blob: 219ef855aae508dc9353de3e3071c130f4a3e95f [file] [log] [blame]
Sheng Yang78376992008-01-28 05:10:22 +08001/*
2 * 8253/8254 interval timer emulation
3 *
4 * Copyright (c) 2003-2004 Fabrice Bellard
5 * Copyright (c) 2006 Intel Corporation
6 * Copyright (c) 2007 Keir Fraser, XenSource Inc
7 * Copyright (c) 2008 Intel Corporation
Nicolas Kaiser9611c182010-10-06 14:23:22 +02008 * Copyright 2009 Red Hat, Inc. and/or its affiliates.
Sheng Yang78376992008-01-28 05:10:22 +08009 *
10 * Permission is hereby granted, free of charge, to any person obtaining a copy
11 * of this software and associated documentation files (the "Software"), to deal
12 * in the Software without restriction, including without limitation the rights
13 * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
14 * copies of the Software, and to permit persons to whom the Software is
15 * furnished to do so, subject to the following conditions:
16 *
17 * The above copyright notice and this permission notice shall be included in
18 * all copies or substantial portions of the Software.
19 *
20 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
21 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
22 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
23 * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
24 * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
25 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
26 * THE SOFTWARE.
27 *
28 * Authors:
29 * Sheng Yang <sheng.yang@intel.com>
30 * Based on QEMU and Xen.
31 */
32
Joe Perchesa78d96262009-12-09 10:45:35 -080033#define pr_fmt(fmt) "pit: " fmt
34
Sheng Yang78376992008-01-28 05:10:22 +080035#include <linux/kvm_host.h>
Tejun Heo5a0e3ad2010-03-24 17:04:11 +090036#include <linux/slab.h>
Sheng Yang78376992008-01-28 05:10:22 +080037
Steve Rutherford49df6392015-07-29 23:21:40 -070038#include "ioapic.h"
Sheng Yang78376992008-01-28 05:10:22 +080039#include "irq.h"
40#include "i8254.h"
Marcelo Tosatti9ed96e82014-01-06 12:00:02 -020041#include "x86.h"
Sheng Yang78376992008-01-28 05:10:22 +080042
43#ifndef CONFIG_X86_64
Roman Zippel6f6d6a12008-05-01 04:34:28 -070044#define mod_64(x, y) ((x) - (y) * div64_u64(x, y))
Sheng Yang78376992008-01-28 05:10:22 +080045#else
46#define mod_64(x, y) ((x) % (y))
47#endif
48
49#define RW_STATE_LSB 1
50#define RW_STATE_MSB 2
51#define RW_STATE_WORD0 3
52#define RW_STATE_WORD1 4
53
54/* Compute with 96 bit intermediate result: (a*b)/c */
55static u64 muldiv64(u64 a, u32 b, u32 c)
56{
57 union {
58 u64 ll;
59 struct {
60 u32 low, high;
61 } l;
62 } u, res;
63 u64 rl, rh;
64
65 u.ll = a;
66 rl = (u64)u.l.low * (u64)b;
67 rh = (u64)u.l.high * (u64)b;
68 rh += (rl >> 32);
Roman Zippel6f6d6a12008-05-01 04:34:28 -070069 res.l.high = div64_u64(rh, c);
70 res.l.low = div64_u64(((mod_64(rh, c) << 32) + (rl & 0xffffffff)), c);
Sheng Yang78376992008-01-28 05:10:22 +080071 return res.ll;
72}
73
Radim Krčmář09edea72016-03-02 22:56:43 +010074static void pit_set_gate(struct kvm_pit *pit, int channel, u32 val)
Sheng Yang78376992008-01-28 05:10:22 +080075{
Radim Krčmář09edea72016-03-02 22:56:43 +010076 struct kvm_kpit_channel_state *c = &pit->pit_state.channels[channel];
Sheng Yang78376992008-01-28 05:10:22 +080077
Sheng Yang78376992008-01-28 05:10:22 +080078 switch (c->mode) {
79 default:
80 case 0:
81 case 4:
82 /* XXX: just disable/enable counting */
83 break;
84 case 1:
85 case 2:
86 case 3:
87 case 5:
88 /* Restart counting on rising edge. */
89 if (c->gate < val)
90 c->count_load_time = ktime_get();
91 break;
92 }
93
94 c->gate = val;
95}
96
Radim Krčmář09edea72016-03-02 22:56:43 +010097static int pit_get_gate(struct kvm_pit *pit, int channel)
Sheng Yang78376992008-01-28 05:10:22 +080098{
Radim Krčmář09edea72016-03-02 22:56:43 +010099 return pit->pit_state.channels[channel].gate;
Sheng Yang78376992008-01-28 05:10:22 +0800100}
101
Radim Krčmář09edea72016-03-02 22:56:43 +0100102static s64 __kpit_elapsed(struct kvm_pit *pit)
Marcelo Tosattifd668422009-02-23 10:57:40 -0300103{
104 s64 elapsed;
105 ktime_t remaining;
Radim Krčmář09edea72016-03-02 22:56:43 +0100106 struct kvm_kpit_state *ps = &pit->pit_state;
Marcelo Tosattifd668422009-02-23 10:57:40 -0300107
Avi Kivity26ef1922012-07-26 18:01:53 +0300108 if (!ps->period)
Marcelo Tosatti0ff77872009-07-02 20:02:15 -0300109 return 0;
110
Marcelo Tosattiede2ccc2009-04-08 13:14:19 -0300111 /*
112 * The Counter does not stop when it reaches zero. In
113 * Modes 0, 1, 4, and 5 the Counter ``wraps around'' to
114 * the highest count, either FFFF hex for binary counting
115 * or 9999 for BCD counting, and continues counting.
