kern_cpu.c revision 1.60 1 1.60 drochner /* $NetBSD: kern_cpu.c,v 1.60 2013/08/22 19:50:55 drochner Exp $ */
2 1.3 ad
3 1.3 ad /*-
4 1.53 cegger * Copyright (c) 2007, 2008, 2009, 2010, 2012 The NetBSD Foundation, Inc.
5 1.3 ad * All rights reserved.
6 1.3 ad *
7 1.3 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.3 ad * by Andrew Doran.
9 1.3 ad *
10 1.3 ad * Redistribution and use in source and binary forms, with or without
11 1.3 ad * modification, are permitted provided that the following conditions
12 1.3 ad * are met:
13 1.3 ad * 1. Redistributions of source code must retain the above copyright
14 1.3 ad * notice, this list of conditions and the following disclaimer.
15 1.3 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.3 ad * notice, this list of conditions and the following disclaimer in the
17 1.3 ad * documentation and/or other materials provided with the distribution.
18 1.3 ad *
19 1.3 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.3 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.3 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.3 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.3 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.3 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.3 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.3 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.3 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.3 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.3 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.3 ad */
31 1.2 yamt
32 1.2 yamt /*-
33 1.2 yamt * Copyright (c)2007 YAMAMOTO Takashi,
34 1.2 yamt * All rights reserved.
35 1.2 yamt *
36 1.2 yamt * Redistribution and use in source and binary forms, with or without
37 1.2 yamt * modification, are permitted provided that the following conditions
38 1.2 yamt * are met:
39 1.2 yamt * 1. Redistributions of source code must retain the above copyright
40 1.2 yamt * notice, this list of conditions and the following disclaimer.
41 1.2 yamt * 2. Redistributions in binary form must reproduce the above copyright
42 1.2 yamt * notice, this list of conditions and the following disclaimer in the
43 1.2 yamt * documentation and/or other materials provided with the distribution.
44 1.2 yamt *
45 1.2 yamt * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
46 1.2 yamt * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
47 1.2 yamt * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
48 1.2 yamt * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
49 1.2 yamt * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
50 1.2 yamt * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
51 1.2 yamt * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
52 1.2 yamt * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
53 1.2 yamt * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
54 1.2 yamt * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
55 1.2 yamt * SUCH DAMAGE.
56 1.2 yamt */
57 1.2 yamt
58 1.2 yamt #include <sys/cdefs.h>
59 1.60 drochner __KERNEL_RCSID(0, "$NetBSD: kern_cpu.c,v 1.60 2013/08/22 19:50:55 drochner Exp $");
60 1.53 cegger
61 1.53 cegger #include "opt_cpu_ucode.h"
62 1.57 drochner #include "opt_compat_netbsd.h"
63 1.2 yamt
64 1.2 yamt #include <sys/param.h>
65 1.2 yamt #include <sys/systm.h>
66 1.2 yamt #include <sys/idle.h>
67 1.2 yamt #include <sys/sched.h>
68 1.8 ad #include <sys/intr.h>
69 1.3 ad #include <sys/conf.h>
70 1.3 ad #include <sys/cpu.h>
71 1.3 ad #include <sys/cpuio.h>
72 1.3 ad #include <sys/proc.h>
73 1.17 yamt #include <sys/percpu.h>
74 1.3 ad #include <sys/kernel.h>
75 1.3 ad #include <sys/kauth.h>
76 1.7 ad #include <sys/xcall.h>
77 1.7 ad #include <sys/pool.h>
78 1.21 ad #include <sys/kmem.h>
79 1.22 ad #include <sys/select.h>
80 1.23 ad #include <sys/namei.h>
81 1.27 ad #include <sys/callout.h>
82 1.60 drochner #include <sys/pcu.h>
83 1.3 ad
84 1.6 ad #include <uvm/uvm_extern.h>
85 1.6 ad
86 1.45 matt /*
87 1.52 jym * If the port has stated that cpu_data is the first thing in cpu_info,
88 1.52 jym * verify that the claim is true. This will prevent them from getting out
89 1.45 matt * of sync.
