
    210  1.11   garbled #endif	/* DDB || KGDB */
    211   1.1    simonb 
    212   1.1    simonb #ifdef IPKDB
    213   1.1    simonb /*
    214   1.1    simonb  * In case of IPKDB we want a separate trap catcher for it
    215   1.1    simonb  */
    216   1.1    simonb 
    217  1.13      matt 	.lcomm	ipkdbstk,INTSTK,16	/* ipkdb stack */
    218   1.1    simonb 
    219   1.1    simonb 	.globl	_C_LABEL(ipkdblow),_C_LABEL(ipkdbsize)
    220   1.1    simonb _C_LABEL(ipkdblow):
    221  1.12      matt 	mtsprg1	%r1			/* save SP */
    222  1.13      matt 	GET_CPUINFO(%r1)
    223  1.13      matt 	stmw	%r28,CI_IPKDBSAVE(%r1)	/* free r28-r31 */
    224  1.12      matt 	mflr	%r28			/* save LR */
    225  1.12      matt 	mfcr	%r29			/* save CR */
    226  1.19  kiyohara 	mfsrr0	%r30
    227  1.19  kiyohara 	mfsrr1	%r31
    228  1.19  kiyohara 	stmw	%r30,(CI_IPKDBSAVE+CPUSAVE_SRR0)(%r1)	/* save srr0/srr1 */
    229  1.13      matt 	lis	%r1,ipkdbstk+INTSTK-CALLFRAMELEN@ha	/* get new SP */
    230  1.13      matt 	addi	%r1,%r1,ipkdbstk+INTSTK-CALLFRAMELEN@l
    231   1.1    simonb 	bla	ipkdbtrap
    232   1.1    simonb _C_LABEL(ipkdbsize) = .-_C_LABEL(ipkdblow)
    233   1.1    simonb #endif	/* IPKDB */
    234   1.1    simonb 
    235   1.1    simonb #ifdef DEBUG
    236   1.1    simonb #define TRAP_IF_ZERO(r)	tweqi	r,0
    237   1.1    simonb #else
    238   1.1    simonb #define TRAP_IF_ZERO(r)
    239   1.1    simonb #endif
    240   1.4    simonb 
    241  1.13      matt #define	ENABLE_TRANSLATION(pidreg,tmpreg)				\
    242  1.13      matt 	mfpid	pidreg;							\
    243  1.19  kiyohara 	li	tmpreg,KERNEL_PID;					\
    244  1.13      matt 	mtpid	tmpreg;							\
    245  1.13      matt 	mfmsr	tmpreg;							\
    246  1.13      matt 	ori	tmpreg,tmpreg,(PSL_DR|PSL_IR)@l;			\
    247  1.13      matt 	mtmsr	tmpreg;							\
    248  1.13      matt 	isync
    249  1.13      matt 
    250   1.1    simonb /*
    251   1.1    simonb  * FRAME_SETUP assumes:
    252  1.12      matt  *	SPRG1		SP (r1)
    253  1.25       rin  *	savearea	r28-r31,DEAR,ESR,SRR0,SRR1
    254  1.25       rin  *			(DEAR & ESR only for access traps)
    255  1.13      matt  *	%r28		LR
    256  1.13      matt  *	%r29		CR
    257  1.13      matt  *	%r1		kernel stack
    258   1.1    simonb  *	LR		trap type
    259   1.1    simonb  */
    260   1.1    simonb #define	FRAME_SETUP(savearea)						\
    261   1.1    simonb /* Have to enable translation to allow access of kernel stack: */	\
    262  1.13      matt 	ENABLE_TRANSLATION(%r30,%r31);					\
    263  1.12      matt 	mfsprg1	%r31;							\
    264  1.12      matt 	stwu	%r31,-FRAMELEN(%r1);					\
    265  1.13      matt 	stw	%r30,FRAME_PID(%r1);					\
    266  1.13      matt 	stw	%r0,FRAME_R0(%r1);					\