116 * Modes 2 and 3 are periodic; the Counter reloads
117 * itself with the initial count and continues counting
118 * from there.
119 */
Avi Kivity26ef1922012-07-26 18:01:53 +0300120 remaining = hrtimer_get_remaining(&ps->timer);
121 elapsed = ps->period - ktime_to_ns(remaining);
Marcelo Tosattifd668422009-02-23 10:57:40 -0300122
123 return elapsed;
124}
125
Radim Krčmář09edea72016-03-02 22:56:43 +0100126static s64 kpit_elapsed(struct kvm_pit *pit, struct kvm_kpit_channel_state *c,
Marcelo Tosattifd668422009-02-23 10:57:40 -0300127 int channel)
128{
129 if (channel == 0)
Radim Krčmář09edea72016-03-02 22:56:43 +0100130 return __kpit_elapsed(pit);
Marcelo Tosattifd668422009-02-23 10:57:40 -0300131
132 return ktime_to_ns(ktime_sub(ktime_get(), c->count_load_time));
133}
134
Radim Krčmář09edea72016-03-02 22:56:43 +0100135static int pit_get_count(struct kvm_pit *pit, int channel)
Sheng Yang78376992008-01-28 05:10:22 +0800136{
Radim Krčmář09edea72016-03-02 22:56:43 +0100137 struct kvm_kpit_channel_state *c = &pit->pit_state.channels[channel];
Sheng Yang78376992008-01-28 05:10:22 +0800138 s64 d, t;
139 int counter;
140
Radim Krčmář09edea72016-03-02 22:56:43 +0100141 t = kpit_elapsed(pit, c, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800142 d = muldiv64(t, KVM_PIT_FREQ, NSEC_PER_SEC);
143
144 switch (c->mode) {
145 case 0:
146 case 1:
147 case 4:
148 case 5:
149 counter = (c->count - d) & 0xffff;
150 break;
151 case 3:
152 /* XXX: may be incorrect for odd counts */
153 counter = c->count - (mod_64((2 * d), c->count));
154 break;
155 default:
156 counter = c->count - mod_64(d, c->count);
157 break;
158 }
159 return counter;
160}
161
Radim Krčmář09edea72016-03-02 22:56:43 +0100162static int pit_get_out(struct kvm_pit *pit, int channel)
Sheng Yang78376992008-01-28 05:10:22 +0800163{
Radim Krčmář09edea72016-03-02 22:56:43 +0100164 struct kvm_kpit_channel_state *c = &pit->pit_state.channels[channel];
Sheng Yang78376992008-01-28 05:10:22 +0800165 s64 d, t;
166 int out;
167
Radim Krčmář09edea72016-03-02 22:56:43 +0100168 t = kpit_elapsed(pit, c, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800169 d = muldiv64(t, KVM_PIT_FREQ, NSEC_PER_SEC);
170
171 switch (c->mode) {
172 default:
173 case 0:
174 out = (d >= c->count);
175 break;
176 case 1:
177 out = (d < c->count);
178 break;
179 case 2:
180 out = ((mod_64(d, c->count) == 0) && (d != 0));
181 break;
182 case 3:
183 out = (mod_64(d, c->count) < ((c->count + 1) >> 1));
184 break;
185 case 4:
186 case 5:
187 out = (d == c->count);
188 break;
189 }
190
191 return out;
192}
193
Radim Krčmář09edea72016-03-02 22:56:43 +0100194static void pit_latch_count(struct kvm_pit *pit, int channel)
Sheng Yang78376992008-01-28 05:10:22 +0800195{
Radim Krčmář09edea72016-03-02 22:56:43 +0100196 struct kvm_kpit_channel_state *c = &pit->pit_state.channels[channel];
Sheng Yang78376992008-01-28 05:10:22 +0800197
Sheng Yang78376992008-01-28 05:10:22 +0800198 if (!c->count_latched) {
Radim Krčmář09edea72016-03-02 22:56:43 +0100199 c->latched_count = pit_get_count(pit, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800200 c->count_latched = c->rw_mode;
201 }
202}
203
Radim Krčmář09edea72016-03-02 22:56:43 +0100204static void pit_latch_status(struct kvm_pit *pit, int channel)
Sheng Yang78376992008-01-28 05:10:22 +0800205{
Radim Krčmář09edea72016-03-02 22:56:43 +0100206 struct kvm_kpit_channel_state *c = &pit->pit_state.channels[channel];
Sheng Yang78376992008-01-28 05:10:22 +0800207
Sheng Yang78376992008-01-28 05:10:22 +0800208 if (!c->status_latched) {
209 /* TODO: Return NULL COUNT (bit 6). */
Radim Krčmář09edea72016-03-02 22:56:43 +0100210 c->status = ((pit_get_out(pit, channel) << 7) |
Sheng Yang78376992008-01-28 05:10:22 +0800211 (c->rw_mode << 4) |
212 (c->mode << 1) |
213 c->bcd);
214 c->status_latched = 1;
215 }
216}
217
Radim Krčmářa3e13112016-03-02 22:56:48 +0100218static inline struct kvm_pit *pit_state_to_pit(struct kvm_kpit_state *ps)
219{
220 return container_of(ps, struct kvm_pit, pit_state);
221}
222
Harvey Harrisonee032c92008-08-11 16:54:20 -0700223static void kvm_pit_ack_irq(struct kvm_irq_ack_notifier *kian)
Marcelo Tosatti3cf57fe2008-07-26 17:01:01 -0300224{
225 struct kvm_kpit_state *ps = container_of(kian, struct kvm_kpit_state,
226 irq_ack_notifier);
Radim Krčmářa3e13112016-03-02 22:56:48 +0100227 struct kvm_pit *pit = pit_state_to_pit(ps);
Chris Lalancette33572ac2010-06-16 17:11:11 -0400228
Radim Krčmářddf54502016-03-02 22:56:41 +0100229 atomic_set(&ps->irq_ack, 1);
230 /* irq_ack should be set before pending is read. Order accesses with
231 * inc(pending) in pit_timer_fn and xchg(irq_ack, 0) in pit_do_work.