90 1.45 matt */
91 1.45 matt #ifdef __HAVE_CPU_DATA_FIRST
92 1.45 matt CTASSERT(offsetof(struct cpu_info, ci_data) == 0);
93 1.45 matt #else
94 1.45 matt CTASSERT(offsetof(struct cpu_info, ci_data) != 0);
95 1.45 matt #endif
96 1.45 matt
97 1.3 ad void cpuctlattach(int);
98 1.3 ad
99 1.11 rmind static void cpu_xc_online(struct cpu_info *);
100 1.11 rmind static void cpu_xc_offline(struct cpu_info *);
101 1.7 ad
102 1.3 ad dev_type_ioctl(cpuctl_ioctl);
103 1.3 ad
104 1.3 ad const struct cdevsw cpuctl_cdevsw = {
105 1.3 ad nullopen, nullclose, nullread, nullwrite, cpuctl_ioctl,
106 1.3 ad nullstop, notty, nopoll, nommap, nokqfilter,
107 1.3 ad D_OTHER | D_MPSAFE
108 1.3 ad };
109 1.11 rmind
110 1.46 rmind kmutex_t cpu_lock __cacheline_aligned;
111 1.46 rmind int ncpu __read_mostly;
112 1.46 rmind int ncpuonline __read_mostly;
113 1.46 rmind bool mp_online __read_mostly;
114 1.48 rmind
115 1.55 rmind /* Note: set on mi_cpu_attach() and idle_loop(). */
116 1.55 rmind kcpuset_t * kcpuset_attached __read_mostly = NULL;
117 1.55 rmind kcpuset_t * kcpuset_running __read_mostly = NULL;
118 1.48 rmind
119 1.46 rmind struct cpuqueue cpu_queue __cacheline_aligned
120 1.46 rmind = CIRCLEQ_HEAD_INITIALIZER(cpu_queue);
121 1.2 yamt
122 1.46 rmind static struct cpu_info **cpu_infos __read_mostly;
123 1.16 yamt
124 1.55 rmind /*
125 1.55 rmind * mi_cpu_init: early initialisation of MI CPU related structures.
126 1.55 rmind *
127 1.55 rmind * Note: may not block and memory allocator is not yet available.
128 1.55 rmind */
129 1.55 rmind void
130 1.55 rmind mi_cpu_init(void)
131 1.55 rmind {
132 1.55 rmind
133 1.55 rmind mutex_init(&cpu_lock, MUTEX_DEFAULT, IPL_NONE);
134 1.55 rmind
135 1.55 rmind kcpuset_create(&kcpuset_attached, true);
136 1.55 rmind kcpuset_create(&kcpuset_running, true);
137 1.55 rmind kcpuset_set(kcpuset_running, 0);
138 1.55 rmind }
139 1.55 rmind
140 1.2 yamt int
141 1.2 yamt mi_cpu_attach(struct cpu_info *ci)
142 1.2 yamt {
143 1.2 yamt int error;
144 1.2 yamt
145 1.44 ad KASSERT(maxcpus > 0);
146 1.44 ad
147 1.5 rmind ci->ci_index = ncpu;
148 1.55 rmind kcpuset_set(kcpuset_attached, cpu_index(ci));
149 1.55 rmind
150 1.58 matt /*
151 1.58 matt * Create a convenience cpuset of just ourselves.