    267  1.13      matt 	stw	%r31,FRAME_R1(%r1);					\
    268  1.13      matt 	stw	%r2,FRAME_R2(%r1);					\
    269  1.13      matt 	GET_CPUINFO(%r2);						\
    270  1.13      matt 	stw	%r28,FRAME_LR(%r1);					\
    271  1.13      matt 	stw	%r29,FRAME_CR(%r1);					\
    272  1.13      matt 	lmw	%r28,(savearea+CPUSAVE_R28)(%r2);			\
    273  1.13      matt 	stmw	%r3,FRAME_R3(%r1);					\
    274  1.13      matt 	lmw	%r28,(savearea+CPUSAVE_DEAR)(%r2);			\
    275  1.15      matt 	lwz	%r13,CI_CURLWP(%r2);					\
    276  1.12      matt 	mfxer	%r3;							\
    277  1.12      matt 	mfctr	%r4;							\
    278  1.12      matt 	mflr	%r5;							\
    279  1.12      matt 	andi.	%r5,%r5,0xff00;						\
    280  1.13      matt 	stw	%r3,FRAME_XER(%r1);					\
    281  1.13      matt 	stw	%r4,FRAME_CTR(%r1);					\
    282  1.13      matt 	stw	%r5,FRAME_EXC(%r1);					\
    283  1.13      matt 	stw	%r28,FRAME_DEAR(%r1);					\
    284  1.13      matt 	stw	%r29,FRAME_ESR(%r1);					\
    285  1.13      matt 	stw	%r30,FRAME_SRR0(%r1);					\
    286  1.13      matt 	stw	%r31,FRAME_SRR1(%r1)
    287  1.13      matt 
    288  1.13      matt #define	FRAME_SAVE_CALLEE						\
    289  1.19  kiyohara 	stmw	%r14,FRAME_R14(%r1)
    290  1.13      matt 
    291  1.13      matt #define	FRAME_RESTORE							\
    292  1.13      matt 	lwz	%r6,FRAME_LR(%r1);					\
    293  1.13      matt 	lwz	%r7,FRAME_CR(%r1);					\
    294  1.13      matt 	lwz	%r8,FRAME_XER(%r1);					\
    295  1.13      matt 	lwz	%r9,FRAME_CTR(%r1);					\
    296  1.13      matt 	lwz	%r10,FRAME_SRR0(%r1);					\
    297  1.13      matt 	lwz	%r11,FRAME_SRR1(%r1);					\
    298  1.13      matt 	mtlr	%r6;							\
    299  1.13      matt 	mtcr	%r7;							\
    300  1.13      matt 	mtxer	%r8;							\
    301  1.13      matt 	mtctr	%r9;							\
    302  1.13      matt 	mtsrr0	%r10;							\
    303  1.13      matt 	mtsrr1	%r11;							\
    304  1.15      matt 	lwz	%r13,FRAME_R13(%r1);					\
    305  1.13      matt 	lwz	%r12,FRAME_R12(%r1);					\
    306  1.13      matt 	lwz	%r11,FRAME_R11(%r1);					\
    307  1.13      matt 	lwz	%r10,FRAME_R10(%r1);					\
    308  1.13      matt 	lwz	%r9,FRAME_R9(%r1);					\
    309  1.13      matt 	lwz	%r8,FRAME_R8(%r1);					\
    310  1.13      matt 	lwz	%r7,FRAME_R7(%r1);					\
    311  1.13      matt 	lwz	%r6,FRAME_R6(%r1);					\
    312  1.13      matt 	lwz	%r5,FRAME_R5(%r1);					\
    313  1.13      matt 	lwz	%r4,FRAME_R4(%r1);					\
    314  1.13      matt 	lwz	%r3,FRAME_R3(%r1);					\
    315  1.13      matt 	lwz	%r2,FRAME_R2(%r1);					\
    316  1.13      matt 	lwz	%r0,FRAME_R1(%r1);					\
    317  1.13      matt 	mtsprg1	%r0;							\
    318  1.13      matt 	lwz	%r0,FRAME_R0(%r1)
    319  1.13      matt 
    320   1.1    simonb /*
    321   1.1    simonb  * Now the common trap catching code.