232 */
233 smp_mb();
Radim Krčmář71474e22016-03-02 22:56:45 +0100234 if (atomic_dec_if_positive(&ps->pending) > 0)
Radim Krčmářa3e13112016-03-02 22:56:48 +0100235 queue_kthread_work(&pit->worker, &pit->expired);
Marcelo Tosatti3cf57fe2008-07-26 17:01:01 -0300236}
237
Marcelo Tosatti2f599712008-05-27 12:10:20 -0300238void __kvm_migrate_pit_timer(struct kvm_vcpu *vcpu)
239{
240 struct kvm_pit *pit = vcpu->kvm->arch.vpit;
241 struct hrtimer *timer;
242
Gleb Natapovc5af89b2009-06-09 15:56:26 +0300243 if (!kvm_vcpu_is_bsp(vcpu) || !pit)
Marcelo Tosatti2f599712008-05-27 12:10:20 -0300244 return;
245
Avi Kivity26ef1922012-07-26 18:01:53 +0300246 timer = &pit->pit_state.timer;
Andy Honig2febc832014-08-27 14:42:54 -0700247 mutex_lock(&pit->pit_state.lock);
Marcelo Tosatti2f599712008-05-27 12:10:20 -0300248 if (hrtimer_cancel(timer))
Arjan van de Venbeb20d522008-09-01 14:55:57 -0700249 hrtimer_start_expires(timer, HRTIMER_MODE_ABS);
Andy Honig2febc832014-08-27 14:42:54 -0700250 mutex_unlock(&pit->pit_state.lock);
Marcelo Tosatti2f599712008-05-27 12:10:20 -0300251}
252
Chris Lalancette33572ac2010-06-16 17:11:11 -0400253static void destroy_pit_timer(struct kvm_pit *pit)
Sheng Yang78376992008-01-28 05:10:22 +0800254{
Avi Kivity26ef1922012-07-26 18:01:53 +0300255 hrtimer_cancel(&pit->pit_state.timer);
Jan Kiszkab6ddf052012-04-24 16:40:17 +0200256 flush_kthread_work(&pit->expired);
Sheng Yang78376992008-01-28 05:10:22 +0800257}
258
Jan Kiszkab6ddf052012-04-24 16:40:17 +0200259static void pit_do_work(struct kthread_work *work)
Chris Lalancette33572ac2010-06-16 17:11:11 -0400260{
261 struct kvm_pit *pit = container_of(work, struct kvm_pit, expired);
262 struct kvm *kvm = pit->kvm;
263 struct kvm_vcpu *vcpu;
264 int i;
265 struct kvm_kpit_state *ps = &pit->pit_state;
Chris Lalancette33572ac2010-06-16 17:11:11 -0400266
Radim Krčmářa0aace52016-03-02 22:56:52 +0100267 if (atomic_read(&ps->reinject) && !atomic_xchg(&ps->irq_ack, 0))
Radim Krčmářddf54502016-03-02 22:56:41 +0100268 return;
269
Radim Krčmář4a2095d2016-03-02 22:56:49 +0100270 kvm_set_irq(kvm, pit->irq_source_id, 0, 1, false);
271 kvm_set_irq(kvm, pit->irq_source_id, 0, 0, false);
Radim Krčmářddf54502016-03-02 22:56:41 +0100272
273 /*
274 * Provides NMI watchdog support via Virtual Wire mode.
275 * The route is: PIT -> LVT0 in NMI mode.
276 *
277 * Note: Our Virtual Wire implementation does not follow
278 * the MP specification. We propagate a PIT interrupt to all
279 * VCPUs and only when LVT0 is in NMI mode. The interrupt can
280 * also be simultaneously delivered through PIC and IOAPIC.