152 1.58 matt */
153 1.58 matt kcpuset_create(&ci->ci_data.cpu_kcpuset, true);
154 1.58 matt kcpuset_set(ci->ci_data.cpu_kcpuset, cpu_index(ci));
155 1.58 matt
156 1.24 ad CIRCLEQ_INSERT_TAIL(&cpu_queue, ci, ci_data.cpu_qchain);
157 1.30 ad TAILQ_INIT(&ci->ci_data.cpu_ld_locks);
158 1.30 ad __cpu_simple_lock_init(&ci->ci_data.cpu_ld_lock);
159 1.5 rmind
160 1.43 mrg /* This is useful for eg, per-cpu evcnt */
161 1.43 mrg snprintf(ci->ci_data.cpu_name, sizeof(ci->ci_data.cpu_name), "cpu%d",
162 1.44 ad cpu_index(ci));
163 1.43 mrg
164 1.47 matt if (__predict_false(cpu_infos == NULL)) {
165 1.47 matt cpu_infos =
166 1.47 matt kmem_zalloc(sizeof(cpu_infos[0]) * maxcpus, KM_SLEEP);
167 1.47 matt }
168 1.47 matt cpu_infos[cpu_index(ci)] = ci;
169 1.47 matt
170 1.2 yamt sched_cpuattach(ci);
171 1.2 yamt
172 1.2 yamt error = create_idle_lwp(ci);
173 1.2 yamt if (error != 0) {
174 1.2 yamt /* XXX revert sched_cpuattach */
175 1.2 yamt return error;
176 1.2 yamt }
177 1.2 yamt
178 1.13 ad if (ci == curcpu())
179 1.13 ad ci->ci_data.cpu_onproc = curlwp;
180 1.13 ad else
181 1.13 ad ci->ci_data.cpu_onproc = ci->ci_data.cpu_idlelwp;
182 1.13 ad
183 1.17 yamt percpu_init_cpu(ci);
184 1.8 ad softint_init(ci);
185 1.27 ad callout_init_cpu(ci);
186 1.7 ad xc_init_cpu(ci);
187 1.14 ad pool_cache_cpu_init(ci);
188 1.22 ad selsysinit(ci);
189 1.23 ad cache_cpu_init(ci);
190 1.7 ad TAILQ_INIT(&ci->ci_data.cpu_biodone);
191 1.2 yamt ncpu++;
192 1.9 ad ncpuonline++;
193 1.2 yamt
194 1.2 yamt return 0;
195 1.2 yamt }
196 1.3 ad
197 1.3 ad void
198 1.3 ad cpuctlattach(int dummy)
199 1.3 ad {
200 1.3 ad
201 1.44 ad KASSERT(cpu_infos != NULL);
202 1.3 ad }
203 1.3 ad
204 1.3 ad int
205 1.3 ad cpuctl_ioctl(dev_t dev, u_long cmd, void *data, int flag, lwp_t *l)
206 1.3 ad {
207 1.3 ad CPU_INFO_ITERATOR cii;
208 1.3 ad cpustate_t *cs;
209 1.3 ad struct cpu_info *ci;
210 1.3 ad int error, i;
211 1.3 ad u_int id;
212 1.3 ad
213 1.3 ad error = 0;
214 1.3 ad
215 1.3 ad mutex_enter(&cpu_lock);
216 1.3 ad switch (cmd) {
217 1.3 ad case IOC_CPU_SETSTATE:
218 1.56 joerg cs = data;
219 1.20 elad error = kauth_authorize_system(l->l_cred,
220 1.20 elad KAUTH_SYSTEM_CPU, KAUTH_REQ_SYSTEM_CPU_SETSTATE, cs, NULL,
221 1.20 elad NULL);
222 1.3 ad if (error != 0)
223 1.3 ad break;
224 1.44 ad if (cs->cs_id >= maxcpus ||
225 1.36 ad (ci = cpu_lookup(cs->cs_id)) == NULL) {
226 1.3 ad error = ESRCH;
227 1.3 ad break;
228 1.3 ad }
229 1.56 joerg cpu_setintr(ci, cs->cs_intr);
230 1.37 rmind error = cpu_setstate(ci, cs->cs_online);
231 1.3 ad break;
232 1.3 ad
233 1.3 ad case IOC_CPU_GETSTATE:
234 1.56 joerg cs = data;
235 1.3 ad id = cs->cs_id;
236 1.10 ad memset(cs, 0, sizeof(*cs));
237 1.3 ad cs->cs_id = id;
238 1.44 ad if (cs->cs_id >= maxcpus ||
239 1.36 ad (ci = cpu_lookup(id)) == NULL) {
240 1.3 ad error = ESRCH;
241 1.3 ad break;
242 1.3 ad }
243 1.3 ad if ((ci->ci_schedstate.spc_flags & SPCF_OFFLINE) != 0)
244 1.3 ad cs->cs_online = false;
245 1.3 ad else
246 1.3 ad cs->cs_online = true;
247 1.42 ad if ((ci->ci_schedstate.spc_flags & SPCF_NOINTR) != 0)
248 1.42 ad cs->cs_intr = false;
