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1 /*
2 * Copyright (c) 2000-2012 Apple Inc. All rights reserved.
3 *
4 * @APPLE_OSREFERENCE_LICENSE_HEADER_START@
5 *
6 * This file contains Original Code and/or Modifications of Original Code
7 * as defined in and that are subject to the Apple Public Source License
8 * Version 2.0 (the 'License'). You may not use this file except in
9 * compliance with the License. The rights granted to you under the License
10 * may not be used to create, or enable the creation or redistribution of,
11 * unlawful or unlicensed copies of an Apple operating system, or to
12 * circumvent, violate, or enable the circumvention or violation of, any
13 * terms of an Apple operating system software license agreement.
14 *
15 * Please obtain a copy of the License at
16 * http://www.opensource.apple.com/apsl/ and read it before using this file.
17 *
18 * The Original Code and all software distributed under the License are
19 * distributed on an 'AS IS' basis, WITHOUT WARRANTY OF ANY KIND, EITHER
20 * EXPRESS OR IMPLIED, AND APPLE HEREBY DISCLAIMS ALL SUCH WARRANTIES,
21 * INCLUDING WITHOUT LIMITATION, ANY WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE, QUIET ENJOYMENT OR NON-INFRINGEMENT.
23 * Please see the License for the specific language governing rights and
24 * limitations under the License.
25 *
26 * @APPLE_OSREFERENCE_LICENSE_HEADER_END@
27 */
28
29 #include <i386/pmap.h>
30 #include <i386/proc_reg.h>
31 #include <i386/mp_desc.h>
32 #include <i386/misc_protos.h>
33 #include <i386/mp.h>
34 #include <i386/cpu_data.h>
35 #if CONFIG_MTRR
36 #include <i386/mtrr.h>
37 #endif
38 #if HYPERVISOR
39 #include <kern/hv_support.h>
40 #endif
41 #if CONFIG_VMX
42 #include <i386/vmx/vmx_cpu.h>
43 #endif
44 #include <i386/ucode.h>
45 #include <i386/acpi.h>
46 #include <i386/fpu.h>
47 #include <i386/lapic.h>
48 #include <i386/mp.h>
49 #include <i386/mp_desc.h>
50 #include <i386/serial_io.h>
51 #if CONFIG_MCA
52 #include <i386/machine_check.h>
53 #endif
54 #include <i386/pmCPU.h>
55
56 #include <i386/tsc.h>
57
58 #include <kern/cpu_data.h>
59 #include <kern/machine.h>
60 #include <kern/timer_queue.h>
61 #include <console/serial_protos.h>
62 #include <machine/pal_routines.h>
63 #include <vm/vm_page.h>
64
65 #if HIBERNATION
66 #include <IOKit/IOHibernatePrivate.h>
67 #endif
68 #include <IOKit/IOPlatformExpert.h>
69 #include <sys/kdebug.h>
70
71 #if CONFIG_SLEEP
72 extern void acpi_sleep_cpu(acpi_sleep_callback, void * refcon);
73 extern void acpi_wake_prot(void);
74 #endif
75 extern kern_return_t IOCPURunPlatformQuiesceActions(void);
76 extern kern_return_t IOCPURunPlatformActiveActions(void);
77 extern kern_return_t IOCPURunPlatformHaltRestartActions(uint32_t message);
78
79 extern void fpinit(void);
80
81 vm_offset_t
82 acpi_install_wake_handler(void)
83 {
84 #if CONFIG_SLEEP
85 install_real_mode_bootstrap(acpi_wake_prot);
86 return REAL_MODE_BOOTSTRAP_OFFSET;
87 #else
88 return 0;
89 #endif
90 }
91
92 #if CONFIG_SLEEP
93
94 unsigned int save_kdebug_enable = 0;
95 static uint64_t acpi_sleep_abstime;
96 static uint64_t acpi_idle_abstime;
97 static uint64_t acpi_wake_abstime, acpi_wake_postrebase_abstime;
98 boolean_t deep_idle_rebase = TRUE;
99
100 #if HIBERNATION
101 struct acpi_hibernate_callback_data {
102 acpi_sleep_callback func;
103 void *refcon;
104 };
105 typedef struct acpi_hibernate_callback_data acpi_hibernate_callback_data_t;
106
107 static void
108 acpi_hibernate(void *refcon)
109 {
110 uint32_t mode;
111
112 acpi_hibernate_callback_data_t *data =
113 (acpi_hibernate_callback_data_t *)refcon;
114
115 if (current_cpu_datap()->cpu_hibernate)
116 {
117 mode = hibernate_write_image();
118
119 if( mode == kIOHibernatePostWriteHalt )
120 {
121 // off
122 HIBLOG("power off\n");
123 IOCPURunPlatformHaltRestartActions(kPEHaltCPU);
124 if (PE_halt_restart) (*PE_halt_restart)(kPEHaltCPU);
125 }
126 else if( mode == kIOHibernatePostWriteRestart )
127 {
128 // restart
129 HIBLOG("restart\n");
130 IOCPURunPlatformHaltRestartActions(kPERestartCPU);
131 if (PE_halt_restart) (*PE_halt_restart)(kPERestartCPU);
132 }
133 else
134 {
135 // sleep
136 HIBLOG("sleep\n");
137
138 // should we come back via regular wake, set the state in memory.
