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psl.h revision 1.19
      1  1.19      mrg /*	$NetBSD: psl.h,v 1.19 2001/03/02 07:36:57 mrg Exp $ */
      2   1.1      eeh 
      3   1.1      eeh /*
      4   1.1      eeh  * Copyright (c) 1992, 1993
      5   1.1      eeh  *	The Regents of the University of California.  All rights reserved.
      6   1.1      eeh  *
      7   1.1      eeh  * This software was developed by the Computer Systems Engineering group
      8   1.1      eeh  * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
      9   1.1      eeh  * contributed to Berkeley.
     10   1.1      eeh  *
     11   1.1      eeh  * All advertising materials mentioning features or use of this software
     12   1.1      eeh  * must display the following acknowledgement:
     13   1.1      eeh  *	This product includes software developed by the University of
     14   1.1      eeh  *	California, Lawrence Berkeley Laboratory.
     15   1.1      eeh  *
     16   1.1      eeh  * Redistribution and use in source and binary forms, with or without
     17   1.1      eeh  * modification, are permitted provided that the following conditions
     18   1.1      eeh  * are met:
     19   1.1      eeh  * 1. Redistributions of source code must retain the above copyright
     20   1.1      eeh  *    notice, this list of conditions and the following disclaimer.
     21   1.1      eeh  * 2. Redistributions in binary form must reproduce the above copyright
     22   1.1      eeh  *    notice, this list of conditions and the following disclaimer in the
     23   1.1      eeh  *    documentation and/or other materials provided with the distribution.
     24   1.1      eeh  * 3. All advertising materials mentioning features or use of this software
     25   1.1      eeh  *    must display the following acknowledgement:
     26   1.1      eeh  *	This product includes software developed by the University of
     27   1.1      eeh  *	California, Berkeley and its contributors.
     28   1.1      eeh  * 4. Neither the name of the University nor the names of its contributors
     29   1.1      eeh  *    may be used to endorse or promote products derived from this software
     30   1.1      eeh  *    without specific prior written permission.
     31   1.1      eeh  *
     32   1.1      eeh  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
     33   1.1      eeh  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
     34   1.1      eeh  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
     35   1.1      eeh  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
     36   1.1      eeh  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     37   1.1      eeh  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     38   1.1      eeh  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     39   1.1      eeh  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
     40   1.1      eeh  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
     41   1.1      eeh  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
     42   1.1      eeh  * SUCH DAMAGE.
     43   1.1      eeh  *
     44   1.1      eeh  *	@(#)psl.h	8.1 (Berkeley) 6/11/93
     45   1.1      eeh  */
     46   1.1      eeh 
     47   1.1      eeh #ifndef PSR_IMPL
     48   1.1      eeh 
     49   1.1      eeh /*
     50  1.19      mrg  * SPARC Process Status Register (in psl.h for hysterical raisins).  This
     51  1.19      mrg  * doesn't exist on the V9.