249 1.42 ad else
250 1.42 ad cs->cs_intr = true;
251 1.42 ad cs->cs_lastmod = (int32_t)ci->ci_schedstate.spc_lastmod;
252 1.42 ad cs->cs_lastmodhi = (int32_t)
253 1.42 ad (ci->ci_schedstate.spc_lastmod >> 32);
254 1.42 ad cs->cs_intrcnt = cpu_intr_count(ci) + 1;
255 1.51 jdc cs->cs_hwid = ci->ci_cpuid;
256 1.3 ad break;
257 1.3 ad
258 1.3 ad case IOC_CPU_MAPID:
259 1.3 ad i = 0;
260 1.3 ad for (CPU_INFO_FOREACH(cii, ci)) {
261 1.3 ad if (i++ == *(int *)data)
262 1.3 ad break;
263 1.3 ad }
264 1.3 ad if (ci == NULL)
265 1.3 ad error = ESRCH;
266 1.3 ad else
267 1.38 rmind *(int *)data = cpu_index(ci);
268 1.3 ad break;
269 1.3 ad
270 1.3 ad case IOC_CPU_GETCOUNT:
271 1.3 ad *(int *)data = ncpu;
272 1.3 ad break;
273 1.3 ad
274 1.53 cegger #ifdef CPU_UCODE
275 1.53 cegger case IOC_CPU_UCODE_GET_VERSION:
276 1.57 drochner error = cpu_ucode_get_version((struct cpu_ucode_version *)data);
277 1.57 drochner break;
278 1.57 drochner
279 1.59 drochner #ifdef COMPAT_60
280 1.57 drochner case OIOC_CPU_UCODE_GET_VERSION:
281 1.57 drochner error = compat6_cpu_ucode_get_version((struct compat6_cpu_ucode *)data);
282 1.53 cegger break;
283 1.59 drochner #endif
284 1.53 cegger
285 1.53 cegger case IOC_CPU_UCODE_APPLY:
286 1.53 cegger error = kauth_authorize_machdep(l->l_cred,
287 1.53 cegger KAUTH_MACHDEP_CPU_UCODE_APPLY,
288 1.53 cegger NULL, NULL, NULL, NULL);
289 1.53 cegger if (error != 0)
290 1.53 cegger break;
291 1.57 drochner error = cpu_ucode_apply((const struct cpu_ucode *)data);
292 1.57 drochner break;
293 1.57 drochner
294 1.59 drochner #ifdef COMPAT_60
295 1.57 drochner case OIOC_CPU_UCODE_APPLY:
296 1.57 drochner error = kauth_authorize_machdep(l->l_cred,
297 1.57 drochner KAUTH_MACHDEP_CPU_UCODE_APPLY,
298 1.57 drochner NULL, NULL, NULL, NULL);
299 1.57 drochner if (error != 0)
300 1.57 drochner break;
301 1.57 drochner error = compat6_cpu_ucode_apply((const struct compat6_cpu_ucode *)data);
302 1.53 cegger break;
303 1.53 cegger #endif
304 1.59 drochner #endif
305 1.53 cegger
306 1.3 ad default:
307 1.3 ad error = ENOTTY;
308 1.3 ad break;
309 1.3 ad }
310 1.3 ad mutex_exit(&cpu_lock);
311 1.3 ad
312 1.3 ad return error;
313 1.3 ad }
314 1.3 ad
315 1.3 ad struct cpu_info *
316 1.36 ad cpu_lookup(u_int idx)
317 1.16 yamt {
318 1.44 ad struct cpu_info *ci;
319 1.44 ad
320 1.44 ad KASSERT(idx < maxcpus);
321 1.44 ad
322 1.44 ad if (__predict_false(cpu_infos == NULL)) {
323 1.44 ad KASSERT(idx == 0);
324 1.44 ad return curcpu();
325 1.44 ad }
326 1.16 yamt
327 1.44 ad ci = cpu_infos[idx];
328 1.16 yamt KASSERT(ci == NULL || cpu_index(ci) == idx);
329 1.16 yamt
330 1.16 yamt return ci;
331 1.16 yamt }
332 1.16 yamt
333 1.7 ad static void
334 1.11 rmind cpu_xc_offline(struct cpu_info *ci)
335 1.7 ad {
336 1.11 rmind struct schedstate_percpu *spc, *mspc = NULL;
337 1.37 rmind struct cpu_info *target_ci;
338 1.11 rmind struct lwp *l;
339 1.11 rmind CPU_INFO_ITERATOR cii;
340 1.7 ad int s;
341 1.7 ad
342 1.37 rmind /*
343 1.42 ad * Thread that made the cross call (separate context) holds
344 1.42 ad * cpu_lock on our behalf.