Chris Lalancette33572ac2010-06-16 17:11:11 -0400281 */
Radim Krčmářddf54502016-03-02 22:56:41 +0100282 if (atomic_read(&kvm->arch.vapics_in_nmi_mode) > 0)
283 kvm_for_each_vcpu(i, vcpu, kvm)
284 kvm_apic_nmi_wd_deliver(vcpu);
Chris Lalancette33572ac2010-06-16 17:11:11 -0400285}
286
287static enum hrtimer_restart pit_timer_fn(struct hrtimer *data)
288{
Avi Kivity26ef1922012-07-26 18:01:53 +0300289 struct kvm_kpit_state *ps = container_of(data, struct kvm_kpit_state, timer);
Radim Krčmářa3e13112016-03-02 22:56:48 +0100290 struct kvm_pit *pt = pit_state_to_pit(ps);
Chris Lalancette33572ac2010-06-16 17:11:11 -0400291
Radim Krčmářa0aace52016-03-02 22:56:52 +0100292 if (atomic_read(&ps->reinject))
Avi Kivity26ef1922012-07-26 18:01:53 +0300293 atomic_inc(&ps->pending);
Radim Krčmář7dd0fdf2016-03-02 22:56:38 +0100294
295 queue_kthread_work(&pt->worker, &pt->expired);
Chris Lalancette33572ac2010-06-16 17:11:11 -0400296
Avi Kivity26ef1922012-07-26 18:01:53 +0300297 if (ps->is_periodic) {
298 hrtimer_add_expires_ns(&ps->timer, ps->period);
Chris Lalancette33572ac2010-06-16 17:11:11 -0400299 return HRTIMER_RESTART;
300 } else
301 return HRTIMER_NORESTART;
302}
303
Radim Krčmářfd700a02016-03-02 22:56:40 +0100304static inline void kvm_pit_reset_reinject(struct kvm_pit *pit)
305{
306 atomic_set(&pit->pit_state.pending, 0);
Radim Krčmářddf54502016-03-02 22:56:41 +0100307 atomic_set(&pit->pit_state.irq_ack, 1);
Radim Krčmářfd700a02016-03-02 22:56:40 +0100308}
309
Radim Krčmář71474e22016-03-02 22:56:45 +0100310void kvm_pit_set_reinject(struct kvm_pit *pit, bool reinject)
311{
312 struct kvm_kpit_state *ps = &pit->pit_state;
313 struct kvm *kvm = pit->kvm;
314
Radim Krčmářa0aace52016-03-02 22:56:52 +0100315 if (atomic_read(&ps->reinject) == reinject)
Radim Krčmář71474e22016-03-02 22:56:45 +0100316 return;
317
318 if (reinject) {
319 /* The initial state is preserved while ps->reinject == 0. */
320 kvm_pit_reset_reinject(pit);
321 kvm_register_irq_ack_notifier(kvm, &ps->irq_ack_notifier);
322 kvm_register_irq_mask_notifier(kvm, 0, &pit->mask_notifier);
323 } else {
324 kvm_unregister_irq_ack_notifier(kvm, &ps->irq_ack_notifier);
325 kvm_unregister_irq_mask_notifier(kvm, 0, &pit->mask_notifier);
326 }
327
Radim Krčmářa0aace52016-03-02 22:56:52 +0100328 atomic_set(&ps->reinject, reinject);
Radim Krčmář71474e22016-03-02 22:56:45 +0100329}
330
Radim Krčmář09edea72016-03-02 22:56:43 +0100331static void create_pit_timer(struct kvm_pit *pit, u32 val, int is_period)
Sheng Yang78376992008-01-28 05:10:22 +0800332{
Radim Krčmář09edea72016-03-02 22:56:43 +0100333 struct kvm_kpit_state *ps = &pit->pit_state;
334 struct kvm *kvm = pit->kvm;
Sheng Yang78376992008-01-28 05:10:22 +0800335 s64 interval;
336
Steve Rutherford49df6392015-07-29 23:21:40 -0700337 if (!ioapic_in_kernel(kvm) ||
338 ps->flags & KVM_PIT_FLAGS_HPET_LEGACY)
Jan Kiszka0924ab22011-12-14 19:25:13 +0100339 return;
340
Sheng Yang78376992008-01-28 05:10:22 +0800341 interval = muldiv64(val, NSEC_PER_SEC, KVM_PIT_FREQ);
342
Joe Perchesa78d96262009-12-09 10:45:35 -0800343 pr_debug("create pit timer, interval is %llu nsec\n", interval);
Sheng Yang78376992008-01-28 05:10:22 +0800344
345 /* TODO The new value only affected after the retriggered */
Avi Kivity26ef1922012-07-26 18:01:53 +0300346 hrtimer_cancel(&ps->timer);
Radim Krčmářa3e13112016-03-02 22:56:48 +0100347 flush_kthread_work(&pit->expired);
Avi Kivity26ef1922012-07-26 18:01:53 +0300348 ps->period = interval;
Marcelo Tosattid3c7b772009-02-23 10:57:41 -0300349 ps->is_periodic = is_period;
350
Radim Krčmář09edea72016-03-02 22:56:43 +0100351 kvm_pit_reset_reinject(pit);
Sheng Yang78376992008-01-28 05:10:22 +0800352
Marcelo Tosatti9ed96e82014-01-06 12:00:02 -0200353 /*
354 * Do not allow the guest to program periodic timers with small
355 * interval, since the hrtimers are not throttled by the host
356 * scheduler.
357 */
358 if (ps->is_periodic) {
359 s64 min_period = min_timer_period_us * 1000LL;
360
361 if (ps->period < min_period) {
362 pr_info_ratelimited(
363 "kvm: requested %lld ns "
364 "i8254 timer period limited to %lld ns\n",
365 ps->period, min_period);
366 ps->period = min_period;
367 }
368 }
369
Avi Kivity26ef1922012-07-26 18:01:53 +0300370 hrtimer_start(&ps->timer, ktime_add_ns(ktime_get(), interval),
Sheng Yang78376992008-01-28 05:10:22 +0800371 HRTIMER_MODE_ABS);
372}
373
Radim Krčmář09edea72016-03-02 22:56:43 +0100374static void pit_load_count(struct kvm_pit *pit, int channel, u32 val)
Sheng Yang78376992008-01-28 05:10:22 +0800375{
Radim Krčmář09edea72016-03-02 22:56:43 +0100376 struct kvm_kpit_state *ps = &pit->pit_state;
Sheng Yang78376992008-01-28 05:10:22 +0800377
Joe Perchesa78d96262009-12-09 10:45:35 -0800378 pr_debug("load_count val is %d, channel is %d\n", val, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800379
380 /*
Marcelo Tosattiede2ccc2009-04-08 13:14:19 -0300381 * The largest possible initial count is 0; this is equivalent
382 * to 216 for binary counting and 104 for BCD counting.
