cpu.h revision 1.125 1 1.125 mrg /* $NetBSD: cpu.h,v 1.125 2025/09/20 06:54:52 mrg Exp $ */
2 1.1 ws
3 1.1 ws /*
4 1.5 ws * Copyright (C) 1999 Wolfgang Solfrank.
5 1.5 ws * Copyright (C) 1999 TooLs GmbH.
6 1.9 matt * Copyright (C) 1995-1997 Wolfgang Solfrank.
7 1.9 matt * Copyright (C) 1995-1997 TooLs GmbH.
8 1.1 ws * All rights reserved.
9 1.1 ws *
10 1.1 ws * Redistribution and use in source and binary forms, with or without
11 1.1 ws * modification, are permitted provided that the following conditions
12 1.1 ws * are met:
13 1.1 ws * 1. Redistributions of source code must retain the above copyright
14 1.1 ws * notice, this list of conditions and the following disclaimer.
15 1.1 ws * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 ws * notice, this list of conditions and the following disclaimer in the
17 1.1 ws * documentation and/or other materials provided with the distribution.
18 1.1 ws * 3. All advertising materials mentioning features or use of this software
19 1.1 ws * must display the following acknowledgement:
20 1.1 ws * This product includes software developed by TooLs GmbH.
21 1.1 ws * 4. The name of TooLs GmbH may not be used to endorse or promote products
22 1.1 ws * derived from this software without specific prior written permission.
23 1.1 ws *
24 1.1 ws * THIS SOFTWARE IS PROVIDED BY TOOLS GMBH ``AS IS'' AND ANY EXPRESS OR
25 1.1 ws * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 1.1 ws * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 1.1 ws * IN NO EVENT SHALL TOOLS GMBH BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
28 1.1 ws * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
29 1.1 ws * PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
30 1.1 ws * OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
31 1.1 ws * WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
32 1.1 ws * OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
33 1.1 ws * ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 1.1 ws */
35 1.103 chs
36 1.5 ws #ifndef _POWERPC_CPU_H_
37 1.5 ws #define _POWERPC_CPU_H_
38 1.1 ws
39 1.27 matt struct cache_info {
40 1.27 matt int dcache_size;
41 1.27 matt int dcache_line_size;
42 1.27 matt int icache_size;
43 1.27 matt int icache_line_size;
44 1.27 matt };
45 1.27 matt
46 1.73 phx #if defined(_KERNEL) || defined(_KMEMUSER)
47 1.9 matt #if defined(_KERNEL_OPT)
48 1.119 ryo #include "opt_gprof.h"
49 1.83 matt #include "opt_modular.h"
50 1.9 matt #include "opt_multiprocessor.h"
51 1.16 matt #include "opt_ppcarch.h"
52 1.121 rin #include "opt_ppcopts.h"
53 1.9 matt #endif
54 1.9 matt
55 1.73 phx #ifdef _KERNEL
56 1.102 nonaka #include <sys/intr.h>
57 1.72 uebayasi #include <sys/device_if.h>
58 1.72 uebayasi #include <sys/evcnt.h>
59 1.103 chs #include <sys/param.h>
60 1.103 chs #include <sys/kernel.h>
61 1.73 phx #endif
62 1.9 matt
63 1.42 yamt #include <sys/cpu_data.h>
64 1.14 eeh
65 1.116 rin #ifdef _KERNEL
66 1.116 rin #define CI_SAVETEMP (0*CPUSAVE_LEN)
67 1.116 rin #define CI_SAVEDDB (1*CPUSAVE_LEN)