    322   1.1    simonb  */
    323   1.1    simonb s_trap:
    324  1.13      matt 	FRAME_SETUP(CI_TEMPSAVE)
    325  1.13      matt 	/* R31 = SRR1 */
    326   1.1    simonb /* Now we can recover interrupts again: */
    327   1.1    simonb trapagain:
    328  1.13      matt 	wrtee	%r31			/* reenable interrupts */
    329   1.1    simonb /* Call C trap code: */
    330  1.13      matt 	addi	%r3,%r1,FRAME_TF
    331   1.1    simonb 	bl	_C_LABEL(trap)
    332   1.2    simonb 	.globl	_C_LABEL(trapexit)
    333   1.2    simonb _C_LABEL(trapexit):
    334   1.1    simonb 	/* Disable interrupts: */
    335   1.1    simonb 	wrteei	0
    336  1.13      matt 
    337   1.1    simonb 	/* Test AST pending: */
    338  1.13      matt 	mtcr	%r31
    339  1.15      matt 	bf	MSR_PR,trapleave_to_kernel /* branch if MSR[PR] is false */
    340  1.13      matt 
    341  1.15      matt 	lwz	%r4,L_MD_ASTPENDING(%r13)
    342  1.12      matt 	andi.	%r4,%r4,1
    343  1.13      matt 	beq	trapleave_to_user
    344  1.13      matt 
    345  1.12      matt 	li	%r6,EXC_AST
    346  1.13      matt 	stw	%r6,FRAME_EXC(%r1)
    347   1.1    simonb 	b	trapagain
    348  1.13      matt 
    349  1.13      matt trapleave_to_kernel:
    350  1.15      matt 	lmw	%r14, FRAME_R14(%r1)	/* restore callee registers */
    351  1.13      matt 
    352  1.13      matt intrleave_to_kernel:
    353  1.13      matt 	FRAME_RESTORE		/* old SP is now in sprg1 */
    354  1.21  kiyohara 
    355  1.21  kiyohara 	mtsprg2	%r30
    356  1.21  kiyohara 	mtsprg3	%r31
    357  1.21  kiyohara 	mfmsr	%r30
    358  1.21  kiyohara 	li	%r31,(PSL_DR|PSL_IR)@l
    359  1.21  kiyohara 	andc	%r30,%r30,%r31
    360  1.21  kiyohara 	lwz	%r31,FRAME_PID(%r1)
    361  1.21  kiyohara 	TRAP_IF_ZERO(%r31)
    362  1.13      matt 	/*
    363  1.13      matt 	 * Now that we are done with the trapframe, we can load the original SP
    364  1.13      matt 	 */
    365  1.13      matt 	mfsprg1	%r1
    366  1.21  kiyohara 	mtmsr	%r30	/* disable translation */
    367  1.21  kiyohara 	isync
    368  1.21  kiyohara 	mtpid	%r31
    369  1.21  kiyohara 	mfsprg3	%r31
    370  1.21  kiyohara 	mfsprg2	%r30
    371  1.13      matt 	rfi
    372  1.13      matt 	ba	.		/* Protect against prefetch */
    373  1.13      matt 
    374  1.13      matt trapleave_to_user:
    375  1.19  kiyohara 	lmw	%r14, FRAME_R14(%r1)	/* restore callee registers */
    376  1.13      matt 
    377  1.13      matt intrleave_to_user:
    378  1.13      matt /* Now restore regs: */
    379  1.13      matt 	lwz	%r3,FRAME_PID(%r1)
    380  1.13      matt 	lwz	%r4,FRAME_SRR1(%r1)
    381  1.13      matt 	bl	_C_LABEL(ctx_setup)
    382  1.13      matt 	TRAP_IF_ZERO(%r3)
    383  1.13      matt 	stw	%r3,FRAME_PID(%r1)
    384  1.13      matt 
    385  1.13      matt 	FRAME_RESTORE		/* old SP is now in sprg1 */
    386  1.13      matt 
    387  1.13      matt 	/*
    388  1.13      matt 	 * We are returning to userspace so we need to switch PIDs.
    389  1.13      matt 	 * Since the kernel executes out of what would be userspace,
    390  1.13      matt 	 * we need to turn off translation before we set the PID.