     52   1.1      eeh  *
     53   1.1      eeh  * The picture in the Sun manuals looks like this:
     54   1.1      eeh  *	                                     1 1
     55   1.1      eeh  *	 31   28 27   24 23   20 19       14 3 2 11    8 7 6 5 4       0
     56   1.1      eeh  *	+-------+-------+-------+-----------+-+-+-------+-+-+-+---------+
     57   1.1      eeh  *	|  impl |  ver  |  icc  |  reserved |E|E|  pil  |S|P|E|   CWP   |
     58   1.1      eeh  *	|       |       |n z v c|           |C|F|       | |S|T|         |
     59   1.1      eeh  *	+-------+-------+-------+-----------+-+-+-------+-+-+-+---------+
     60   1.1      eeh  */
     61   1.1      eeh 
     62  1.19      mrg #define PSR_IMPL	0xf0000000	/* implementation */
     63  1.19      mrg #define PSR_VER		0x0f000000	/* version */
     64  1.19      mrg #define PSR_ICC		0x00f00000	/* integer condition codes */
     65  1.19      mrg #define PSR_N		0x00800000	/* negative */
     66  1.19      mrg #define PSR_Z		0x00400000	/* zero */
     67  1.19      mrg #define PSR_O		0x00200000	/* overflow */
     68  1.19      mrg #define PSR_C		0x00100000	/* carry */
     69  1.19      mrg #define PSR_EC		0x00002000	/* coprocessor enable */
     70  1.19      mrg #define PSR_EF		0x00001000	/* FP enable */
     71  1.19      mrg #define PSR_PIL		0x00000f00	/* interrupt level */
     72  1.19      mrg #define PSR_S		0x00000080	/* supervisor (kernel) mode */
     73  1.19      mrg #define PSR_PS		0x00000040	/* previous supervisor mode (traps) */
     74  1.19      mrg #define PSR_ET		0x00000020	/* trap enable */
     75  1.19      mrg #define PSR_CWP		0x0000001f	/* current window pointer */
     76   1.1      eeh 
     77  1.19      mrg #define PSR_BITS "\20\16EC\15EF\10S\7PS\6ET"
     78   1.1      eeh 
     79   1.1      eeh /* Interesting spl()s */
     80   1.1      eeh #define PIL_SCSI	3
     81   1.1      eeh #define PIL_FDSOFT	4
     82  1.19      mrg #define PIL_AUSOFT	4
     83   1.1      eeh #define PIL_BIO		5
     84   1.1      eeh #define PIL_VIDEO	5
     85  1.19      mrg #define PIL_TTY		6
     86  1.19      mrg #define PIL_LPT		6
     87  1.19      mrg #define PIL_NET		6
     88   1.1      eeh #define PIL_IMP		7
     89  1.19      mrg #define PIL_CLOCK	10
     90   1.1      eeh #define PIL_FD		11
     91   1.1      eeh #define PIL_SER		12
     92  1.19      mrg #define	PIL_AUD		13
     93  1.19      mrg #define PIL_HIGH	15
     94  1.19      mrg #define PIL_SCHED	PIL_CLOCK
     95  1.19      mrg #define PIL_LOCK	PIL_HIGH
     96   1.1      eeh 
     97   1.1      eeh /*
     98   1.1      eeh  * SPARC V9 CCR register
     99   1.1      eeh  */
    100   1.1      eeh 
    101   1.5      eeh #define ICC_C	0x01L
    102   1.5      eeh #define ICC_V	0x02L
    103   1.5      eeh #define ICC_Z	0x04L
    104   1.5      eeh #define ICC_N	0x08L
    105   1.1      eeh #define XCC_SHIFT	4
    106   1.1      eeh #define XCC_C	(ICC_C<<XCC_SHIFT)
    107   1.1      eeh #define XCC_V	(ICC_V<<XCC_SHIFT)
    108   1.1      eeh #define XCC_Z	(ICC_Z<<XCC_SHIFT)