68 1.116 rin #define CI_SAVEIPKDB (2*CPUSAVE_LEN) /* obsolete */
69 1.116 rin #define CI_SAVEMMU (3*CPUSAVE_LEN)
70 1.116 rin #define CI_SAVEMAX (4*CPUSAVE_LEN)
71 1.116 rin #define CPUSAVE_LEN 8
72 1.116 rin #if defined(PPC_BOOKE) && !defined(MODULAR) && !defined(_MODULE)
73 1.116 rin #define CPUSAVE_SIZE 128
74 1.116 rin #else
75 1.116 rin #define CPUSAVE_SIZE (CI_SAVEMAX*CPUSAVE_LEN)
76 1.116 rin CTASSERT(CPUSAVE_SIZE >= 128);
77 1.116 rin #endif
78 1.116 rin #define CPUSAVE_R28 0 /* where r28 gets saved */
79 1.116 rin #define CPUSAVE_R29 1 /* where r29 gets saved */
80 1.116 rin #define CPUSAVE_R30 2 /* where r30 gets saved */
81 1.116 rin #define CPUSAVE_R31 3 /* where r31 gets saved */
82 1.116 rin #define CPUSAVE_DEAR 4 /* where IBM4XX SPR_DEAR gets saved */
83 1.116 rin #define CPUSAVE_DAR 4 /* where OEA SPR_DAR gets saved */
84 1.116 rin #define CPUSAVE_ESR 5 /* where IBM4XX SPR_ESR gets saved */
85 1.116 rin #define CPUSAVE_DSISR 5 /* where OEA SPR_DSISR gets saved */
86 1.116 rin #define CPUSAVE_SRR0 6 /* where SRR0 gets saved */
87 1.116 rin #define CPUSAVE_SRR1 7 /* where SRR1 gets saved */
88 1.116 rin #endif /* _KERNEL */
89 1.116 rin
90 1.9 matt struct cpu_info {
91 1.42 yamt struct cpu_data ci_data; /* MI per-cpu data */
92 1.73 phx #ifdef _KERNEL
93 1.74 matt device_t ci_dev; /* device of corresponding cpu */
94 1.74 matt struct cpu_softc *ci_softc; /* private cpu info */
95 1.23 thorpej struct lwp *ci_curlwp; /* current owner of the processor */
96 1.110 ad struct lwp *ci_onproc; /* current user LWP / kthread */
97 1.9 matt struct pcb *ci_curpcb;
98 1.38 matt struct pmap *ci_curpm;
99 1.117 thorpej #if defined(PPC_OEA) || defined(PPC_OEA601) || defined(PPC_OEA64) || \
100 1.117 thorpej defined(PPC_OEA64_BRIDGE) || defined(MODULAR) || defined(_MODULE)
101 1.117 thorpej void *ci_battable; /* BAT table in use by this CPU */
102 1.117 thorpej #endif
103 1.80 matt struct lwp *ci_softlwps[SOFTINT_COUNT];
104 1.77 matt int ci_cpuid; /* from SPR_PIR */
105 1.9 matt
106 1.57 rjs int ci_want_resched;
107 1.74 matt volatile uint64_t ci_lastintr;
108 1.28 matt volatile u_long ci_lasttb;
109 1.28 matt volatile int ci_tickspending;
110 1.50 freza volatile int ci_cpl;
111 1.50 freza volatile int ci_iactive;
112 1.60 ad volatile int ci_idepth;
113 1.84 matt union {
114 1.84 matt #if !defined(PPC_BOOKE) && !defined(_MODULE)
115 1.84 matt volatile imask_t un1_ipending;
116 1.84 matt #define ci_ipending ci_un1.un1_ipending
117 1.74 matt #endif
118 1.84 matt uint64_t un1_pad64;
119 1.84 matt } ci_un1;
120 1.77 matt volatile uint32_t ci_pending_ipis;
121 1.53 ad int ci_mtx_oldspl;
122 1.53 ad int ci_mtx_count;
123 1.118 rin #if defined(PPC_IBM4XX) || \
124 1.118 rin ((defined(MODULAR) || defined(_MODULE)) && !defined(_LP64))
125 1.9 matt char *ci_intstk;
126 1.68 matt #endif
127 1.116 rin
128 1.84 matt register_t ci_savearea[CPUSAVE_SIZE];
129 1.118 rin #if defined(PPC_BOOKE) || \
130 1.118 rin ((defined(MODULAR) || defined(_MODULE)) && !defined(_LP64))