Sheng Yang78376992008-01-28 05:10:22 +0800383 */
384 if (val == 0)
385 val = 0x10000;
386
Sheng Yang78376992008-01-28 05:10:22 +0800387 ps->channels[channel].count = val;
388
Marcelo Tosattifd668422009-02-23 10:57:40 -0300389 if (channel != 0) {
390 ps->channels[channel].count_load_time = ktime_get();
Sheng Yang78376992008-01-28 05:10:22 +0800391 return;
Marcelo Tosattifd668422009-02-23 10:57:40 -0300392 }
Sheng Yang78376992008-01-28 05:10:22 +0800393
394 /* Two types of timer
395 * mode 1 is one shot, mode 2 is period, otherwise del timer */
396 switch (ps->channels[0].mode) {
Marcelo Tosattiede2ccc2009-04-08 13:14:19 -0300397 case 0:
Sheng Yang78376992008-01-28 05:10:22 +0800398 case 1:
Marcelo Tosattiece15ba2008-04-30 13:23:54 -0300399 /* FIXME: enhance mode 4 precision */
400 case 4:
Radim Krčmář09edea72016-03-02 22:56:43 +0100401 create_pit_timer(pit, val, 0);
Sheng Yang78376992008-01-28 05:10:22 +0800402 break;
403 case 2:
Aurelien Jarnof6975542008-05-02 17:02:23 +0200404 case 3:
Radim Krčmář09edea72016-03-02 22:56:43 +0100405 create_pit_timer(pit, val, 1);
Sheng Yang78376992008-01-28 05:10:22 +0800406 break;
407 default:
Radim Krčmář09edea72016-03-02 22:56:43 +0100408 destroy_pit_timer(pit);
Sheng Yang78376992008-01-28 05:10:22 +0800409 }
410}
411
Radim Krčmář09edea72016-03-02 22:56:43 +0100412void kvm_pit_load_count(struct kvm_pit *pit, int channel, u32 val,
413 int hpet_legacy_start)
Sheng Yange0f63cb2008-03-04 00:50:59 +0800414{
Beth Kone9f42752009-07-07 11:50:38 -0400415 u8 saved_mode;
Radim Krčmářb69d9202016-03-02 22:56:42 +0100416
Radim Krčmář09edea72016-03-02 22:56:43 +0100417 WARN_ON_ONCE(!mutex_is_locked(&pit->pit_state.lock));
Radim Krčmářb69d9202016-03-02 22:56:42 +0100418
Beth Kone9f42752009-07-07 11:50:38 -0400419 if (hpet_legacy_start) {
420 /* save existing mode for later reenablement */
Paolo Bonzinie5e57e72016-01-07 13:50:38 +0100421 WARN_ON(channel != 0);
Radim Krčmář09edea72016-03-02 22:56:43 +0100422 saved_mode = pit->pit_state.channels[0].mode;
423 pit->pit_state.channels[0].mode = 0xff; /* disable timer */
424 pit_load_count(pit, channel, val);
425 pit->pit_state.channels[0].mode = saved_mode;
Beth Kone9f42752009-07-07 11:50:38 -0400426 } else {
Radim Krčmář09edea72016-03-02 22:56:43 +0100427 pit_load_count(pit, channel, val);
Beth Kone9f42752009-07-07 11:50:38 -0400428 }
Sheng Yange0f63cb2008-03-04 00:50:59 +0800429}
430
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400431static inline struct kvm_pit *dev_to_pit(struct kvm_io_device *dev)
432{
433 return container_of(dev, struct kvm_pit, dev);
434}
435
436static inline struct kvm_pit *speaker_to_pit(struct kvm_io_device *dev)
437{
438 return container_of(dev, struct kvm_pit, speaker_dev);
439}
440
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300441static inline int pit_in_range(gpa_t addr)
442{
443 return ((addr >= KVM_PIT_BASE_ADDRESS) &&
444 (addr < KVM_PIT_BASE_ADDRESS + KVM_PIT_MEM_LENGTH));
445}
446
Nikolay Nikolaeve32edf42015-03-26 14:39:28 +0000447static int pit_ioport_write(struct kvm_vcpu *vcpu,
448 struct kvm_io_device *this,
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300449 gpa_t addr, int len, const void *data)
Sheng Yang78376992008-01-28 05:10:22 +0800450{
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400451 struct kvm_pit *pit = dev_to_pit(this);
Sheng Yang78376992008-01-28 05:10:22 +0800452 struct kvm_kpit_state *pit_state = &pit->pit_state;
Sheng Yang78376992008-01-28 05:10:22 +0800453 int channel, access;
454 struct kvm_kpit_channel_state *s;
455 u32 val = *(u32 *) data;
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300456 if (!pit_in_range(addr))
457 return -EOPNOTSUPP;
Sheng Yang78376992008-01-28 05:10:22 +0800458
459 val &= 0xff;
460 addr &= KVM_PIT_CHANNEL_MASK;
461
462 mutex_lock(&pit_state->lock);
463
464 if (val != 0)
Joe Perchesa78d96262009-12-09 10:45:35 -0800465 pr_debug("write addr is 0x%x, len is %d, val is 0x%x\n",
466 (unsigned int)addr, len, val);
Sheng Yang78376992008-01-28 05:10:22 +0800467
468 if (addr == 3) {
469 channel = val >> 6;
470 if (channel == 3) {
471 /* Read-Back Command. */
472 for (channel = 0; channel < 3; channel++) {
473 s = &pit_state->channels[channel];
474 if (val & (2 << channel)) {
475 if (!(val & 0x20))