    109   1.1      eeh #define XCC_N	(ICC_N<<XCC_SHIFT)
    110   1.1      eeh 
    111   1.1      eeh 
    112   1.1      eeh /*
    113   1.1      eeh  * SPARC V9 PSTATE register (what replaces the PSR in V9)
    114   1.1      eeh  *
    115   1.1      eeh  * Here's the layout:
    116   1.1      eeh  *
    117   1.1      eeh  *    11   10    9     8   7  6   5     4     3     2     1   0
    118   1.1      eeh  *  +------------------------------------------------------------+
    119   1.1      eeh  *  | IG | MG | CLE | TLE | MM | RED | PEF | AM | PRIV | IE | AG |
    120   1.1      eeh  *  +------------------------------------------------------------+
    121   1.1      eeh  */
    122   1.1      eeh 
    123   1.1      eeh #define PSTATE_IG	0x800	/* enable spitfire interrupt globals */
    124   1.1      eeh #define PSTATE_MG	0x400	/* enable spitfire MMU globals */
    125   1.1      eeh #define PSTATE_CLE	0x200	/* current little endian */
    126   1.1      eeh #define PSTATE_TLE	0x100	/* traps little endian */
    127   1.1      eeh #define PSTATE_MM	0x0c0	/* memory model */
    128   1.1      eeh #define PSTATE_MM_TSO	0x000	/* total store order */
    129   1.1      eeh #define PSTATE_MM_PSO	0x040	/* partial store order */
    130   1.1      eeh #define PSTATE_MM_RMO	0x080	/* Relaxed memory order */
    131   1.1      eeh #define PSTATE_RED	0x020	/* RED state */
    132   1.1      eeh #define PSTATE_PEF	0x010	/* enable floating point */
    133   1.1      eeh #define PSTATE_AM	0x008	/* 32-bit address masking */
    134   1.1      eeh #define PSTATE_PRIV	0x004	/* privileged mode */
    135   1.1      eeh #define PSTATE_IE	0x002	/* interrupt enable */
    136   1.1      eeh #define PSTATE_AG	0x001	/* enable alternate globals */
    137   1.1      eeh 
    138  1.19      mrg #define PSTATE_BITS "\20\14IG\13MG\12CLE\11TLE\10\7MM\6RED\5PEF\4AM\3PRIV\2IE\1AG"
    139   1.1      eeh 
    140  1.12      eeh 
    141  1.12      eeh /*
    142  1.12      eeh  * 32-bit code requires TSO or at best PSO since that's what's supported on
    143  1.12      eeh  * SPARC V8 and earlier machines.
    144  1.12      eeh  *
    145  1.12      eeh  * 64-bit code sets the memory model in the ELF header.
    146  1.12      eeh  *
    147  1.12      eeh  * We're running kernel code in TSO for the moment so we don't need to worry
    148  1.12      eeh  * about possible memory barrier bugs.
    149  1.12      eeh  */
    150  1.12      eeh 
    151   1.6      mrg #ifdef __arch64__
    152   1.4      eeh #define PSTATE_PROM	(PSTATE_MM_TSO|PSTATE_PRIV)
    153   1.4      eeh #define PSTATE_NUCLEUS	(PSTATE_MM_TSO|PSTATE_PRIV|PSTATE_AG)
    154   1.4      eeh #define PSTATE_KERN	(PSTATE_MM_TSO|PSTATE_PRIV)
    155   1.4      eeh #define PSTATE_INTR	(PSTATE_KERN|PSTATE_IE)
    156  1.12      eeh #define PSTATE_USER32	(PSTATE_MM_TSO|PSTATE_AM|PSTATE_IE)
    157  1.13      eeh #define PSTATE_USER	(PSTATE_MM_RMO|PSTATE_IE)
    158   1.4      eeh #else
    159   1.1      eeh #define PSTATE_PROM	(PSTATE_MM_TSO|PSTATE_PRIV)