    391  1.13      matt 	 *
    392  1.13      matt 	 * Alterantively, we could map a kernel page at 0xfffff000
    393  1.13      matt 	 * that had the mtpid code in it and branch to it and avoid
    394  1.13      matt 	 * all this.  (ba foo; foo: mtpid %r31; mfsprg3 %r31; rfi;)
    395  1.13      matt 	 */
    396  1.20  kiyohara 	mtsprg2	%r30
    397  1.20  kiyohara 	mtsprg3	%r31
    398  1.13      matt 	mfmsr	%r30
    399  1.13      matt 	li	%r31,(PSL_DR|PSL_IR)@l
    400  1.13      matt 	andc	%r30,%r30,%r31
    401  1.13      matt 	lwz	%r31,FRAME_PID(%r1)
    402  1.13      matt 	TRAP_IF_ZERO(%r31)
    403  1.13      matt 	/*
    404  1.13      matt 	 * Now that we are done with the trapframe, we can load the original SP
    405  1.13      matt 	 */
    406  1.13      matt 	mfsprg1	%r1
    407  1.13      matt 	mtmsr	%r30	/* disable translation */
    408  1.13      matt 	isync
    409  1.13      matt 	mtpid	%r31
    410  1.13      matt 	mfsprg3	%r31
    411  1.13      matt 	mfsprg2	%r30
    412   1.1    simonb 	rfi
    413   1.1    simonb 	ba	.	/* Protect against prefetch */
    414   1.5       chs 
    415   1.5       chs 
    416   1.8      matt 	.globl	_C_LABEL(sctrap),_C_LABEL(scsize),_C_LABEL(sctrapexit)
    417   1.5       chs _C_LABEL(sctrap):
    418  1.13      matt 	STANDARD_PROLOG(CI_TEMPSAVE)
    419   1.5       chs 	bla	s_sctrap
    420   1.5       chs _C_LABEL(scsize) = .-_C_LABEL(sctrap)
    421   1.5       chs 
    422   1.5       chs s_sctrap:
    423  1.13      matt 	FRAME_SETUP(CI_TEMPSAVE)
    424   1.5       chs /* Now we can recover interrupts again: */
    425   1.5       chs 	wrteei	1			/* Enable interrupts */
    426   1.5       chs /* Call the appropriate syscall handler: */
    427  1.13      matt 	addi	%r3,%r1,FRAME_TF
    428  1.15      matt 	lwz	%r4,L_PROC(%r13)
    429  1.12      matt 	lwz	%r4,P_MD_SYSCALL(%r4)
    430  1.12      matt 	mtctr	%r4
    431   1.5       chs 	bctrl
    432   1.8      matt _C_LABEL(sctrapexit):
    433  1.13      matt 	b	trapexit
    434   1.5       chs 
    435   1.1    simonb /*
    436   1.1    simonb  * External interrupt second level handler
    437   1.1    simonb  */
    438   1.4    simonb 
    439  1.13      matt #define	INTR_SAVE(tempsave)						\
    440   1.1    simonb /* Save non-volatile registers: */					\
    441  1.13      matt 	stwu	%r1,-FRAMELEN(%r1);	/* temporarily */		\
    442  1.13      matt 	stw	%r0,FRAME_R0(%r1);					\
    443  1.12      matt 	mfsprg1	%r0;			/* get original SP */		\
    444  1.13      matt 	stw	%r0,FRAME_R1(%r1);	/* and store it */		\
    445  1.13      matt 	stw	%r2,FRAME_R2(%r1);					\
    446  1.13      matt 	stw	%r3,FRAME_R3(%r1);					\
    447  1.13      matt 	stw	%r4,FRAME_R4(%r1);					\
    448  1.13      matt 	stw	%r5,FRAME_R5(%r1);					\
    449  1.13      matt 	stw	%r6,FRAME_R6(%r1);					\
    450  1.13      matt 	stw	%r7,FRAME_R7(%r1);					\
