xref: /netbsd-src/sys/arch/sparc64/include/cpu.h (revision 7f21db1c0118155e0dd40b75182e30c589d9f63e)
1 /*	$NetBSD: cpu.h,v 1.88 2010/02/02 04:28:55 mrg Exp $ */
2 
3 /*
4  * Copyright (c) 1992, 1993
5  *	The Regents of the University of California.  All rights reserved.
6  *
7  * This software was developed by the Computer Systems Engineering group
8  * at Lawrence Berkeley Laboratory under DARPA contract BG 91-66 and
9  * contributed to Berkeley.
10  *
11  * All advertising materials mentioning features or use of this software
12  * must display the following acknowledgement:
13  *	This product includes software developed by the University of
14  *	California, Lawrence Berkeley Laboratory.
15  *
16  * Redistribution and use in source and binary forms, with or without
17  * modification, are permitted provided that the following conditions
18  * are met:
19  * 1. Redistributions of source code must retain the above copyright
20  *    notice, this list of conditions and the following disclaimer.
21  * 2. Redistributions in binary form must reproduce the above copyright
22  *    notice, this list of conditions and the following disclaimer in the
23  *    documentation and/or other materials provided with the distribution.
24  * 3. Neither the name of the University nor the names of its contributors
25  *    may be used to endorse or promote products derived from this software
26  *    without specific prior written permission.
27  *
28  * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
29  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
30  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
31  * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
32  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
33  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
34  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
35  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
36  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
37  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
38  * SUCH DAMAGE.
39  *
40  *	@(#)cpu.h	8.4 (Berkeley) 1/5/94
41  */
42 
43 #ifndef _CPU_H_
44 #define _CPU_H_
45 
46 /*
47  * CTL_MACHDEP definitions.
48  */
49 #define	CPU_BOOTED_KERNEL	1	/* string: booted kernel name */
50 #define	CPU_BOOTED_DEVICE	2	/* string: device booted from */
51 #define	CPU_BOOT_ARGS		3	/* string: args booted with */
52 #define	CPU_ARCH		4	/* integer: cpu architecture version */
53 #define	CPU_MAXID		5	/* number of valid machdep ids */
54 
55 #ifdef _KERNEL
56 /*
57  * Exported definitions unique to SPARC cpu support.
58  */
59 
60 #if defined(_KERNEL_OPT)
61 #include "opt_multiprocessor.h"
62 #include "opt_lockdebug.h"
63 #endif
64 
65 #include <machine/psl.h>
66 #include <machine/reg.h>
67 #include <machine/pte.h>
68 #include <machine/intr.h>
69 #include <machine/cpuset.h>
70 #include <sparc64/sparc64/intreg.h>
71 
72 #include <sys/cpu_data.h>
73 #include <sys/evcnt.h>
74 /*
75  * The cpu_info structure is part of a 64KB structure mapped both the kernel
76  * pmap and a single locked TTE a CPUINFO_VA for that particular processor.
77  * Each processor's cpu_info is accessible at CPUINFO_VA only for that
78  * processor.  Other processors can access that through an additional mapping
79  * in the kernel pmap.
80  *
81  * The 64KB page contains:
82  *
83  * cpu_info
84  * interrupt stack (all remaining space)
85  * idle PCB
86  * idle stack (STACKSPACE - sizeof(PCB))
87  * 32KB TSB
88  */
89 
90 struct cpu_info {
91 
92 	/*
93 	 * SPARC cpu_info structures live at two VAs: one global
94 	 * VA (so each CPU can access any other CPU's cpu_info)
95 	 * and an alias VA CPUINFO_VA which is the same on each
96 	 * CPU and maps to that CPU's cpu_info.  Since the alias
97 	 * CPUINFO_VA is how we locate our cpu_info, we have to
98 	 * self-reference the global VA so that we can return it
99 	 * in the curcpu() macro.
100 	 */
101 	struct cpu_info * volatile ci_self;
102 
103 	/* Most important fields first */
104 	struct lwp		*ci_curlwp;
105 	struct pcb		*ci_cpcb;
106 	struct cpu_info		*ci_next;
107 
108 	struct lwp		*ci_fplwp;
109 
110 	void			*ci_eintstack;
111 
112 	int			ci_mtx_count;
113 	int			ci_mtx_oldspl;
114 
115 	/* Spinning up the CPU */
116 	void			(*ci_spinup)(void);
117 	paddr_t			ci_paddr;
118 
119 	int			ci_cpuid;
120 
121 	/* CPU PROM information. */
122 	u_int			ci_node;
123 
124 	/* %tick and cpu frequency information */
125 	u_long			ci_tick_increment;
126 	uint64_t		ci_cpu_clockrate[2];
127 
128 	/* Interrupts */
129 	struct intrhand		*ci_intrpending[16];
130 	struct intrhand		*ci_tick_ih;
131 
132 	/* Event counters */
133 	struct evcnt		ci_tick_evcnt;
134 #ifdef MULTIPROCESSOR
135 	struct evcnt		ci_ipi_evcnt[IPI_EVCNT_NUM];
136 #endif
137 
138 	int			ci_flags;
139 	int			ci_want_ast;
140 	int			ci_want_resched;
141 	int			ci_idepth;
142 
143 /*
144  * A context is simply a small number that differentiates multiple mappings
145  * of the same address.  Contexts on the spitfire are 13 bits, but could
146  * be as large as 17 bits.