    160   1.1      eeh #define PSTATE_NUCLEUS	(PSTATE_MM_TSO|PSTATE_AM|PSTATE_PRIV|PSTATE_AG)
    161   1.1      eeh #define PSTATE_KERN	(PSTATE_MM_TSO|PSTATE_AM|PSTATE_PRIV)
    162   1.1      eeh #define PSTATE_INTR	(PSTATE_KERN|PSTATE_IE)
    163  1.12      eeh #define PSTATE_USER32	(PSTATE_MM_TSO|PSTATE_AM|PSTATE_IE)
    164  1.12      eeh #define PSTATE_USER	(PSTATE_MM_TSO|PSTATE_AM|PSTATE_IE)
    165   1.1      eeh #endif
    166   1.1      eeh 
    167  1.19      mrg 
    168   1.1      eeh /*
    169   1.1      eeh  * SPARC V9 TSTATE register
    170   1.1      eeh  *
    171   1.1      eeh  *   39 32 31 24 23 18  17   8	7 5 4   0
    172   1.1      eeh  *  +-----+-----+-----+--------+---+-----+
    173   1.1      eeh  *  | CCR | ASI |  -  | PSTATE | - | CWP |
    174   1.1      eeh  *  +-----+-----+-----+--------+---+-----+
    175  1.19      mrg  */
    176   1.1      eeh 
    177   1.1      eeh #define TSTATE_CWP		0x01f
    178   1.1      eeh #define TSTATE_PSTATE		0x6ff00
    179   1.1      eeh #define TSTATE_PSTATE_SHIFT	8
    180   1.1      eeh #define TSTATE_ASI		0xff000000LL
    181   1.1      eeh #define TSTATE_ASI_SHIFT	24
    182   1.1      eeh #define TSTATE_CCR		0xff00000000LL
    183   1.1      eeh #define TSTATE_CCR_SHIFT	32
    184   1.1      eeh 
    185   1.1      eeh #define PSRCC_TO_TSTATE(x)	(((int64_t)(x)&PSR_ICC)<<(TSTATE_CCR_SHIFT-19))
    186   1.1      eeh #define TSTATECCR_TO_PSR(x)	(((x)&TSTATE_CCR)>>(TSTATE_CCR_SHIFT-19))
    187   1.1      eeh 
    188   1.1      eeh /*
    189   1.1      eeh  * These are here to simplify life.
    190   1.1      eeh  */
    191   1.1      eeh #define TSTATE_IG	(PSTATE_IG<<TSTATE_PSTATE_SHIFT)
    192   1.1      eeh #define TSTATE_MG	(PSTATE_MG<<TSTATE_PSTATE_SHIFT)
    193   1.1      eeh #define TSTATE_CLE	(PSTATE_CLE<<TSTATE_PSTATE_SHIFT)
    194   1.1      eeh #define TSTATE_TLE	(PSTATE_TLE<<TSTATE_PSTATE_SHIFT)
    195   1.1      eeh #define TSTATE_MM	(PSTATE_MM<<TSTATE_PSTATE_SHIFT)
    196   1.1      eeh #define TSTATE_MM_TSO	(PSTATE_MM_TSO<<TSTATE_PSTATE_SHIFT)
    197   1.1      eeh #define TSTATE_MM_PSO	(PSTATE_MM_PSO<<TSTATE_PSTATE_SHIFT)
    198   1.1      eeh #define TSTATE_MM_RMO	(PSTATE_MM_RMO<<TSTATE_PSTATE_SHIFT)
    199   1.1      eeh #define TSTATE_RED	(PSTATE_RED<<TSTATE_PSTATE_SHIFT)
    200   1.1      eeh #define TSTATE_PEF	(PSTATE_PEF<<TSTATE_PSTATE_SHIFT)
    201   1.1      eeh #define TSTATE_AM	(PSTATE_AM<<TSTATE_PSTATE_SHIFT)
    202   1.1      eeh #define TSTATE_PRIV	(PSTATE_PRIV<<TSTATE_PSTATE_SHIFT)
    203   1.1      eeh #define TSTATE_IE	(PSTATE_IE<<TSTATE_PSTATE_SHIFT)
    204   1.1      eeh #define TSTATE_AG	(PSTATE_AG<<TSTATE_PSTATE_SHIFT)
    205   1.1      eeh 
    206  1.19      mrg #define TSTATE_BITS "\20\14IG\13MG\12CLE\11TLE\10\7MM\6RED\5PEF\4AM\3PRIV\2IE\1AG"
    207   1.1      eeh 
    208   1.1      eeh #define TSTATE_KERN	((TSTATE_KERN)<<TSTATE_PSTATE_SHIFT)
    209   1.1      eeh #define TSTATE_USER	((TSTATE_USER)<<TSTATE_PSTATE_SHIFT)
    210   1.1      eeh /*
    211   1.1      eeh  * SPARC V9 VER version register.