131 1.86 matt uint32_t ci_pmap_asid_cur;
132 1.92 matt union pmap_segtab *ci_pmap_segtabs[2];
133 1.74 matt #define ci_pmap_kern_segtab ci_pmap_segtabs[0]
134 1.74 matt #define ci_pmap_user_segtab ci_pmap_segtabs[1]
135 1.74 matt struct pmap_tlb_info *ci_tlb_info;
136 1.118 rin #endif /* PPC_BOOKE || ((MODULAR || _MODULE) && !_LP64) */
137 1.124 skrll struct cache_info ci_ci;
138 1.40 matt void *ci_sysmon_cookie;
139 1.43 matt void (*ci_idlespin)(void);
140 1.44 briggs uint32_t ci_khz;
141 1.25 matt struct evcnt ci_ev_clock; /* clock intrs */
142 1.50 freza struct evcnt ci_ev_statclock; /* stat clock */
143 1.9 matt struct evcnt ci_ev_traps; /* calls to trap() */
144 1.9 matt struct evcnt ci_ev_kdsi; /* kernel DSI traps */
145 1.9 matt struct evcnt ci_ev_udsi; /* user DSI traps */
146 1.9 matt struct evcnt ci_ev_udsi_fatal; /* user DSI trap failures */
147 1.33 matt struct evcnt ci_ev_kisi; /* kernel ISI traps */
148 1.9 matt struct evcnt ci_ev_isi; /* user ISI traps */
149 1.9 matt struct evcnt ci_ev_isi_fatal; /* user ISI trap failures */
150 1.9 matt struct evcnt ci_ev_pgm; /* user PGM traps */
151 1.75 matt struct evcnt ci_ev_debug; /* user debug traps */
152 1.9 matt struct evcnt ci_ev_fpu; /* FPU traps */
153 1.9 matt struct evcnt ci_ev_fpusw; /* FPU context switch */
154 1.9 matt struct evcnt ci_ev_ali; /* Alignment traps */
155 1.9 matt struct evcnt ci_ev_ali_fatal; /* Alignment fatal trap */
156 1.9 matt struct evcnt ci_ev_scalls; /* system call traps */
157 1.9 matt struct evcnt ci_ev_vec; /* Altivec traps */
158 1.9 matt struct evcnt ci_ev_vecsw; /* Altivec context switches */
159 1.16 matt struct evcnt ci_ev_umchk; /* user MCHK events */
160 1.59 garbled struct evcnt ci_ev_ipi; /* IPIs received */
161 1.74 matt struct evcnt ci_ev_tlbmiss_soft; /* tlb miss (no trap) */
162 1.74 matt struct evcnt ci_ev_dtlbmiss_hard; /* data tlb miss (trap) */
163 1.74 matt struct evcnt ci_ev_itlbmiss_hard; /* instruction tlb miss (trap) */
164 1.119 ryo #if defined(GPROF) && defined(MULTIPROCESSOR)
165 1.119 ryo struct gmonparam *ci_gmon; /* MI per-cpu GPROF */
166 1.119 ryo #endif
167 1.73 phx #endif /* _KERNEL */
168 1.9 matt };
169 1.73 phx #endif /* _KERNEL || _KMEMUSER */
170 1.73 phx
171 1.73 phx #ifdef _KERNEL
172 1.9 matt
173 1.83 matt #if defined(MULTIPROCESSOR) && !defined(_MODULE)
174 1.59 garbled struct cpu_hatch_data {
175 1.87 matt int hatch_running;
176 1.87 matt device_t hatch_self;
177 1.87 matt struct cpu_info *hatch_ci;
178 1.87 matt uint32_t hatch_tbu;
179 1.87 matt uint32_t hatch_tbl;
180 1.104 macallan #if defined(PPC_OEA64_BRIDGE) || defined (_ARCH_PPC64)
181 1.104 macallan uint64_t hatch_hid0;
182 1.106 macallan uint64_t hatch_hid1;
183 1.105 macallan uint64_t hatch_hid4;
184 1.105 macallan uint64_t hatch_hid5;
185 1.104 macallan #else
186 1.87 matt uint32_t hatch_hid0;
187 1.104 macallan #endif
188 1.87 matt uint32_t hatch_pir;
189 1.87 matt #if defined(PPC_OEA) || defined(PPC_OEA64_BRIDGE)
190 1.87 matt uintptr_t hatch_asr;
191 1.87 matt uintptr_t hatch_sdr1;