139 cpu_datap(0)->cpu_hibernate = 0;
140 }
141
142 }
143
144 #if CONFIG_VMX
145 vmx_suspend();
146 #endif
147 kdebug_enable = 0;
148
149 IOCPURunPlatformQuiesceActions();
150
151 acpi_sleep_abstime = mach_absolute_time();
152
153 (data->func)(data->refcon);
154
155 /* should never get here! */
156 }
157 #endif /* HIBERNATION */
158 #endif /* CONFIG_SLEEP */
159
160 extern void slave_pstart(void);
161 extern void hibernate_rebuild_vm_structs(void);
162
163 extern unsigned int wake_nkdbufs;
164
165 void
166 acpi_sleep_kernel(acpi_sleep_callback func, void *refcon)
167 {
168 #if HIBERNATION
169 acpi_hibernate_callback_data_t data;
170 #endif
171 boolean_t did_hibernate;
172 unsigned int cpu;
173 kern_return_t rc;
174 unsigned int my_cpu;
175 uint64_t start;
176 uint64_t elapsed = 0;
177 uint64_t elapsed_trace_start = 0;
178
179 kprintf("acpi_sleep_kernel hib=%d, cpu=%d\n",
180 current_cpu_datap()->cpu_hibernate, cpu_number());
181
182 /* Get all CPUs to be in the "off" state */
183 my_cpu = cpu_number();
184 for (cpu = 0; cpu < real_ncpus; cpu += 1) {
185 if (cpu == my_cpu)
186 continue;
187 rc = pmCPUExitHaltToOff(cpu);
188 if (rc != KERN_SUCCESS)
189 panic("Error %d trying to transition CPU %d to OFF",
190 rc, cpu);
191 }
192
193 /* shutdown local APIC before passing control to firmware */
194 lapic_shutdown();
195
196 #if HIBERNATION
197 data.func = func;
198 data.refcon = refcon;
199 #endif
200
201 /* Save power management timer state */
202 pmTimerSave();
203
204 #if HYPERVISOR
205 /* Notify hypervisor that we are about to sleep */
206 hv_suspend();
207 #endif
208
209 /*
210 * Enable FPU/SIMD unit for potential hibernate acceleration
211 */
212 clear_ts();
213
214 KERNEL_DEBUG_CONSTANT(IOKDBG_CODE(DBG_HIBERNATE, 0) | DBG_FUNC_START, 0, 0, 0, 0, 0);
215
216 save_kdebug_enable = kdebug_enable;
217 kdebug_enable = 0;
218
219 acpi_sleep_abstime = mach_absolute_time();
220
221 #if CONFIG_SLEEP
222 /*
223 * Save master CPU state and sleep platform.
224 * Will not return until platform is woken up,
225 * or if sleep failed.
226 */
227 uint64_t old_cr3 = x86_64_pre_sleep();
228 #if HIBERNATION
229 acpi_sleep_cpu(acpi_hibernate, &data);
230 #else
231 #if CONFIG_VMX
232 vmx_suspend();
233 #endif
234 acpi_sleep_cpu(func, refcon);
235 #endif
236
237 acpi_wake_abstime = mach_absolute_time();
238 /* Rebase TSC->absolute time conversion, using timestamp
239 * recorded before sleep.
240 */
241 rtc_nanotime_init(acpi_sleep_abstime);
242 acpi_wake_postrebase_abstime = start = mach_absolute_time();
243 assert(start >= acpi_sleep_abstime);
244
245 x86_64_post_sleep(old_cr3);
246
247 #endif /* CONFIG_SLEEP */
248
249 /* Reset UART if kprintf is enabled.
