blob: 20e56c4206326a8e1f58e35a167807cc74f55db4 [file] [log] [blame]
Marc Zyngier53e72402013-01-23 13:21:58 -05001/*
2 * Copyright (C) 2012 ARM Ltd.
3 * Author: Marc Zyngier <marc.zyngier@arm.com>
4 *
5 * This program is free software; you can redistribute it and/or modify
6 * it under the terms of the GNU General Public License version 2 as
7 * published by the Free Software Foundation.
8 *
9 * This program is distributed in the hope that it will be useful,
10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 * GNU General Public License for more details.
13 *
14 * You should have received a copy of the GNU General Public License
15 * along with this program; if not, write to the Free Software
16 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
17 */
18
19#include <linux/cpu.h>
Marc Zyngier53e72402013-01-23 13:21:58 -050020#include <linux/kvm.h>
21#include <linux/kvm_host.h>
22#include <linux/interrupt.h>
Christoffer Dallb452cb52016-06-04 15:41:00 +010023#include <linux/irq.h>
Christoffer Dall99a1db72017-05-02 20:19:15 +020024#include <linux/uaccess.h>
Marc Zyngier53e72402013-01-23 13:21:58 -050025
Mark Rutland372b7c12013-03-27 15:56:11 +000026#include <clocksource/arm_arch_timer.h>
Marc Zyngier53e72402013-01-23 13:21:58 -050027#include <asm/arch_timer.h>
Jintack Lim488f94d2016-12-01 14:32:05 -050028#include <asm/kvm_hyp.h>
Marc Zyngier53e72402013-01-23 13:21:58 -050029
Marc Zyngier7275acd2013-05-14 14:31:01 +010030#include <kvm/arm_vgic.h>
31#include <kvm/arm_arch_timer.h>
Marc Zyngier53e72402013-01-23 13:21:58 -050032
Christoffer Dalle21f0912015-08-30 13:57:20 +020033#include "trace.h"
34
Marc Zyngier53e72402013-01-23 13:21:58 -050035static struct timecounter *timecounter;
Anup Patel5ae7f872013-04-30 12:02:15 +053036static unsigned int host_vtimer_irq;
Marc Zyngiercabdc5c2016-08-16 15:03:02 +010037static u32 host_vtimer_irq_flags;
Marc Zyngier53e72402013-01-23 13:21:58 -050038
Christoffer Dall85e69ad2017-05-02 20:14:06 +020039static const struct kvm_irq_level default_ptimer_irq = {
40 .irq = 30,
41 .level = 1,
42};
43
44static const struct kvm_irq_level default_vtimer_irq = {
45 .irq = 27,
46 .level = 1,
47};
48
Christoffer Dallb103cc32016-10-16 20:30:38 +020049static bool kvm_timer_irq_can_fire(struct arch_timer_context *timer_ctx);
50static void kvm_timer_update_irq(struct kvm_vcpu *vcpu, bool new_level,
51 struct arch_timer_context *timer_ctx);
Marc Zyngier9b4a3002016-01-29 19:04:48 +000052
Jintack Lim7b6b4632017-02-03 10:20:08 -050053u64 kvm_phys_timer_read(void)
Marc Zyngier53e72402013-01-23 13:21:58 -050054{
55 return timecounter->cc->read(timecounter->cc);
56}
57
Christoffer Dall8409a062017-06-17 01:09:19 -070058static void soft_timer_start(struct hrtimer *hrt, u64 ns)
Marc Zyngier53e72402013-01-23 13:21:58 -050059{
Christoffer Dall8409a062017-06-17 01:09:19 -070060 hrtimer_start(hrt, ktime_add_ns(ktime_get(), ns),
Marc Zyngier53e72402013-01-23 13:21:58 -050061 HRTIMER_MODE_ABS);
62}
63
Christoffer Dall8409a062017-06-17 01:09:19 -070064static void soft_timer_cancel(struct hrtimer *hrt, struct work_struct *work)
Marc Zyngier53e72402013-01-23 13:21:58 -050065{
Christoffer Dall8409a062017-06-17 01:09:19 -070066 hrtimer_cancel(hrt);
Christoffer Dallf2a21292017-06-18 00:32:08 -070067 if (work)
68 cancel_work_sync(work);
Marc Zyngier53e72402013-01-23 13:21:58 -050069}
70
Christoffer Dallb103cc32016-10-16 20:30:38 +020071static void kvm_vtimer_update_mask_user(struct kvm_vcpu *vcpu)
72{
73 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
74
75 /*
76 * When using a userspace irqchip with the architected timers, we must
77 * prevent continuously exiting from the guest, and therefore mask the
78 * physical interrupt by disabling it on the host interrupt controller
79 * when the virtual level is high, such that the guest can make
80 * forward progress. Once we detect the output level being
81 * de-asserted, we unmask the interrupt again so that we exit from the
82 * guest when the timer fires.