    212   1.1      eeh  *
    213   1.1      eeh  *  63   48 47  32 31  24 23 16 15    8 7 5 4      0
    214   1.1      eeh  * +-------+------+------+-----+-------+---+--------+
    215   1.1      eeh  * | manuf | impl | mask |  -  | maxtl | - | maxwin |
    216   1.1      eeh  * +-------+------+------+-----+-------+---+--------+
    217   1.1      eeh  *
    218   1.1      eeh  */
    219   1.1      eeh 
    220   1.1      eeh #define VER_MANUF	0xffff000000000000LL
    221   1.1      eeh #define VER_MANUF_SHIFT	48
    222   1.1      eeh #define VER_IMPL	0x0000ffff00000000LL
    223   1.1      eeh #define VER_IMPL_SHIFT	32
    224   1.1      eeh #define VER_MASK	0x00000000ff000000LL
    225   1.1      eeh #define VER_MASK_SHIFT	24
    226   1.1      eeh #define VER_MAXTL	0x000000000000ff00LL
    227   1.1      eeh #define VER_MAXTL_SHIFT	8
    228   1.1      eeh #define VER_MAXWIN	0x000000000000001fLL
    229   1.1      eeh 
    230   1.1      eeh /*
    231   1.1      eeh  * Here are a few things to help us transition between user and kernel mode:
    232   1.1      eeh  */
    233   1.1      eeh 
    234   1.1      eeh /* Memory models */
    235   1.1      eeh #define KERN_MM		PSTATE_MM_TSO
    236   1.1      eeh #define USER_MM		PSTATE_MM_RMO
    237   1.1      eeh 
    238   1.4      eeh /*
    239   1.4      eeh  * Register window handlers.  These point to generic routines that check the
    240   1.4      eeh  * stack pointer and then vector to the real handler.  We could optimize this
    241   1.4      eeh  * if we could guarantee only 32-bit or 64-bit stacks.
    242   1.4      eeh  */
    243   1.1      eeh #define WSTATE_KERN	026
    244   1.1      eeh #define WSTATE_USER	022
    245   1.1      eeh 
    246   1.1      eeh #define CWP		0x01f
    247   1.1      eeh 
    248   1.1      eeh /* 64-byte alignment -- this seems the best place to put this. */
    249   1.1      eeh #define BLOCK_SIZE	64
    250   1.1      eeh #define BLOCK_ALIGN	0x3f
    251   1.1      eeh 
    252   1.1      eeh #if defined(_KERNEL) && !defined(_LOCORE)
    253   1.1      eeh 
    254   1.1      eeh extern u_int64_t ver;	/* Copy of v9 version register.  We need to read this only once, in locore.s. */
    255   1.1      eeh static __inline int getpstate __P((void));
    256   1.1      eeh static __inline void setpstate __P((int));
    257   1.1      eeh static __inline int getcwp __P((void));
    258   1.1      eeh static __inline void setcwp __P((int));
    259   1.2      mrg #ifndef SPLDEBUG
    260   1.1      eeh static __inline void splx __P((int));
    261   1.2      mrg #endif
    262   1.1      eeh static __inline u_int64_t getver __P((void));
    263   1.1      eeh 
    264   1.1      eeh /*
    265   1.1      eeh  * GCC pseudo-functions for manipulating privileged registers
    266   1.1      eeh  */
    267   1.1      eeh static __inline int getpstate()
    268   1.1      eeh {
    269   1.1      eeh 	int pstate;
    270   1.1      eeh 
    271   1.1      eeh 	__asm __volatile("rdpr %%pstate,%0" : "=r" (pstate));
    272   1.1      eeh 	return (pstate);
    273   1.1      eeh }
    274   1.1      eeh 