192 1.87 matt uint32_t hatch_sr[16];
193 1.94 kiyohara uintptr_t hatch_ibatu[8], hatch_ibatl[8];
194 1.94 kiyohara uintptr_t hatch_dbatu[8], hatch_dbatl[8];
195 1.87 matt #endif
196 1.87 matt #if defined(PPC_BOOKE)
197 1.87 matt vaddr_t hatch_sp;
198 1.95 matt u_int hatch_tlbidx;
199 1.87 matt #endif
200 1.87 matt };
201 1.87 matt
202 1.87 matt struct cpuset_info {
203 1.97 matt kcpuset_t *cpus_running;
204 1.97 matt kcpuset_t *cpus_hatched;
205 1.97 matt kcpuset_t *cpus_paused;
206 1.97 matt kcpuset_t *cpus_resumed;
207 1.97 matt kcpuset_t *cpus_halted;
208 1.59 garbled };
209 1.87 matt
210 1.97 matt extern struct cpuset_info cpuset_info;
211 1.83 matt #endif /* MULTIPROCESSOR && !_MODULE */
212 1.59 garbled
213 1.83 matt #if defined(MULTIPROCESSOR) || defined(_MODULE)
214 1.83 matt #define cpu_number() (curcpu()->ci_index + 0)
215 1.9 matt
216 1.9 matt #define CPU_IS_PRIMARY(ci) ((ci)->ci_cpuid == 0)
217 1.83 matt #define CPU_INFO_ITERATOR int
218 1.83 matt #define CPU_INFO_FOREACH(cii, ci) \
219 1.103 chs cii = 0, ci = &cpu_info[0]; cii < (ncpu ? ncpu : 1); cii++, ci++
220 1.18 chs
221 1.9 matt #else
222 1.9 matt #define cpu_number() 0
223 1.9 matt
224 1.83 matt #define CPU_IS_PRIMARY(ci) true
225 1.83 matt #define CPU_INFO_ITERATOR int
226 1.83 matt #define CPU_INFO_FOREACH(cii, ci) \
227 1.98 nisimura (void)cii, ci = curcpu(); ci != NULL; ci = NULL
228 1.18 chs
229 1.83 matt #endif /* MULTIPROCESSOR || _MODULE */
230 1.9 matt
231 1.25 matt extern struct cpu_info cpu_info[];
232 1.25 matt
233 1.77 matt static __inline struct cpu_info * curcpu(void) __pure;
234 1.120 ryo static __inline __always_inline struct cpu_info *
235 1.25 matt curcpu(void)
236 1.25 matt {
237 1.25 matt struct cpu_info *ci;
238 1.25 matt
239 1.78 matt __asm volatile ("mfsprg0 %0" : "=r"(ci));
240 1.25 matt return ci;
241 1.25 matt }
242 1.25 matt
243 1.77 matt register struct lwp *powerpc_curlwp __asm("r13");
244 1.77 matt #define curlwp powerpc_curlwp
245 1.25 matt #define curpcb (curcpu()->ci_curpcb)
246 1.38 matt #define curpm (curcpu()->ci_curpm)
247 1.25 matt
248 1.47 perry static __inline register_t
249 1.18 chs mfmsr(void)
250 1.18 chs {
251 1.20 matt register_t msr;
252 1.18 chs
253 1.46 perry __asm volatile ("mfmsr %0" : "=r"(msr));
254 1.18 chs return msr;
255 1.18 chs }
256 1.18 chs
257 1.47 perry static __inline void
258 1.20 matt mtmsr(register_t msr)
259 1.18 chs {
260 1.74 matt //KASSERT(msr & PSL_CE);
261 1.74 matt //KASSERT(msr & PSL_DE);
262 1.46 perry __asm volatile ("mtmsr %0" : : "r"(msr));
263 1.19 chs }
264 1.19 chs
265 1.84 matt #if !defined(_MODULE)
266 1.47 perry static __inline uint32_t
267 1.19 chs mftbl(void)
268 1.19 chs {
269 1.19 chs uint32_t tbl;
270 1.19 chs
271 1.46 perry __asm volatile (
272 1.29 hannken #ifdef PPC_IBM403
273 1.74 matt " mftblo %[tbl]" "\n"
274 1.74 matt #elif defined(PPC_BOOKE)
275 1.74 matt " mfspr %[tbl],268" "\n"
276 1.29 hannken #else
277 1.74 matt " mftbl %[tbl]" "\n"
278 1.29 hannken #endif
279 1.74 matt : [tbl] "=r" (tbl));
280 1.29 hannken