250 * However kprintf should not be used before rtc_sleep_wakeup()
251 * for compatibility with firewire kprintf.
252 */
253
254 if (FALSE == disable_serial_output)
255 pal_serial_init();
256
257 #if HIBERNATION
258 if (current_cpu_datap()->cpu_hibernate) {
259 did_hibernate = TRUE;
260
261 } else
262 #endif
263 {
264 did_hibernate = FALSE;
265 }
266
267 /* Re-enable mode (including 64-bit if applicable) */
268 cpu_mode_init(current_cpu_datap());
269
270 #if CONFIG_MCA
271 /* Re-enable machine check handling */
272 mca_cpu_init();
273 #endif
274
275 #if CONFIG_MTRR
276 /* restore MTRR settings */
277 mtrr_update_cpu();
278 #endif
279
280 /* update CPU microcode */
281 ucode_update_wake();
282
283 #if CONFIG_MTRR
284 /* set up PAT following boot processor power up */
285 pat_init();
286 #endif
287
288 #if CONFIG_VMX
289 /*
290 * Restore VT mode
291 */
292 vmx_resume(did_hibernate);
293 #endif
294
295 /*
296 * Go through all of the CPUs and mark them as requiring
297 * a full restart.
298 */
299 pmMarkAllCPUsOff();
300
301
302 /* re-enable and re-init local apic (prior to starting timers) */
303 if (lapic_probe())
304 lapic_configure();
305
306 #if HIBERNATION
307 hibernate_rebuild_vm_structs();
308 #endif
309
310 elapsed += mach_absolute_time() - start;
311
312 rtc_decrementer_configure();
313 kdebug_enable = save_kdebug_enable;
314
315 if (kdebug_enable == 0) {
316 if (wake_nkdbufs) {
317 start = mach_absolute_time();
318 kdebug_trace_start(wake_nkdbufs, NULL, TRUE);
319 elapsed_trace_start += mach_absolute_time() - start;
320 }
321 }
322 start = mach_absolute_time();
323
324 /* Reconfigure FP/SIMD unit */
325 init_fpu();
326 clear_ts();
327
328 IOCPURunPlatformActiveActions();
329
330 #if HIBERNATION
331 if (did_hibernate) {
332 elapsed += mach_absolute_time() - start;
333
334 KERNEL_DEBUG_CONSTANT(IOKDBG_CODE(DBG_HIBERNATE, 2) | DBG_FUNC_START, elapsed, elapsed_trace_start, 0, 0, 0);
335 hibernate_machine_init();
336 KERNEL_DEBUG_CONSTANT(IOKDBG_CODE(DBG_HIBERNATE, 2) | DBG_FUNC_END, 0, 0, 0, 0, 0);
337
338 current_cpu_datap()->cpu_hibernate = 0;
339
340 KERNEL_DEBUG_CONSTANT(IOKDBG_CODE(DBG_HIBERNATE, 0) | DBG_FUNC_END, 0, 0, 0, 0, 0);
341 } else
342 #endif /* HIBERNATION */
343 KERNEL_DEBUG_CONSTANT(IOKDBG_CODE(DBG_HIBERNATE, 0) | DBG_FUNC_END, 0, 0, 0, 0, 0);
344
345 /* Restore power management register state */
346 pmCPUMarkRunning(current_cpu_datap());
347
348 /* Restore power management timer state */
349 pmTimerRestore();
350
351 /* Restart timer interrupts */
352 rtc_timer_start();
353
354 #if HIBERNATION
355
356 kprintf("ret from acpi_sleep_cpu hib=%d\n", did_hibernate);
357 #endif
358
359 #if CONFIG_SLEEP
360 /* Becase we don't save the bootstrap page, and we share it
361 * between sleep and mp slave init, we need to recreate it
362 * after coming back from sleep or hibernate */
363 install_real_mode_bootstrap(slave_pstart);
364 #endif
365 }
366
367 /*
368 * acpi_idle_kernel is called by the ACPI Platform kext to request the kernel
369 * to idle the boot processor in the deepest C-state for S0 sleep. All slave
370 * processors are expected already to have been offlined in the deepest C-state.
371 *
372 * The contract with ACPI is that although the kernel is called with interrupts
373 * disabled, interrupts may need to be re-enabled to dismiss any pending timer
374 * interrupt. However, the callback function will be called once this has
375 * occurred and interrupts are guaranteed to be disabled at that time,
376 * and to remain disabled during C-state entry, exit (wake) and return
377 * from acpi_idle_kernel.