    451  1.13      matt 	stw	%r8,FRAME_R8(%r1);					\
    452  1.13      matt 	stw	%r9,FRAME_R9(%r1);					\
    453  1.13      matt 	stw	%r10,FRAME_R10(%r1);					\
    454  1.13      matt 	stw	%r11,FRAME_R11(%r1);					\
    455  1.13      matt 	stw	%r12,FRAME_R12(%r1);					\
    456  1.16     cliff 	stw	%r13,FRAME_R13(%r1);					\
    457  1.13      matt 	mfctr	%r31;							\
    458  1.13      matt 	stmw	%r28,FRAME_LR(%r1);	/* save LR, CR, XER, CTR */	\
    459  1.12      matt 	GET_CPUINFO(%r5);						\
    460  1.13      matt 	lmw	%r28,(tempsave+CPUSAVE_R28)(%r5); /* restore r28-r31 */	\
    461  1.15      matt 	lwz	%r13,CI_CURLWP(%r5);					\
    462  1.13      matt 	lwz	%r5,CI_IDEPTH(%r5);					\
    463  1.12      matt 	mfsrr0	%r4;							\
    464  1.12      matt 	mfsrr1	%r3;							\
    465  1.13      matt 	stw	%r5,FRAME_IDEPTH(%r1);					\
    466  1.13      matt 	stw	%r4,FRAME_SRR0(%r1);					\
    467  1.13      matt 	stw	%r3,FRAME_SRR1(%r1);					\
    468   1.1    simonb /* interrupts are recoverable here, and enable translation */		\
    469  1.13      matt 	ENABLE_TRANSLATION(%r0,%r5);					\
    470  1.19  kiyohara 	stw	%r0,FRAME_PID(%r1);
    471   1.1    simonb 
    472   1.1    simonb 	.globl	_C_LABEL(extint_call)
    473   1.1    simonb extintr:
    474  1.13      matt 	INTR_SAVE(CI_TEMPSAVE)
    475   1.1    simonb _C_LABEL(extint_call):
    476   1.1    simonb 	bl	_C_LABEL(extint_call)	/* to be filled in later */
    477   1.1    simonb 
    478   1.1    simonb intr_exit:
    479  1.13      matt /* Disable interrupts */
    480   1.1    simonb 	wrteei	0
    481   1.1    simonb 	isync
    482   1.4    simonb 
    483  1.15      matt 	lwz	%r4,FRAME_SRR1(%r1)
    484   1.1    simonb /* Returning to user mode? */
    485  1.15      matt 	mtcr	%r4			/* saved SRR1 */
    486  1.15      matt 	bf	MSR_PR,intrleave_to_kernel /* branch if MSR[PR] is false */
    487  1.13      matt 
    488  1.15      matt 	lwz	%r4,L_MD_ASTPENDING(%r13)/* Test AST pending */
    489  1.13      matt 	andi.	%r4,%r4,1
    490  1.13      matt 	beq	intrleave_to_user
    491  1.13      matt 
    492  1.13      matt 	FRAME_SAVE_CALLEE		/* save rest of callee registers */
    493  1.12      matt 	li	%r6,EXC_AST
    494  1.13      matt 	stw	%r6,FRAME_EXC(%r1)
    495  1.23  kiyohara 	lwz	%r31,FRAME_SRR1(%r1)	/* move SRR1 to R31 */
    496  1.13      matt 	b	trapagain
    497   1.4    simonb 
    498   1.1    simonb /*
    499   1.1    simonb  * PIT interrupt handler.
    500   1.1    simonb  */
    501   1.1    simonb 	.align	5
    502   1.1    simonb _C_LABEL(pitint):
    503  1.13      matt 	INTR_PROLOG(CI_TEMPSAVE)
    504  1.13      matt 	INTR_SAVE(CI_TEMPSAVE)
    505  1.16     cliff 	addi	%r3,%r1,FRAME_CF	/* clock frame */
    506   1.1    simonb 	bl	_C_LABEL(decr_intr)
    507   1.1    simonb 	b	intr_exit
    508   1.1    simonb 
    509   1.1    simonb /*
    510   1.1    simonb  * FIT interrupt handler.