281 1.19 chs return tbl;
282 1.19 chs }
283 1.19 chs
284 1.47 perry static __inline uint64_t
285 1.19 chs mftb(void)
286 1.19 chs {
287 1.19 chs uint64_t tb;
288 1.32 matt
289 1.96 macallan #ifdef _ARCH_PPC64
290 1.46 perry __asm volatile ("mftb %0" : "=r"(tb));
291 1.32 matt #else
292 1.19 chs int tmp;
293 1.19 chs
294 1.46 perry __asm volatile (
295 1.29 hannken #ifdef PPC_IBM403
296 1.74 matt "1: mftbhi %[tb]" "\n"
297 1.74 matt " mftblo %L[tb]" "\n"
298 1.74 matt " mftbhi %[tmp]" "\n"
299 1.74 matt #elif defined(PPC_BOOKE)
300 1.74 matt "1: mfspr %[tb],269" "\n"
301 1.74 matt " mfspr %L[tb],268" "\n"
302 1.74 matt " mfspr %[tmp],269" "\n"
303 1.29 hannken #else
304 1.74 matt "1: mftbu %[tb]" "\n"
305 1.74 matt " mftb %L[tb]" "\n"
306 1.74 matt " mftbu %[tmp]" "\n"
307 1.74 matt #endif
308 1.74 matt " cmplw %[tb],%[tmp]" "\n"
309 1.74 matt " bne- 1b" "\n"
310 1.74 matt : [tb] "=r" (tb), [tmp] "=r"(tmp)
311 1.74 matt :: "cr0");
312 1.32 matt #endif
313 1.29 hannken
314 1.19 chs return tb;
315 1.24 kleink }
316 1.24 kleink
317 1.47 perry static __inline uint32_t
318 1.24 kleink mfrtcl(void)
319 1.24 kleink {
320 1.24 kleink uint32_t rtcl;
321 1.24 kleink
322 1.46 perry __asm volatile ("mfrtcl %0" : "=r"(rtcl));
323 1.24 kleink return rtcl;
324 1.24 kleink }
325 1.24 kleink
326 1.47 perry static __inline void
327 1.24 kleink mfrtc(uint32_t *rtcp)
328 1.24 kleink {
329 1.24 kleink uint32_t tmp;
330 1.24 kleink
331 1.46 perry __asm volatile (
332 1.74 matt "1: mfrtcu %[rtcu]" "\n"
333 1.74 matt " mfrtcl %[rtcl]" "\n"
334 1.74 matt " mfrtcu %[tmp]" "\n"
335 1.74 matt " cmplw %[rtcu],%[tmp]" "\n"
336 1.74 matt " bne- 1b"
337 1.74 matt : [rtcu] "=r"(rtcp[0]), [rtcl] "=r"(rtcp[1]), [tmp] "=r"(tmp)
338 1.74 matt :: "cr0");
339 1.19 chs }
340 1.99 macallan
341 1.99 macallan static __inline uint64_t
342 1.99 macallan rtc_nanosecs(void)
343 1.99 macallan {
344 1.124 skrll /*
345 1.99 macallan * 601 RTC/DEC registers share clock of 7.8125 MHz, 128 ns per tick.
346 1.99 macallan * DEC has max of 25 bits, FFFFFF => 2.14748352 seconds.
347 1.99 macallan * RTCU is seconds, 32 bits.
348 1.99 macallan * RTCL is nano-seconds, 23 bit counter from 0 - 999,999,872 (999,999,999 - 128 ns)
349 1.99 macallan */
350 1.99 macallan uint64_t cycles;
351 1.99 macallan uint32_t tmp[2];
352 1.99 macallan
353 1.99 macallan mfrtc(tmp);
354 1.99 macallan
355 1.99 macallan cycles = tmp[0] * 1000000000;
356 1.99 macallan cycles += (tmp[1] >> 7);
357 1.99 macallan
358 1.99 macallan return cycles;
359 1.99 macallan }
360 1.84 matt #endif /* !_MODULE */
361 1.19 chs
362 1.47 perry static __inline uint32_t
363 1.19 chs mfpvr(void)
364 1.19 chs {
365 1.19 chs uint32_t pvr;
366 1.19 chs
367 1.46 perry __asm volatile ("mfpvr %0" : "=r"(pvr));
368 1.19 chs return (pvr);
369 1.18 chs }
370 1.18 chs
371 1.84 matt #ifdef _MODULE
372 1.84 matt extern const char __CPU_MAXNUM;
373 1.84 matt /*
374 1.84 matt * Make with 0xffff to force a R_PPC_ADDR16_LO without the
375 1.84 matt * corresponding R_PPC_ADDR16_HI relocation.