    275   1.1      eeh static __inline void setpstate(newpstate)
    276   1.1      eeh 	int newpstate;
    277   1.1      eeh {
    278   1.1      eeh 	__asm __volatile("wrpr %0,0,%%pstate" : : "r" (newpstate));
    279   1.1      eeh }
    280   1.1      eeh 
    281   1.1      eeh static __inline int getcwp()
    282   1.1      eeh {
    283   1.1      eeh 	int cwp;
    284   1.1      eeh 
    285   1.1      eeh 	__asm __volatile("rdpr %%cwp,%0" : "=r" (cwp));
    286   1.1      eeh 	return (cwp);
    287   1.1      eeh }
    288   1.1      eeh 
    289   1.1      eeh static __inline void setcwp(newcwp)
    290   1.1      eeh 	int newcwp;
    291   1.1      eeh {
    292   1.1      eeh 	__asm __volatile("wrpr %0,0,%%cwp" : : "r" (newcwp));
    293   1.1      eeh }
    294   1.1      eeh 
    295   1.1      eeh static __inline u_int64_t getver()
    296   1.1      eeh {
    297   1.1      eeh 	u_int64_t ver;
    298   1.1      eeh 
    299   1.1      eeh 	__asm __volatile("rdpr %%ver,%0" : "=r" (ver));
    300   1.1      eeh 	return (ver);
    301   1.1      eeh }
    302   1.1      eeh 
    303   1.1      eeh /*
    304   1.1      eeh  * GCC pseudo-functions for manipulating PIL
    305   1.1      eeh  */
    306   1.1      eeh 
    307   1.1      eeh #ifdef SPLDEBUG
    308   1.1      eeh void prom_printf __P((const char *fmt, ...));
    309   1.1      eeh extern int printspl;
    310   1.1      eeh #define SPLPRINT(x)	if(printspl) { int i=10000000; prom_printf x ; while(i--); }
    311   1.1      eeh #define	SPL(name, newpil) \
    312   1.1      eeh static __inline int name##X __P((const char*, int)); \
    313   1.1      eeh static __inline int name##X(const char* file, int line) \
    314   1.1      eeh { \
    315   1.1      eeh 	int oldpil; \
    316   1.1      eeh 	__asm __volatile("rdpr %%pil,%0" : "=r" (oldpil)); \
    317   1.1      eeh 	SPLPRINT(("{%s:%d %d=>%d}", file, line, oldpil, newpil)); \
    318   1.1      eeh 	__asm __volatile("wrpr %%g0,%0,%%pil" : : "n" (newpil)); \
    319   1.1      eeh 	return (oldpil); \
    320   1.1      eeh }
    321   1.1      eeh /* A non-priority-decreasing version of SPL */
    322   1.1      eeh #define	SPLHOLD(name, newpil) \
    323   1.1      eeh static __inline int name##X __P((const char*, int)); \
    324   1.1      eeh static __inline int name##X(const char* file, int line) \
    325   1.1      eeh { \
    326   1.1      eeh 	int oldpil; \
    327   1.1      eeh 	__asm __volatile("rdpr %%pil,%0" : "=r" (oldpil)); \
    328   1.1      eeh 	if (newpil <= oldpil) \
    329   1.1      eeh 		return oldpil; \
    330   1.1      eeh 	SPLPRINT(("{%s:%d %d->!d}", file, line, oldpil, newpil)); \
    331   1.1      eeh 	__asm __volatile("wrpr %%g0,%0,%%pil" : : "n" (newpil)); \
    332   1.1      eeh 	return (oldpil); \
    333   1.1      eeh }
    334   1.1      eeh 
    335   1.1      eeh #else
    336   1.1      eeh #define SPLPRINT(x)
    337   1.1      eeh #define	SPL(name, newpil) \
    338   1.1      eeh static __inline int name __P((void)); \
    339   1.1      eeh static __inline int name() \
    340   1.1      eeh { \