345 1.37 rmind */
346 1.11 rmind spc = &ci->ci_schedstate;
347 1.7 ad s = splsched();
348 1.7 ad spc->spc_flags |= SPCF_OFFLINE;
349 1.7 ad splx(s);
350 1.11 rmind
351 1.42 ad /* Take the first available CPU for the migration. */
352 1.37 rmind for (CPU_INFO_FOREACH(cii, target_ci)) {
353 1.37 rmind mspc = &target_ci->ci_schedstate;
354 1.11 rmind if ((mspc->spc_flags & SPCF_OFFLINE) == 0)
355 1.11 rmind break;
356 1.11 rmind }
357 1.37 rmind KASSERT(target_ci != NULL);
358 1.11 rmind
359 1.11 rmind /*
360 1.37 rmind * Migrate all non-bound threads to the other CPU. Note that this
361 1.37 rmind * runs from the xcall thread, thus handling of LSONPROC is not needed.
362 1.11 rmind */
363 1.28 ad mutex_enter(proc_lock);
364 1.11 rmind LIST_FOREACH(l, &alllwp, l_list) {
365 1.37 rmind struct cpu_info *mci;
366 1.37 rmind
367 1.35 yamt lwp_lock(l);
368 1.37 rmind if (l->l_cpu != ci || (l->l_pflag & (LP_BOUND | LP_INTR))) {
369 1.35 yamt lwp_unlock(l);
370 1.37 rmind continue;
371 1.11 rmind }
372 1.49 rmind /* Regular case - no affinity. */
373 1.49 rmind if (l->l_affinity == NULL) {
374 1.37 rmind lwp_migrate(l, target_ci);
375 1.37 rmind continue;
376 1.37 rmind }
377 1.49 rmind /* Affinity is set, find an online CPU in the set. */
378 1.37 rmind for (CPU_INFO_FOREACH(cii, mci)) {
379 1.37 rmind mspc = &mci->ci_schedstate;
380 1.37 rmind if ((mspc->spc_flags & SPCF_OFFLINE) == 0 &&
381 1.48 rmind kcpuset_isset(l->l_affinity, cpu_index(mci)))
382 1.37 rmind break;
383 1.37 rmind }
384 1.37 rmind if (mci == NULL) {
385 1.37 rmind lwp_unlock(l);
386 1.37 rmind mutex_exit(proc_lock);
387 1.37 rmind goto fail;
388 1.37 rmind }
389 1.37 rmind lwp_migrate(l, mci);
390 1.11 rmind }
391 1.28 ad mutex_exit(proc_lock);
392 1.19 joerg
393 1.60 drochner #if PCU_UNIT_COUNT > 0
394 1.60 drochner pcu_save_all_on_cpu();
395 1.60 drochner #endif
396 1.60 drochner
397 1.19 joerg #ifdef __HAVE_MD_CPU_OFFLINE
398 1.19 joerg cpu_offline_md();
399 1.19 joerg #endif
400 1.37 rmind return;
401 1.37 rmind fail:
402 1.37 rmind /* Just unset the SPCF_OFFLINE flag, caller will check */
403 1.37 rmind s = splsched();
404 1.37 rmind spc->spc_flags &= ~SPCF_OFFLINE;
405 1.37 rmind splx(s);
406 1.7 ad }
407 1.7 ad
408 1.7 ad static void
409 1.11 rmind cpu_xc_online(struct cpu_info *ci)
410 1.7 ad {
411 1.11 rmind struct schedstate_percpu *spc;
412 1.7 ad int s;
413 1.7 ad
414 1.11 rmind spc = &ci->ci_schedstate;
415 1.7 ad s = splsched();
416 1.7 ad spc->spc_flags &= ~SPCF_OFFLINE;
417 1.7 ad splx(s);
418 1.7 ad }
419 1.7 ad
420 1.3 ad int
421 1.37 rmind cpu_setstate(struct cpu_info *ci, bool online)
422 1.3 ad {
423 1.3 ad struct schedstate_percpu *spc;
424 1.3 ad CPU_INFO_ITERATOR cii;
425 1.3 ad struct cpu_info *ci2;
426 1.7 ad uint64_t where;
427 1.7 ad xcfunc_t func;
428 1.3 ad int nonline;
429 1.3 ad
430 1.3 ad spc = &ci->ci_schedstate;
431 1.3 ad
432 1.3 ad KASSERT(mutex_owned(&cpu_lock));
433 1.3 ad
434 1.3 ad if (online) {
435 1.3 ad if ((spc->spc_flags & SPCF_OFFLINE) == 0)
436 1.3 ad return 0;
437 1.7 ad func = (xcfunc_t)cpu_xc_online;
438 1.9 ad ncpuonline++;
439 1.3 ad } else {
440 1.3 ad if ((spc->spc_flags & SPCF_OFFLINE) != 0)
441 1.3 ad return 0;
442 1.3 ad nonline = 0;
443 1.33 ad /*
444 1.33 ad * Ensure that at least one CPU within the processor set
445 1.33 ad * stays online. Revisit this later.