376 1.84 matt */
377 1.84 matt #define CPU_MAXNUM (((uintptr_t)&__CPU_MAXNUM)&0xffff)
378 1.84 matt #endif /* _MODULE */
379 1.84 matt
380 1.83 matt #if !defined(_MODULE)
381 1.93 matt extern char *booted_kernel;
382 1.9 matt extern int powersave;
383 1.9 matt extern int cpu_timebase;
384 1.9 matt extern int cpu_printfataltraps;
385 1.16 matt
386 1.83 matt struct cpu_info *
387 1.83 matt cpu_attach_common(device_t, int);
388 1.83 matt void cpu_setup(device_t, struct cpu_info *);
389 1.83 matt void cpu_identify(char *, size_t);
390 1.83 matt void cpu_probe_cache(void);
391 1.85 matt
392 1.83 matt void dcache_wb_page(vaddr_t);
393 1.83 matt void dcache_wbinv_page(vaddr_t);
394 1.83 matt void dcache_inv_page(vaddr_t);
395 1.83 matt void dcache_zero_page(vaddr_t);
396 1.83 matt void icache_inv_page(vaddr_t);
397 1.83 matt void dcache_wb(vaddr_t, vsize_t);
398 1.83 matt void dcache_wbinv(vaddr_t, vsize_t);
399 1.83 matt void dcache_inv(vaddr_t, vsize_t);
400 1.83 matt void icache_inv(vaddr_t, vsize_t);
401 1.85 matt
402 1.88 matt void * mapiodev(paddr_t, psize_t, bool);
403 1.83 matt void unmapiodev(vaddr_t, vsize_t);
404 1.9 matt
405 1.125 mrg struct trapframe;
406 1.115 rin int emulate_mxmsr(struct lwp *, struct trapframe *, uint32_t);
407 1.115 rin
408 1.59 garbled #ifdef MULTIPROCESSOR
409 1.83 matt int md_setup_trampoline(volatile struct cpu_hatch_data *,
410 1.83 matt struct cpu_info *);
411 1.83 matt void md_presync_timebase(volatile struct cpu_hatch_data *);
412 1.83 matt void md_start_timebase(volatile struct cpu_hatch_data *);
413 1.83 matt void md_sync_timebase(volatile struct cpu_hatch_data *);
414 1.83 matt void md_setup_interrupts(void);
415 1.83 matt int cpu_spinup(device_t, struct cpu_info *);
416 1.83 matt register_t
417 1.83 matt cpu_hatch(void);
418 1.83 matt void cpu_spinup_trampoline(void);
419 1.83 matt void cpu_boot_secondary_processors(void);
420 1.101 nonaka void cpu_halt(void);
421 1.101 nonaka void cpu_halt_others(void);
422 1.101 nonaka void cpu_pause(struct trapframe *);
423 1.101 nonaka void cpu_pause_others(void);
424 1.101 nonaka void cpu_resume(cpuid_t);
425 1.101 nonaka void cpu_resume_others(void);
426 1.101 nonaka int cpu_is_paused(int);
427 1.101 nonaka void cpu_debug_dump(void);
428 1.83 matt #endif /* MULTIPROCESSOR */
429 1.83 matt #endif /* !_MODULE */
430 1.83 matt
431 1.83 matt #define cpu_proc_fork(p1, p2)
432 1.59 garbled
433 1.111 macallan #ifndef __HIDE_DELAY
434 1.9 matt #define DELAY(n) delay(n)
435 1.83 matt void delay(unsigned int);
436 1.111 macallan #endif /* __HIDE_DELAY */
437 1.83 matt
438 1.83 matt #define CLKF_USERMODE(cf) cpu_clkf_usermode(cf)
439 1.83 matt #define CLKF_PC(cf) cpu_clkf_pc(cf)
440 1.83 matt #define CLKF_INTR(cf) cpu_clkf_intr(cf)
441 1.83 matt
442 1.83 matt bool cpu_clkf_usermode(const struct clockframe *);