Radim Krčmář09edea72016-03-02 22:56:43 +0100476 pit_latch_count(pit, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800477 if (!(val & 0x10))
Radim Krčmář09edea72016-03-02 22:56:43 +0100478 pit_latch_status(pit, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800479 }
480 }
481 } else {
482 /* Select Counter <channel>. */
483 s = &pit_state->channels[channel];
484 access = (val >> 4) & KVM_PIT_CHANNEL_MASK;
485 if (access == 0) {
Radim Krčmář09edea72016-03-02 22:56:43 +0100486 pit_latch_count(pit, channel);
Sheng Yang78376992008-01-28 05:10:22 +0800487 } else {
488 s->rw_mode = access;
489 s->read_state = access;
490 s->write_state = access;
491 s->mode = (val >> 1) & 7;
492 if (s->mode > 5)
493 s->mode -= 4;
494 s->bcd = val & 1;
495 }
496 }
497 } else {
498 /* Write Count. */
499 s = &pit_state->channels[addr];
500 switch (s->write_state) {
501 default:
502 case RW_STATE_LSB:
Radim Krčmář09edea72016-03-02 22:56:43 +0100503 pit_load_count(pit, addr, val);
Sheng Yang78376992008-01-28 05:10:22 +0800504 break;
505 case RW_STATE_MSB:
Radim Krčmář09edea72016-03-02 22:56:43 +0100506 pit_load_count(pit, addr, val << 8);
Sheng Yang78376992008-01-28 05:10:22 +0800507 break;
508 case RW_STATE_WORD0:
509 s->write_latch = val;
510 s->write_state = RW_STATE_WORD1;
511 break;
512 case RW_STATE_WORD1:
Radim Krčmář09edea72016-03-02 22:56:43 +0100513 pit_load_count(pit, addr, s->write_latch | (val << 8));
Sheng Yang78376992008-01-28 05:10:22 +0800514 s->write_state = RW_STATE_WORD0;
515 break;
516 }
517 }
518
519 mutex_unlock(&pit_state->lock);
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300520 return 0;
Sheng Yang78376992008-01-28 05:10:22 +0800521}
522
Nikolay Nikolaeve32edf42015-03-26 14:39:28 +0000523static int pit_ioport_read(struct kvm_vcpu *vcpu,
524 struct kvm_io_device *this,
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300525 gpa_t addr, int len, void *data)
Sheng Yang78376992008-01-28 05:10:22 +0800526{
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400527 struct kvm_pit *pit = dev_to_pit(this);
Sheng Yang78376992008-01-28 05:10:22 +0800528 struct kvm_kpit_state *pit_state = &pit->pit_state;
Sheng Yang78376992008-01-28 05:10:22 +0800529 int ret, count;
530 struct kvm_kpit_channel_state *s;
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300531 if (!pit_in_range(addr))
532 return -EOPNOTSUPP;
Sheng Yang78376992008-01-28 05:10:22 +0800533
534 addr &= KVM_PIT_CHANNEL_MASK;
Marcelo Tosattiee73f652010-01-29 17:28:41 -0200535 if (addr == 3)
536 return 0;
537
Sheng Yang78376992008-01-28 05:10:22 +0800538 s = &pit_state->channels[addr];
539
540 mutex_lock(&pit_state->lock);
541
542 if (s->status_latched) {
543 s->status_latched = 0;
544 ret = s->status;
545 } else if (s->count_latched) {
546 switch (s->count_latched) {
547 default:
548 case RW_STATE_LSB:
549 ret = s->latched_count & 0xff;
550 s->count_latched = 0;
551 break;
552 case RW_STATE_MSB:
553 ret = s->latched_count >> 8;
554 s->count_latched = 0;
555 break;
556 case RW_STATE_WORD0:
557 ret = s->latched_count & 0xff;
558 s->count_latched = RW_STATE_MSB;
559 break;
560 }
561 } else {
562 switch (s->read_state) {
563 default:
564 case RW_STATE_LSB:
Radim Krčmář09edea72016-03-02 22:56:43 +0100565 count = pit_get_count(pit, addr);
Sheng Yang78376992008-01-28 05:10:22 +0800566 ret = count & 0xff;
567 break;
568 case RW_STATE_MSB:
Radim Krčmář09edea72016-03-02 22:56:43 +0100569 count = pit_get_count(pit, addr);
Sheng Yang78376992008-01-28 05:10:22 +0800570 ret = (count >> 8) & 0xff;
571 break;
572 case RW_STATE_WORD0:
Radim Krčmář09edea72016-03-02 22:56:43 +0100573 count = pit_get_count(pit, addr);
Sheng Yang78376992008-01-28 05:10:22 +0800574 ret = count & 0xff;
575 s->read_state = RW_STATE_WORD1;
576 break;
577 case RW_STATE_WORD1:
Radim Krčmář09edea72016-03-02 22:56:43 +0100578 count = pit_get_count(pit, addr);
Sheng Yang78376992008-01-28 05:10:22 +0800579 ret = (count >> 8) & 0xff;
580 s->read_state = RW_STATE_WORD0;
581 break;
582 }
583 }
584
585 if (len > sizeof(ret))
586 len = sizeof(ret);
587 memcpy(data, (char *)&ret, len);
588
589 mutex_unlock(&pit_state->lock);
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300590 return 0;
Sheng Yang78376992008-01-28 05:10:22 +0800591}
592
Nikolay Nikolaeve32edf42015-03-26 14:39:28 +0000593static int speaker_ioport_write(struct kvm_vcpu *vcpu,