    511   1.1    simonb  */
    512   1.1    simonb 	.align	5
    513  1.13      matt _C_LABEL(fitint):
    514  1.13      matt 	INTR_PROLOG(CI_TEMPSAVE)
    515  1.13      matt 	INTR_SAVE(CI_TEMPSAVE)
    516  1.16     cliff 	addi	%r3,%r1,FRAME_CF	/* clock frame */
    517   1.1    simonb 	bl	_C_LABEL(stat_intr)
    518   1.1    simonb 	b	intr_exit
    519   1.1    simonb 
    520  1.11   garbled #if defined(DDB) || defined(KGDB)
    521   1.1    simonb /*
    522   1.1    simonb  * Deliberate entry to ddbtrap
    523   1.1    simonb  */
    524   1.1    simonb 	.globl	_C_LABEL(ddb_trap)
    525   1.1    simonb _C_LABEL(ddb_trap):
    526  1.12      matt 	mtsprg1	%r1
    527  1.13      matt 	GET_CPUINFO(%r4)
    528  1.12      matt 	mfmsr	%r3
    529  1.18  kiyohara 	stw	%r3,(CI_DDBSAVE+CPUSAVE_SRR1)(%r4)
    530   1.1    simonb 	wrteei	0			/* disable interrupts */
    531   1.1    simonb 	isync
    532  1.17  kiyohara 	stmw	%r28,CI_DDBSAVE(%r4)
    533  1.12      matt 	mflr	%r28
    534  1.18  kiyohara 	stw	%r28,(CI_DDBSAVE+CPUSAVE_SRR0)(%r4)
    535  1.12      matt 	li	%r29,EXC_BPT
    536  1.12      matt 	mtlr	%r29
    537  1.12      matt 	mfcr	%r29
    538   1.1    simonb 
    539   1.1    simonb /*
    540  1.11   garbled  * Now the ddb/kgdb trap catching code.
    541   1.1    simonb  */
    542   1.1    simonb ddbtrap:
    543  1.13      matt 	FRAME_SETUP(CI_DDBSAVE)
    544   1.1    simonb /* Call C trap code: */
    545  1.13      matt 	addi	%r3,%r1,FRAME_TF
    546   1.1    simonb 	bl	_C_LABEL(ddb_trap_glue)
    547  1.12      matt 	or.	%r3,%r3,%r3
    548  1.13      matt 	beq	trapagain
    549  1.13      matt 	b	trapexit
    550  1.11   garbled #endif /* DDB || KGDB */
    551   1.1    simonb 
    552   1.1    simonb #ifdef IPKDB
    553   1.1    simonb /*
    554   1.1    simonb  * Deliberate entry to ipkdbtrap
    555   1.1    simonb  */
    556   1.1    simonb 	.globl	_C_LABEL(ipkdb_trap)
    557   1.1    simonb _C_LABEL(ipkdb_trap):
    558  1.12      matt 	mtsprg1	%r1
    559  1.13      matt 	GET_CPUINFO(%r4)
    560  1.12      matt 	mfmsr	%r3
    561  1.13      matt 	stw	%r3,(CI_IPKDBSAVE+CPUSAVE_SRR1)(%r4)
    562   1.1    simonb 	wrteei	0			/* disable interrupts */
    563   1.1    simonb 	isync
    564  1.13      matt 	stmw	%r28,CI_IPKDBSAVE(%r4)
    565  1.12      matt 	mflr	%r28
    566  1.13      matt 	stw	%r28,(CI_IPKDBSAVE+CPUSAVE_SRR0)(%r4)
    567  1.12      matt 	li	%r29,EXC_BPT
    568  1.12      matt 	mtlr	%r29
    569  1.12      matt 	mfcr	%r29
    570   1.1    simonb 
    571   1.1    simonb /*
    572   1.1    simonb  * Now the ipkdb trap catching code.