147  *
148  * Each context is either free or attached to a pmap.
149  *
150  * The context table is an array of pointers to psegs.  Just dereference
151  * the right pointer and you get to the pmap segment tables.  These are
152  * physical addresses, of course.
153  *
154  */
155 	int			ci_pmap_next_ctx;
156 	int			ci_numctx;
157 	paddr_t 		*ci_ctxbusy;
158 	LIST_HEAD(, pmap) 	ci_pmap_ctxlist;
159 
160 	/*
161 	 * The TSBs are per cpu too (since MMU context differs between
162 	 * cpus). These are just caches for the TLBs.
163 	 */
164 	pte_t			*ci_tsb_dmmu;
165 	pte_t			*ci_tsb_immu;
166 
167 	struct cpu_data		ci_data;	/* MI per-cpu data */
168 
169 	volatile void		*ci_ddb_regs;	/* DDB regs */
170 };
171 
172 #define CPUF_PRIMARY	1
173 
174 /*
175  * CPU boot arguments. Used by secondary CPUs at the bootstrap time.
176  */
177 struct cpu_bootargs {
178 	u_int	cb_node;	/* PROM CPU node */
179 	volatile int cb_flags;
180 
181 	vaddr_t cb_ktext;
182 	paddr_t cb_ktextp;
183 	vaddr_t cb_ektext;
184 
185 	vaddr_t cb_kdata;
186 	paddr_t cb_kdatap;
187 	vaddr_t cb_ekdata;
188 
189 	paddr_t	cb_cpuinfo;
190 };
191 
192 extern struct cpu_bootargs *cpu_args;
193 
194 extern int sparc_ncpus;
195 extern struct cpu_info *cpus;
196 extern struct pool_cache *fpstate_cache;
197 
198 #define	curcpu()	(((struct cpu_info *)CPUINFO_VA)->ci_self)
199 #define	cpu_number()	(curcpu()->ci_index)
200 #define	CPU_IS_PRIMARY(ci)	((ci)->ci_flags & CPUF_PRIMARY)
201 
202 #define CPU_INFO_ITERATOR		int
203 #define CPU_INFO_FOREACH(cii, ci)	cii = 0, ci = cpus; ci != NULL; \
204 					ci = ci->ci_next
205 
206 #define curlwp		curcpu()->ci_curlwp
207 #define fplwp		curcpu()->ci_fplwp
208 #define curpcb		curcpu()->ci_cpcb
209 
210 #define want_ast	curcpu()->ci_want_ast
211 #define want_resched	curcpu()->ci_want_resched
212 
213 /*
214  * definitions of cpu-dependent requirements
215  * referenced in generic code
216  */
217 #define	cpu_wait(p)	/* nothing */
218 void cpu_proc_fork(struct proc *, struct proc *);
219 
220 /* run on the cpu itself */
221 void	cpu_pmap_init(struct cpu_info *);
222 /* run upfront to prepare the cpu_info */
223 void	cpu_pmap_prepare(struct cpu_info *, bool);
224 
225 #if defined(MULTIPROCESSOR)
226 extern vaddr_t cpu_spinup_trampoline;
227 
228 extern  char   *mp_tramp_code;
229 extern  u_long  mp_tramp_code_len;
230 extern  u_long  mp_tramp_tlb_slots;
231 extern  u_long  mp_tramp_func;
232 extern  u_long  mp_tramp_ci;
233 
234 void	cpu_hatch(void);
235 void	cpu_boot_secondary_processors(void);
236 
237 /*
238  * Call a function on other cpus:
239  *	multicast - send to everyone in the sparc64_cpuset_t
240  *	broadcast - send to to all cpus but ourselves
241  *	send - send to just this cpu
242  */
243 typedef void (* ipifunc_t)(void *);
244 
245 void	sparc64_multicast_ipi(sparc64_cpuset_t, ipifunc_t, uint64_t, uint64_t);
246 void	sparc64_broadcast_ipi(ipifunc_t, uint64_t, uint64_t);
247 void	sparc64_send_ipi(int, ipifunc_t, uint64_t, uint64_t);
248 #endif
249 
250 /*
251  * Arguments to hardclock, softclock and gatherstats encapsulate the
252  * previous machine state in an opaque clockframe.  The ipl is here
253  * as well for strayintr (see locore.s:interrupt and intr.c:strayintr).
254  * Note that CLKF_INTR is valid only if CLKF_USERMODE is false.