    341   1.1      eeh 	int oldpil; \
    342   1.1      eeh 	__asm __volatile("rdpr %%pil,%0" : "=r" (oldpil)); \
    343   1.1      eeh 	__asm __volatile("wrpr %%g0,%0,%%pil" : : "n" (newpil)); \
    344   1.1      eeh 	return (oldpil); \
    345   1.1      eeh }
    346   1.1      eeh /* A non-priority-decreasing version of SPL */
    347   1.1      eeh #define	SPLHOLD(name, newpil) \
    348   1.1      eeh static __inline int name __P((void)); \
    349   1.1      eeh static __inline int name() \
    350   1.1      eeh { \
    351   1.1      eeh 	int oldpil; \
    352   1.1      eeh 	__asm __volatile("rdpr %%pil,%0" : "=r" (oldpil)); \
    353   1.1      eeh 	if (newpil <= oldpil) \
    354   1.1      eeh 		return oldpil; \
    355   1.1      eeh 	__asm __volatile("wrpr %%g0,%0,%%pil" : : "n" (newpil)); \
    356   1.1      eeh 	return (oldpil); \
    357   1.1      eeh }
    358   1.1      eeh #endif
    359   1.1      eeh 
    360   1.1      eeh SPL(spl0, 0)
    361   1.1      eeh 
    362  1.11  thorpej SPL(spllowersoftclock, 1)
    363  1.11  thorpej 
    364  1.11  thorpej SPLHOLD(splsoftint, 1)
    365  1.11  thorpej #define	splsoftclock	splsoftint
    366   1.1      eeh #define	splsoftnet	splsoftint
    367   1.1      eeh 
    368   1.1      eeh /* audio software interrupts are at software level 4 */
    369   1.1      eeh SPLHOLD(splausoft, PIL_AUSOFT)
    370   1.1      eeh 
    371   1.1      eeh /* floppy software interrupts are at software level 4 too */
    372   1.1      eeh SPLHOLD(splfdsoft, PIL_FDSOFT)
    373   1.1      eeh 
    374   1.1      eeh /* Block devices */
    375   1.1      eeh SPLHOLD(splbio, PIL_BIO)
    376   1.1      eeh 
    377   1.1      eeh /* network hardware interrupts are at level 6 */
    378   1.1      eeh SPLHOLD(splnet, PIL_NET)
    379   1.1      eeh 
    380   1.1      eeh /* tty input runs at software level 6 */
    381   1.1      eeh SPLHOLD(spltty, PIL_TTY)
    382   1.1      eeh 
    383   1.8      eeh /* parallel port runs at software level 6 */
    384   1.8      eeh SPLHOLD(spllpt, PIL_LPT)
    385   1.8      eeh 
    386   1.1      eeh /*
    387   1.1      eeh  * Memory allocation (must be as high as highest network, tty, or disk device)
    388   1.1      eeh  */
    389   1.1      eeh SPLHOLD(splimp, PIL_IMP)
    390  1.18  thorpej SPLHOLD(splvm, PIL_IMP)
    391   1.1      eeh 
    392   1.1      eeh SPLHOLD(splclock, PIL_CLOCK)
    393   1.1      eeh 
    394   1.1      eeh /* fd hardware interrupts are at level 11 */
    395   1.1      eeh SPLHOLD(splfd, PIL_FD)
    396   1.1      eeh 
    397   1.1      eeh /* zs hardware interrupts are at level 12 */
    398   1.1      eeh SPLHOLD(splzs, PIL_SER)
    399   1.7      eeh SPLHOLD(splserial, PIL_SER)
    400   1.1      eeh 
    401   1.1      eeh /* audio hardware interrupts are at level 13 */
    402   1.1      eeh SPLHOLD(splaudio, PIL_AUD)
    403   1.1      eeh 
    404   1.1      eeh /* second sparc timer interrupts at level 14 */
    405   1.1      eeh SPLHOLD(splstatclock, 14)
    406   1.1      eeh 
    407  1.16      eeh SPLHOLD(splsched, PIL_SCHED)
    408  1.16      eeh SPLHOLD(spllock, PIL_LOCK)