446 1.33 ad */
447 1.3 ad for (CPU_INFO_FOREACH(cii, ci2)) {
448 1.33 ad if ((ci2->ci_schedstate.spc_flags & SPCF_OFFLINE) != 0)
449 1.33 ad continue;
450 1.33 ad if (ci2->ci_schedstate.spc_psid != spc->spc_psid)
451 1.33 ad continue;
452 1.33 ad nonline++;
453 1.3 ad }
454 1.3 ad if (nonline == 1)
455 1.3 ad return EBUSY;
456 1.7 ad func = (xcfunc_t)cpu_xc_offline;
457 1.9 ad ncpuonline--;
458 1.3 ad }
459 1.3 ad
460 1.11 rmind where = xc_unicast(0, func, ci, NULL, ci);
461 1.7 ad xc_wait(where);
462 1.11 rmind if (online) {
463 1.11 rmind KASSERT((spc->spc_flags & SPCF_OFFLINE) == 0);
464 1.37 rmind } else if ((spc->spc_flags & SPCF_OFFLINE) == 0) {
465 1.37 rmind /* If was not set offline, then it is busy */
466 1.37 rmind return EBUSY;
467 1.11 rmind }
468 1.37 rmind
469 1.7 ad spc->spc_lastmod = time_second;
470 1.3 ad return 0;
471 1.3 ad }
472 1.39 ad
473 1.42 ad #ifdef __HAVE_INTR_CONTROL
474 1.42 ad static void
475 1.42 ad cpu_xc_intr(struct cpu_info *ci)
476 1.42 ad {
477 1.42 ad struct schedstate_percpu *spc;
478 1.42 ad int s;
479 1.42 ad
480 1.42 ad spc = &ci->ci_schedstate;
481 1.42 ad s = splsched();
482 1.42 ad spc->spc_flags &= ~SPCF_NOINTR;
483 1.42 ad splx(s);
484 1.42 ad }
485 1.42 ad
486 1.42 ad static void
487 1.42 ad cpu_xc_nointr(struct cpu_info *ci)
488 1.42 ad {
489 1.42 ad struct schedstate_percpu *spc;
490 1.42 ad int s;
491 1.42 ad
492 1.42 ad spc = &ci->ci_schedstate;
493 1.42 ad s = splsched();
494 1.42 ad spc->spc_flags |= SPCF_NOINTR;
495 1.42 ad splx(s);
496 1.42 ad }
497 1.42 ad
498 1.42 ad int
499 1.42 ad cpu_setintr(struct cpu_info *ci, bool intr)
500 1.42 ad {
501 1.42 ad struct schedstate_percpu *spc;
502 1.42 ad CPU_INFO_ITERATOR cii;
503 1.42 ad struct cpu_info *ci2;
504 1.42 ad uint64_t where;
505 1.42 ad xcfunc_t func;
506 1.42 ad int nintr;
507 1.42 ad
508 1.42 ad spc = &ci->ci_schedstate;
509 1.42 ad
510 1.42 ad KASSERT(mutex_owned(&cpu_lock));
511 1.42 ad
512 1.42 ad if (intr) {
513 1.42 ad if ((spc->spc_flags & SPCF_NOINTR) == 0)
514 1.42 ad return 0;
515 1.42 ad func = (xcfunc_t)cpu_xc_intr;
516 1.42 ad } else {
517 1.42 ad if ((spc->spc_flags & SPCF_NOINTR) != 0)
518 1.42 ad return 0;
519 1.42 ad /*
520 1.42 ad * Ensure that at least one CPU within the system
521 1.42 ad * is handing device interrupts.