594 struct kvm_io_device *this,
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300595 gpa_t addr, int len, const void *data)
Sheng Yang78376992008-01-28 05:10:22 +0800596{
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400597 struct kvm_pit *pit = speaker_to_pit(this);
Sheng Yang78376992008-01-28 05:10:22 +0800598 struct kvm_kpit_state *pit_state = &pit->pit_state;
Sheng Yang78376992008-01-28 05:10:22 +0800599 u32 val = *(u32 *) data;
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300600 if (addr != KVM_SPEAKER_BASE_ADDRESS)
601 return -EOPNOTSUPP;
Sheng Yang78376992008-01-28 05:10:22 +0800602
603 mutex_lock(&pit_state->lock);
604 pit_state->speaker_data_on = (val >> 1) & 1;
Radim Krčmář09edea72016-03-02 22:56:43 +0100605 pit_set_gate(pit, 2, val & 1);
Sheng Yang78376992008-01-28 05:10:22 +0800606 mutex_unlock(&pit_state->lock);
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300607 return 0;
Sheng Yang78376992008-01-28 05:10:22 +0800608}
609
Nikolay Nikolaeve32edf42015-03-26 14:39:28 +0000610static int speaker_ioport_read(struct kvm_vcpu *vcpu,
611 struct kvm_io_device *this,
612 gpa_t addr, int len, void *data)
Sheng Yang78376992008-01-28 05:10:22 +0800613{
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400614 struct kvm_pit *pit = speaker_to_pit(this);
Sheng Yang78376992008-01-28 05:10:22 +0800615 struct kvm_kpit_state *pit_state = &pit->pit_state;
Sheng Yang78376992008-01-28 05:10:22 +0800616 unsigned int refresh_clock;
617 int ret;
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300618 if (addr != KVM_SPEAKER_BASE_ADDRESS)
619 return -EOPNOTSUPP;
Sheng Yang78376992008-01-28 05:10:22 +0800620
621 /* Refresh clock toggles at about 15us. We approximate as 2^14ns. */
622 refresh_clock = ((unsigned int)ktime_to_ns(ktime_get()) >> 14) & 1;
623
624 mutex_lock(&pit_state->lock);
Radim Krčmář09edea72016-03-02 22:56:43 +0100625 ret = ((pit_state->speaker_data_on << 1) | pit_get_gate(pit, 2) |
626 (pit_get_out(pit, 2) << 5) | (refresh_clock << 4));
Sheng Yang78376992008-01-28 05:10:22 +0800627 if (len > sizeof(ret))
628 len = sizeof(ret);
629 memcpy(data, (char *)&ret, len);
630 mutex_unlock(&pit_state->lock);
Michael S. Tsirkinbda90202009-06-29 22:24:32 +0300631 return 0;
Sheng Yang78376992008-01-28 05:10:22 +0800632}
633
Radim Krčmářb39c90b2016-03-02 22:56:44 +0100634static void kvm_pit_reset(struct kvm_pit *pit)
Sheng Yang78376992008-01-28 05:10:22 +0800635{
636 int i;
Sheng Yang308b0f22008-03-13 10:22:26 +0800637 struct kvm_kpit_channel_state *c;
638
Beth Kone9f42752009-07-07 11:50:38 -0400639 pit->pit_state.flags = 0;
Sheng Yang308b0f22008-03-13 10:22:26 +0800640 for (i = 0; i < 3; i++) {
641 c = &pit->pit_state.channels[i];
642 c->mode = 0xff;
643 c->gate = (i != 2);
Radim Krčmář09edea72016-03-02 22:56:43 +0100644 pit_load_count(pit, i, 0);
Sheng Yang308b0f22008-03-13 10:22:26 +0800645 }
Sheng Yang308b0f22008-03-13 10:22:26 +0800646
Radim Krčmářfd700a02016-03-02 22:56:40 +0100647 kvm_pit_reset_reinject(pit);
Sheng Yang308b0f22008-03-13 10:22:26 +0800648}
649
Avi Kivity4780c6592009-01-04 18:06:06 +0200650static void pit_mask_notifer(struct kvm_irq_mask_notifier *kimn, bool mask)
651{
652 struct kvm_pit *pit = container_of(kimn, struct kvm_pit, mask_notifier);
653
Radim Krčmářfd700a02016-03-02 22:56:40 +0100654 if (!mask)
655 kvm_pit_reset_reinject(pit);
Avi Kivity4780c6592009-01-04 18:06:06 +0200656}
657
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400658static const struct kvm_io_device_ops pit_dev_ops = {
659 .read = pit_ioport_read,
660 .write = pit_ioport_write,
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400661};
662
663static const struct kvm_io_device_ops speaker_dev_ops = {
664 .read = speaker_ioport_read,
665 .write = speaker_ioport_write,
Gregory Haskinsd76685c2009-06-01 12:54:50 -0400666};
667
Marcelo Tosatti79fac952009-12-23 14:35:26 -0200668/* Caller must hold slots_lock */
Jan Kiszkac5ff41c2009-05-14 22:42:53 +0200669struct kvm_pit *kvm_create_pit(struct kvm *kvm, u32 flags)
Sheng Yang308b0f22008-03-13 10:22:26 +0800670{
Sheng Yang78376992008-01-28 05:10:22 +0800671 struct kvm_pit *pit;
672 struct kvm_kpit_state *pit_state;
Jan Kiszkab6ddf052012-04-24 16:40:17 +0200673 struct pid *pid;
674 pid_t pid_nr;