    409  1.14  thorpej 
    410  1.16      eeh SPLHOLD(splhigh, PIL_HIGH)
    411   1.1      eeh 
    412   1.1      eeh /* splx does not have a return value */
    413   1.1      eeh #ifdef SPLDEBUG
    414   1.3      eeh /* Keep gcc happy -- reduce warnings */
    415   1.3      eeh #if 0
    416   1.3      eeh static __inline void splx(newpil)
    417   1.3      eeh 	int newpil;
    418   1.3      eeh {
    419   1.3      eeh 	int pil;
    420   1.3      eeh 
    421   1.3      eeh 	__asm __volatile("rdpr %%pil,%0" : "=r" (pil));
    422   1.3      eeh 	SPLPRINT(("{%d->%d}", pil, newpil)); \
    423   1.3      eeh 	__asm __volatile("wrpr %%g0,%0,%%pil" : : "rn" (newpil));
    424   1.3      eeh }
    425   1.3      eeh #endif
    426   1.3      eeh 
    427   1.1      eeh #define	spl0()	spl0X(__FILE__, __LINE__)
    428  1.11  thorpej #define	spllowersoftclock() spllowersoftclockX(__FILE__, __LINE__)
    429   1.1      eeh #define	splsoftint()	splsoftintX(__FILE__, __LINE__)
    430   1.1      eeh #define	splausoft()	splausoftX(__FILE__, __LINE__)
    431   1.1      eeh #define	splfdsoft()	splfdsoftX(__FILE__, __LINE__)
    432   1.1      eeh #define	splbio()	splbioX(__FILE__, __LINE__)
    433   1.1      eeh #define	splnet()	splnetX(__FILE__, __LINE__)
    434   1.1      eeh #define	spltty()	splttyX(__FILE__, __LINE__)
    435   1.8      eeh #define	spllpt()	spllptX(__FILE__, __LINE__)
    436   1.1      eeh #define	splimp()	splimpX(__FILE__, __LINE__)
    437  1.18  thorpej #define	splvm()		splvmX(__FILE__, __LINE__)
    438   1.1      eeh #define	splclock()	splclockX(__FILE__, __LINE__)
    439   1.1      eeh #define	splfd()		splfdX(__FILE__, __LINE__)
    440   1.1      eeh #define	splzs()		splzsX(__FILE__, __LINE__)
    441   1.7      eeh #define	splserial()	splzerialX(__FILE__, __LINE__)
    442   1.1      eeh #define	splaudio()	splaudioX(__FILE__, __LINE__)
    443   1.1      eeh #define	splstatclock()	splstatclockX(__FILE__, __LINE__)
    444  1.16      eeh #define	splsched()	splschedX(__FILE__, __LINE__)
    445  1.16      eeh #define	spllock()	spllockX(__FILE__, __LINE__)
    446   1.1      eeh #define	splhigh()	splhighX(__FILE__, __LINE__)
    447   1.1      eeh #define splx(x)		splxX((x),__FILE__, __LINE__)
    448   1.1      eeh 
    449   1.1      eeh static __inline void splxX __P((int, const char*, int));
    450   1.1      eeh static __inline void splxX(newpil, file, line)
    451   1.1      eeh 	int newpil, line;
    452   1.1      eeh 	const char* file;
    453   1.1      eeh #else
    454   1.1      eeh static __inline void splx(newpil)
    455   1.1      eeh 	int newpil;
    456   1.1      eeh #endif
    457   1.1      eeh {
    458   1.1      eeh 	int pil;
    459   1.1      eeh 
    460   1.1      eeh 	__asm __volatile("rdpr %%pil,%0" : "=r" (pil));
    461   1.1      eeh 	SPLPRINT(("{%d->%d}", pil, newpil)); \
    462   1.1      eeh 	__asm __volatile("wrpr %%g0,%0,%%pil" : : "rn" (newpil));
    463   1.1      eeh }
    464   1.1      eeh #endif /* KERNEL && !_LOCORE */
    465   1.1      eeh 
    466   1.1      eeh #endif /* PSR_IMPL */
    467