522 1.42 ad */
523 1.42 ad nintr = 0;
524 1.42 ad for (CPU_INFO_FOREACH(cii, ci2)) {
525 1.42 ad if ((ci2->ci_schedstate.spc_flags & SPCF_NOINTR) != 0)
526 1.42 ad continue;
527 1.42 ad if (ci2 == ci)
528 1.42 ad continue;
529 1.42 ad nintr++;
530 1.42 ad }
531 1.42 ad if (nintr == 0)
532 1.42 ad return EBUSY;
533 1.42 ad func = (xcfunc_t)cpu_xc_nointr;
534 1.42 ad }
535 1.42 ad
536 1.42 ad where = xc_unicast(0, func, ci, NULL, ci);
537 1.42 ad xc_wait(where);
538 1.42 ad if (intr) {
539 1.42 ad KASSERT((spc->spc_flags & SPCF_NOINTR) == 0);
540 1.42 ad } else if ((spc->spc_flags & SPCF_NOINTR) == 0) {
541 1.42 ad /* If was not set offline, then it is busy */
542 1.42 ad return EBUSY;
543 1.42 ad }
544 1.42 ad
545 1.42 ad /* Direct interrupts away from the CPU and record the change. */
546 1.42 ad cpu_intr_redistribute();
547 1.42 ad spc->spc_lastmod = time_second;
548 1.42 ad return 0;
549 1.42 ad }
550 1.42 ad #else /* __HAVE_INTR_CONTROL */
551 1.42 ad int
552 1.42 ad cpu_setintr(struct cpu_info *ci, bool intr)
553 1.42 ad {
554 1.42 ad
555 1.42 ad return EOPNOTSUPP;
556 1.42 ad }
557 1.42 ad
558 1.42 ad u_int
559 1.42 ad cpu_intr_count(struct cpu_info *ci)
560 1.42 ad {
561 1.42 ad
562 1.42 ad return 0; /* 0 == "don't know" */
563 1.42 ad }
564 1.42 ad #endif /* __HAVE_INTR_CONTROL */
565 1.42 ad
566 1.39 ad bool
567 1.39 ad cpu_softintr_p(void)
568 1.39 ad {
569 1.39 ad
570 1.39 ad return (curlwp->l_pflag & LP_INTR) != 0;
571 1.39 ad }
572 1.53 cegger
573 1.53 cegger #ifdef CPU_UCODE
574 1.53 cegger int
575 1.53 cegger cpu_ucode_load(struct cpu_ucode_softc *sc, const char *fwname)
576 1.53 cegger {
577 1.53 cegger firmware_handle_t fwh;
578 1.53 cegger int error;
579 1.53 cegger
580 1.53 cegger if (sc->sc_blob != NULL) {
581 1.53 cegger firmware_free(sc->sc_blob, 0);
582 1.53 cegger sc->sc_blob = NULL;
583 1.53 cegger sc->sc_blobsize = 0;
584 1.53 cegger }
585 1.53 cegger
586 1.57 drochner error = cpu_ucode_md_open(&fwh, sc->loader_version, fwname);
587 1.53 cegger if (error != 0) {
588 1.53 cegger aprint_error("ucode: firmware_open failed: %i\n", error);
589 1.53 cegger goto err0;
590 1.53 cegger }
591 1.53 cegger
592 1.53 cegger sc->sc_blobsize = firmware_get_size(fwh);
593 1.53 cegger sc->sc_blob = firmware_malloc(sc->sc_blobsize);
594 1.53 cegger if (sc->sc_blob == NULL) {
595 1.53 cegger error = ENOMEM;
596 1.53 cegger firmware_close(fwh);
597 1.53 cegger goto err0;
598 1.53 cegger }
599 1.53 cegger
600 1.53 cegger error = firmware_read(fwh, 0, sc->sc_blob, sc->sc_blobsize);
601 1.53 cegger firmware_close(fwh);
602 1.53 cegger if (error != 0)
603 1.53 cegger goto err1;
604 1.53 cegger
605 1.53 cegger return 0;
606 1.53 cegger
607 1.53 cegger err1:
608 1.53 cegger firmware_free(sc->sc_blob, 0);
609 1.53 cegger sc->sc_blob = NULL;
610 1.53 cegger sc->sc_blobsize = 0;
611 1.53 cegger err0:
612 1.53 cegger return error;
613 1.53 cegger }
614 1.53 cegger #endif
615