255  */
256 struct clockframe {
257 	struct trapframe64 t;
258 };
259 
260 #define	CLKF_USERMODE(framep)	(((framep)->t.tf_tstate & TSTATE_PRIV) == 0)
261 #define	CLKF_PC(framep)		((framep)->t.tf_pc)
262 /* Since some files in sys/kern do not know BIAS, I'm using 0x7ff here */
263 #define	CLKF_INTR(framep)						\
264 	((!CLKF_USERMODE(framep))&&					\
265 		(((framep)->t.tf_out[6] & 1 ) ?				\
266 			(((vaddr_t)(framep)->t.tf_out[6] <		\
267 				(vaddr_t)EINTSTACK-0x7ff) &&		\
268 			((vaddr_t)(framep)->t.tf_out[6] >		\
269 				(vaddr_t)INTSTACK-0x7ff)) :		\
270 			(((vaddr_t)(framep)->t.tf_out[6] <		\
271 				(vaddr_t)EINTSTACK) &&			\
272 			((vaddr_t)(framep)->t.tf_out[6] >		\
273 				(vaddr_t)INTSTACK))))
274 
275 /*
276  * Give a profiling tick to the current process when the user profiling
277  * buffer pages are invalid.  On the sparc, request an ast to send us
278  * through trap(), marking the proc as needing a profiling tick.
279  */
280 #define	cpu_need_proftick(l)	((l)->l_pflag |= LP_OWEUPC, want_ast = 1)
281 
282 /*
283  * Notify an LWP that it has a signal pending, process as soon as possible.
284  */
285 void cpu_signotify(struct lwp *);
286 
287 /*
288  * Interrupt handler chains.  Interrupt handlers should return 0 for
289  * ``not me'' or 1 (``I took care of it'').  intr_establish() inserts a
290  * handler into the list.  The handler is called with its (single)
291  * argument, or with a pointer to a clockframe if ih_arg is NULL.
292  */
293 struct intrhand {
294 	int			(*ih_fun)(void *);
295 	void			*ih_arg;
296 	/* if we have to take the biglock, we interpose a wrapper
297 	 * and need to save the original function and arg */
298 	int			(*ih_realfun)(void *);
299 	void			*ih_realarg;
300 	short			ih_number;	/* interrupt number */
301 						/* the H/W provides */
302 	char			ih_pil;		/* interrupt priority */
303 	struct intrhand		*ih_next;	/* global list */
304 	struct intrhand		*ih_pending;	/* interrupt queued */
305 	volatile uint64_t	*ih_map;	/* Interrupt map reg */
306 	volatile uint64_t	*ih_clr;	/* clear interrupt reg */
307 };
308 extern struct intrhand *intrhand[];
309 extern struct intrhand *intrlev[MAXINTNUM];
310 
311 void	intr_establish(int level, bool mpsafe, struct intrhand *);
312 void	*sparc_softintr_establish(int, int (*)(void *), void *);
313 void	sparc_softintr_schedule(void *);
314 void	sparc_softintr_disestablish(void *);
315 
316 /* disksubr.c */
317 struct dkbad;
318 int isbad(struct dkbad *bt, int, int, int);
319 /* machdep.c */
320 void *	reserve_dumppages(void *);
321 /* clock.c */
322 struct timeval;
323 int	tickintr(void *);	/* level 10/14 (tick) interrupt code */
324 int	clockintr(void *);	/* level 10 (clock) interrupt code */
325 int	statintr(void *);	/* level 14 (statclock) interrupt code */
326 int	schedintr(void *);	/* level 10 (schedclock) interrupt code */
327 void	tickintr_establish(int, int (*)(void *));
328 /* locore.s */
329 struct fpstate64;
330 void	savefpstate(struct fpstate64 *);
331 void	loadfpstate(struct fpstate64 *);
332 void	clearfpstate(void);
333 uint64_t	probeget(paddr_t, int, int);
334 int	probeset(paddr_t, int, int, uint64_t);
335 
336 #define	 write_all_windows() __asm volatile("flushw" : : )
337 #define	 write_user_windows() __asm volatile("flushw" : : )
338 
339 struct pcb;
340 void	snapshot(struct pcb *);
341 struct frame *getfp(void);
342 void	switchtoctx_us(int);
343 void	switchtoctx_usiii(int);
344 void	next_tick(long);
345 /* trap.c */
346 void	kill_user_windows(struct lwp *);
347 int	rwindow_save(struct lwp *);
348 /* cons.c */
349 int	cnrom(void);
350 /* zs.c */
351 void zsconsole(struct tty *, int, int, void (**)(struct tty *, int));
352 /* fb.c */
353 void	fb_unblank(void);
354 /* kgdb_stub.c */
355 #ifdef KGDB
356 void kgdb_attach(int (*)(void *), void (*)(void *, int), void *);
357 void kgdb_connect(int);
358 void kgdb_panic(void);
359 #endif
360 /* emul.c */
361 int	fixalign(struct lwp *, struct trapframe64 *);
362 int	emulinstr(vaddr_t, struct trapframe64 *);
363 
364 #endif /* _KERNEL */
365 #endif /* _CPU_H_ */
366