Gregory Haskins090b7af2009-07-07 17:08:44 -0400675 int ret;
Sheng Yang78376992008-01-28 05:10:22 +0800676
677 pit = kzalloc(sizeof(struct kvm_pit), GFP_KERNEL);
678 if (!pit)
679 return NULL;
680
Sheng Yang5550af42008-10-15 20:15:06 +0800681 pit->irq_source_id = kvm_request_irq_source_id(kvm);
Radim Krčmář10d24822016-03-02 22:56:46 +0100682 if (pit->irq_source_id < 0)
683 goto fail_request;
Sheng Yang5550af42008-10-15 20:15:06 +0800684
Sheng Yang78376992008-01-28 05:10:22 +0800685 mutex_init(&pit->pit_state.lock);
Chris Lalancette33572ac2010-06-16 17:11:11 -0400686
Jan Kiszkab6ddf052012-04-24 16:40:17 +0200687 pid = get_pid(task_tgid(current));
688 pid_nr = pid_vnr(pid);
689 put_pid(pid);
690
691 init_kthread_worker(&pit->worker);
692 pit->worker_task = kthread_run(kthread_worker_fn, &pit->worker,
693 "kvm-pit/%d", pid_nr);
Radim Krčmář10d24822016-03-02 22:56:46 +0100694 if (IS_ERR(pit->worker_task))
695 goto fail_kthread;
696
Jan Kiszkab6ddf052012-04-24 16:40:17 +0200697 init_kthread_work(&pit->expired, pit_do_work);
Sheng Yang78376992008-01-28 05:10:22 +0800698
Sheng Yang78376992008-01-28 05:10:22 +0800699 pit->kvm = kvm;
700
701 pit_state = &pit->pit_state;
Avi Kivity26ef1922012-07-26 18:01:53 +0300702 hrtimer_init(&pit_state->timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
Radim Krčmářab4c1472016-03-02 22:56:51 +0100703 pit_state->timer.function = pit_timer_fn;
Radim Krčmář71474e22016-03-02 22:56:45 +0100704
Marcelo Tosatti3cf57fe2008-07-26 17:01:01 -0300705 pit_state->irq_ack_notifier.gsi = 0;
706 pit_state->irq_ack_notifier.irq_acked = kvm_pit_ack_irq;
Radim Krčmář71474e22016-03-02 22:56:45 +0100707 pit->mask_notifier.func = pit_mask_notifer;
Sheng Yang78376992008-01-28 05:10:22 +0800708
Sheng Yang308b0f22008-03-13 10:22:26 +0800709 kvm_pit_reset(pit);
Sheng Yang78376992008-01-28 05:10:22 +0800710
Radim Krčmář71474e22016-03-02 22:56:45 +0100711 kvm_pit_set_reinject(pit, true);
Avi Kivity4780c6592009-01-04 18:06:06 +0200712
Gregory Haskins6b66ac12009-06-01 12:54:56 -0400713 kvm_iodevice_init(&pit->dev, &pit_dev_ops);
Sasha Levin743eeb02011-07-27 16:00:48 +0300714 ret = kvm_io_bus_register_dev(kvm, KVM_PIO_BUS, KVM_PIT_BASE_ADDRESS,
715 KVM_PIT_MEM_LENGTH, &pit->dev);
Gregory Haskins090b7af2009-07-07 17:08:44 -0400716 if (ret < 0)
Radim Krčmář10d24822016-03-02 22:56:46 +0100717 goto fail_register_pit;
Gregory Haskins6b66ac12009-06-01 12:54:56 -0400718
719 if (flags & KVM_PIT_SPEAKER_DUMMY) {
720 kvm_iodevice_init(&pit->speaker_dev, &speaker_dev_ops);
Marcelo Tosattie93f8a02009-12-23 14:35:24 -0200721 ret = kvm_io_bus_register_dev(kvm, KVM_PIO_BUS,
Sasha Levin743eeb02011-07-27 16:00:48 +0300722 KVM_SPEAKER_BASE_ADDRESS, 4,
723 &pit->speaker_dev);
Gregory Haskins090b7af2009-07-07 17:08:44 -0400724 if (ret < 0)
Radim Krčmář10d24822016-03-02 22:56:46 +0100725 goto fail_register_speaker;
Gregory Haskins6b66ac12009-06-01 12:54:56 -0400726 }
727
Sheng Yang78376992008-01-28 05:10:22 +0800728 return pit;
Gregory Haskins090b7af2009-07-07 17:08:44 -0400729
Radim Krčmář10d24822016-03-02 22:56:46 +0100730fail_register_speaker:
Marcelo Tosattie93f8a02009-12-23 14:35:24 -0200731 kvm_io_bus_unregister_dev(kvm, KVM_PIO_BUS, &pit->dev);
Radim Krčmář10d24822016-03-02 22:56:46 +0100732fail_register_pit:
Radim Krčmář71474e22016-03-02 22:56:45 +0100733 kvm_pit_set_reinject(pit, false);
Jan Kiszkab6ddf052012-04-24 16:40:17 +0200734 kthread_stop(pit->worker_task);
Radim Krčmář10d24822016-03-02 22:56:46 +0100735fail_kthread:
736 kvm_free_irq_source_id(kvm, pit->irq_source_id);
737fail_request:
Gregory Haskins090b7af2009-07-07 17:08:44 -0400738 kfree(pit);
739 return NULL;
Sheng Yang78376992008-01-28 05:10:22 +0800740}
741
742void kvm_free_pit(struct kvm *kvm)
743{
Radim Krčmář08e5ccf32016-03-02 22:56:47 +0100744 struct kvm_pit *pit = kvm->arch.vpit;
Sheng Yang78376992008-01-28 05:10:22 +0800745
Radim Krčmář08e5ccf32016-03-02 22:56:47 +0100746 if (pit) {
747 kvm_io_bus_unregister_dev(kvm, KVM_PIO_BUS, &pit->dev);
748 kvm_io_bus_unregister_dev(kvm, KVM_PIO_BUS, &pit->speaker_dev);
749 kvm_pit_set_reinject(pit, false);
750 hrtimer_cancel(&pit->pit_state.timer);
751 flush_kthread_work(&pit->expired);
752 kthread_stop(pit->worker_task);
753 kvm_free_irq_source_id(kvm, pit->irq_source_id);
754 kfree(pit);
Sheng Yang78376992008-01-28 05:10:22 +0800755 }
756}