    573   1.1    simonb  */
    574   1.1    simonb ipkdbtrap:
    575  1.13      matt 	FRAME_SETUP(CI_IPKDBSAVE)
    576   1.1    simonb /* Call C trap code: */
    577  1.13      matt 	addi	%r3,%r1,FRAME_TF
    578   1.1    simonb 	bl	_C_LABEL(ipkdb_trap_glue)
    579  1.12      matt 	or.	%r3,%r3,%r3
    580  1.13      matt 	beq	trapagain
    581  1.13      matt 	b	trapexit
    582   1.1    simonb 
    583   1.1    simonb ipkdbfault:
    584   1.1    simonb 	ba	_ipkdbfault
    585   1.1    simonb _ipkdbfault:
    586  1.12      matt 	mfsrr0	%r3
    587  1.12      matt 	addi	%r3,%r3,4
    588  1.12      matt 	mtsrr0	%r3
    589  1.12      matt 	li	%r3,-1
    590   1.1    simonb 	rfi
    591   1.1    simonb 	ba	.	/* Protect against prefetch */
    592   1.1    simonb 
    593   1.1    simonb /*
    594   1.1    simonb  * int ipkdbfbyte(unsigned char *p)
    595   1.1    simonb  */
    596   1.1    simonb 	.globl	_C_LABEL(ipkdbfbyte)
    597   1.1    simonb _C_LABEL(ipkdbfbyte):
    598  1.12      matt 	li	%r9,EXC_DSI		/* establish new fault routine */
    599  1.12      matt 	lwz	%r5,0(%r9)
    600  1.12      matt 	lis	%r6,ipkdbfault@ha
    601  1.12      matt 	lwz	%r6,ipkdbfault@l(%r6)
    602  1.12      matt 	stw	%r6,0(%r9)
    603   1.1    simonb #ifdef	IPKDBUSERHACK
    604   1.1    simonb #ifndef PPC_IBM4XX
    605  1.12      matt 	lis	%r8,_C_LABEL(ipkdbsr)@ha
    606  1.12      matt 	lwz	%r8,_C_LABEL(ipkdbsr)@l(%r8)
    607  1.12      matt 	mtsr	USER_SR,%r8
    608   1.1    simonb 	isync
    609   1.4    simonb #endif
    610   1.1    simonb #endif
    611  1.12      matt 	dcbst	%r0,%r9			/* flush data... */
    612   1.1    simonb 	sync
    613  1.12      matt 	icbi	%r0,%r9			/* and instruction caches */
    614  1.12      matt 	lbz	%r3,0(%r3)		/* fetch data */
    615  1.12      matt 	stw	%r5,0(%r9)		/* restore previous fault handler */
    616  1.12      matt 	dcbst	%r0,%r9			/* and flush data... */
    617   1.1    simonb 	sync
    618  1.12      matt 	icbi	%r0,%r9			/* and instruction caches */
    619   1.1    simonb 	blr
    620   1.1    simonb 
    621   1.1    simonb /*
    622   1.1    simonb  * int ipkdbsbyte(unsigned char *p, int c)
    623   1.1    simonb  */
    624   1.1    simonb 	.globl	_C_LABEL(ipkdbsbyte)
    625   1.1    simonb _C_LABEL(ipkdbsbyte):
    626  1.12      matt 	li	%r9,EXC_DSI		/* establish new fault routine */
    627  1.12      matt 	lwz	%r5,0(%r9)
    628  1.12      matt 	lis	%r6,ipkdbfault@ha
    629  1.12      matt 	lwz	%r6,ipkdbfault@l(%r6)
    630  1.12      matt 	stw	%r6,0(%r9)
    631   1.1    simonb #ifdef	IPKDBUSERHACK
    632   1.1    simonb #ifndef PPC_IBM4XX
    633  1.12      matt 	lis	%r8,_C_LABEL(ipkdbsr)@ha
    634  1.12      matt 	lwz	%r8,_C_LABEL(ipkdbsr)@l(%r8)
    635  1.12      matt 	mtsr	USER_SR,%r8
    636   1.1    simonb 	isync
    637   1.4    simonb #endif
    638   1.1    simonb #endif
    639  1.12      matt 	dcbst	%r0,%r9			/* flush data... */
    640   1.1    simonb 	sync
    641  1.12      matt 	icbi	%r0,%r9			/* and instruction caches */
    642  1.12      matt 	mr	%r6,%r3
    643  1.12      matt 	xor	%r3,%r3,%r3
    644  1.12      matt 	stb	%r4,0(%r6)
    645  1.12      matt 	dcbst	%r0,%r6			/* Now do appropriate flushes
    646   1.1    simonb 					   to data... */
    647   1.1    simonb 	sync
    648  1.12      matt 	icbi	%r0,%r6			/* and instruction caches */
    649  1.12      matt 	stw	%r5,0(%r9)		/* restore previous fault handler */
    650  1.12      matt 	dcbst	%r0,%r9			/* and flush data... */
    651   1.1    simonb 	sync
    652  1.12      matt 	icbi	%r0,%r9			/* and instruction caches */
    653   1.1    simonb 	blr
    654   1.1    simonb #endif	/* IPKDB */
    655