443 1.83 matt vaddr_t cpu_clkf_pc(const struct clockframe *);
444 1.83 matt bool cpu_clkf_intr(const struct clockframe *);
445 1.83 matt
446 1.83 matt #define LWP_PC(l) cpu_lwp_pc(l)
447 1.83 matt
448 1.83 matt vaddr_t cpu_lwp_pc(struct lwp *);
449 1.9 matt
450 1.86 matt void cpu_ast(struct lwp *, struct cpu_info *);
451 1.79 matt void * cpu_uarea_alloc(bool);
452 1.79 matt bool cpu_uarea_free(void *);
453 1.77 matt void cpu_signotify(struct lwp *);
454 1.77 matt void cpu_need_proftick(struct lwp *);
455 1.9 matt
456 1.81 matt void cpu_fixup_stubs(void);
457 1.81 matt
458 1.83 matt #if !defined(PPC_IBM4XX) && !defined(PPC_BOOKE) && !defined(_MODULE)
459 1.85 matt int cpu_get_dfs(void);
460 1.85 matt void cpu_set_dfs(int);
461 1.85 matt
462 1.83 matt void oea_init(void (*)(void));
463 1.83 matt void oea_startup(const char *);
464 1.83 matt void oea_dumpsys(void);
465 1.83 matt void oea_install_extint(void (*)(void));
466 1.89 kiyohara paddr_t kvtop(void *);
467 1.16 matt
468 1.16 matt extern paddr_t msgbuf_paddr;
469 1.16 matt extern int cpu_altivec;
470 1.16 matt #endif
471 1.16 matt
472 1.121 rin #ifdef PPC_NO_UNALIGNED
473 1.121 rin bool fix_unaligned(struct trapframe *, ksiginfo_t *);
474 1.121 rin #endif
475 1.121 rin
476 1.9 matt #endif /* _KERNEL */
477 1.9 matt
478 1.61 garbled /* XXX The below breaks unified pmap on ppc32 */
479 1.61 garbled
480 1.83 matt #if !defined(CACHELINESIZE) && !defined(_MODULE) \
481 1.83 matt && (defined(_KERNEL) || defined(_STANDALONE))
482 1.83 matt #if defined(PPC_IBM403)
483 1.62 garbled #define CACHELINESIZE 16
484 1.62 garbled #define MAXCACHELINESIZE 16
485 1.83 matt #elif defined (PPC_OEA64_BRIDGE)
486 1.62 garbled #define CACHELINESIZE 128
487 1.62 garbled #define MAXCACHELINESIZE 128
488 1.51 sanjayl #else
489 1.62 garbled #define CACHELINESIZE 32
490 1.62 garbled #define MAXCACHELINESIZE 32
491 1.51 sanjayl #endif /* PPC_OEA64_BRIDGE */
492 1.29 hannken #endif
493 1.10 matt
494 1.83 matt void __syncicache(void *, size_t);
495 1.14 eeh
496 1.5 ws /*
497 1.5 ws * CTL_MACHDEP definitions.
498 1.5 ws */
499 1.9 matt #define CPU_CACHELINE 1
500 1.9 matt #define CPU_TIMEBASE 2
501 1.9 matt #define CPU_CPUTEMP 3
502 1.9 matt #define CPU_PRINTFATALTRAPS 4
503 1.14 eeh #define CPU_CACHEINFO 5
504 1.16 matt #define CPU_ALTIVEC 6
505 1.16 matt #define CPU_MODEL 7
506 1.58 nisimura #define CPU_POWERSAVE 8 /* int: use CPU powersave mode */
507 1.58 nisimura #define CPU_BOOTED_DEVICE 9 /* string: device we booted from */
508 1.58 nisimura #define CPU_BOOTED_KERNEL 10 /* string: kernel we booted */
509 1.90 matt #define CPU_EXECPROT 11 /* bool: PROT_EXEC works */
510 1.114 rin #define CPU_FPU 12
511 1.122 rin #define CPU_NO_UNALIGNED 13 /* No HW support for unaligned access */
512 1.1 ws
513 1.5 ws #endif /* _POWERPC_CPU_H_ */
514