378 */
379 void
380 acpi_idle_kernel(acpi_sleep_callback func, void *refcon)
381 {
382 boolean_t istate = ml_get_interrupts_enabled();
383
384 kprintf("acpi_idle_kernel, cpu=%d, interrupts %s\n",
385 cpu_number(), istate ? "enabled" : "disabled");
386
387 assert(cpu_number() == master_cpu);
388
389 /* Cancel any pending deadline */
390 setPop(0);
391 while (lapic_is_interrupting(LAPIC_TIMER_VECTOR)) {
392 (void) ml_set_interrupts_enabled(TRUE);
393 setPop(0);
394 ml_set_interrupts_enabled(FALSE);
395 }
396
397 /*
398 * Call back to caller to indicate that interrupts will remain
399 * disabled while we deep idle, wake and return.
400 */
401 func(refcon);
402
403 acpi_idle_abstime = mach_absolute_time();
404
405 KERNEL_DEBUG_CONSTANT(
406 MACHDBG_CODE(DBG_MACH_SCHED, MACH_DEEP_IDLE) | DBG_FUNC_START,
407 acpi_idle_abstime, deep_idle_rebase, 0, 0, 0);
408
409 /*
410 * Disable tracing during S0-sleep
411 * unless overridden by sysctl -w tsc.deep_idle_rebase=0
412 */
413 if (deep_idle_rebase) {
414 save_kdebug_enable = kdebug_enable;
415 kdebug_enable = 0;
416 }
417
418 /*
419 * Call into power-management to enter the lowest C-state.
420 * Note when called on the boot processor this routine will
421 * return directly when awoken.
422 */
423 pmCPUHalt(PM_HALT_SLEEP);
424
425 /*
426 * Get wakeup time relative to the TSC which has progressed.
427 * Then rebase nanotime to reflect time not progressing over sleep
428 * - unless overriden so that tracing can occur during deep_idle.
429 */
430 acpi_wake_abstime = mach_absolute_time();
431 if (deep_idle_rebase) {
432 rtc_sleep_wakeup(acpi_idle_abstime);
433 kdebug_enable = save_kdebug_enable;
434 }
435 acpi_wake_postrebase_abstime = mach_absolute_time();
436 assert(mach_absolute_time() >= acpi_idle_abstime);
437
438 KERNEL_DEBUG_CONSTANT(
439 MACHDBG_CODE(DBG_MACH_SCHED, MACH_DEEP_IDLE) | DBG_FUNC_END,
440 acpi_wake_abstime, acpi_wake_abstime - acpi_idle_abstime, 0, 0, 0);
441
442 /* Like S3 sleep, turn on tracing if trace_wake boot-arg is present */
443 if (kdebug_enable == 0) {
444 if (wake_nkdbufs)
445 kdebug_trace_start(wake_nkdbufs, NULL, TRUE);
446 }
447
448 IOCPURunPlatformActiveActions();
449
450 /* Restart timer interrupts */
451 rtc_timer_start();
452 }
453
454 extern char real_mode_bootstrap_end[];
455 extern char real_mode_bootstrap_base[];
456
457 void
458 install_real_mode_bootstrap(void *prot_entry)
459 {
460 /*
461 * Copy the boot entry code to the real-mode vector area REAL_MODE_BOOTSTRAP_OFFSET.
462 * This is in page 1 which has been reserved for this purpose by
463 * machine_startup() from the boot processor.
464 * The slave boot code is responsible for switching to protected
465 * mode and then jumping to the common startup, _start().
466 */
467 bcopy_phys(kvtophys((vm_offset_t) real_mode_bootstrap_base),
468 (addr64_t) REAL_MODE_BOOTSTRAP_OFFSET,
469 real_mode_bootstrap_end-real_mode_bootstrap_base);
470
471 /*
472 * Set the location at the base of the stack to point to the
473 * common startup entry.
474 */
475 ml_phys_write_word(
476 PROT_MODE_START+REAL_MODE_BOOTSTRAP_OFFSET,
477 (unsigned int)kvtophys((vm_offset_t)prot_entry));
478
479 /* Flush caches */
480 __asm__("wbinvd");
481 }
482
483 boolean_t
484 ml_recent_wake(void) {
485 uint64_t ctime = mach_absolute_time();
486 assert(ctime > acpi_wake_postrebase_abstime);
487 return ((ctime - acpi_wake_postrebase_abstime) < 5 * NSEC_PER_SEC);
488 }