83 */
84 if (vtimer->irq.level)
85 disable_percpu_irq(host_vtimer_irq);
86 else
87 enable_percpu_irq(host_vtimer_irq, 0);
88}
89
Marc Zyngier53e72402013-01-23 13:21:58 -050090static irqreturn_t kvm_arch_timer_handler(int irq, void *dev_id)
91{
92 struct kvm_vcpu *vcpu = *(struct kvm_vcpu **)dev_id;
Christoffer Dallb103cc32016-10-16 20:30:38 +020093 struct arch_timer_context *vtimer;
Marc Zyngier53e72402013-01-23 13:21:58 -050094
Christoffer Dallb103cc32016-10-16 20:30:38 +020095 if (!vcpu) {
96 pr_warn_once("Spurious arch timer IRQ on non-VCPU thread\n");
97 return IRQ_NONE;
98 }
99 vtimer = vcpu_vtimer(vcpu);
100
101 if (!vtimer->irq.level) {
102 vtimer->cnt_ctl = read_sysreg_el0(cntv_ctl);
103 if (kvm_timer_irq_can_fire(vtimer))
104 kvm_timer_update_irq(vcpu, true, vtimer);
105 }
106
107 if (unlikely(!irqchip_in_kernel(vcpu->kvm)))
108 kvm_vtimer_update_mask_user(vcpu);
109
Marc Zyngier53e72402013-01-23 13:21:58 -0500110 return IRQ_HANDLED;
111}
112
Christoffer Dall1a748472015-03-13 17:02:55 +0000113/*
114 * Work function for handling the backup timer that we schedule when a vcpu is
115 * no longer running, but had a timer programmed to fire in the future.
116 */
Marc Zyngier53e72402013-01-23 13:21:58 -0500117static void kvm_timer_inject_irq_work(struct work_struct *work)
118{
119 struct kvm_vcpu *vcpu;
120
121 vcpu = container_of(work, struct kvm_vcpu, arch.timer_cpu.expired);
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100122
Christoffer Dall1a748472015-03-13 17:02:55 +0000123 /*
124 * If the vcpu is blocked we want to wake it up so that it will see
125 * the timer has expired when entering the guest.
126 */
Andrew Jones1b6502e2017-06-04 14:44:01 +0200127 kvm_vcpu_wake_up(vcpu);
Marc Zyngier53e72402013-01-23 13:21:58 -0500128}
129
Jintack Lim9171fa22017-02-03 10:20:01 -0500130static u64 kvm_timer_compute_delta(struct arch_timer_context *timer_ctx)
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100131{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100132 u64 cval, now;
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100133
Jintack Lim9171fa22017-02-03 10:20:01 -0500134 cval = timer_ctx->cnt_cval;
135 now = kvm_phys_timer_read() - timer_ctx->cntvoff;
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100136
137 if (now < cval) {
138 u64 ns;
139
140 ns = cyclecounter_cyc2ns(timecounter->cc,
141 cval - now,
142 timecounter->mask,
143 &timecounter->frac);
144 return ns;
145 }
146
147 return 0;
148}
149
Jintack Limfb280e92017-02-03 10:20:05 -0500150static bool kvm_timer_irq_can_fire(struct arch_timer_context *timer_ctx)
151{
152 return !(timer_ctx->cnt_ctl & ARCH_TIMER_CTRL_IT_MASK) &&
153 (timer_ctx->cnt_ctl & ARCH_TIMER_CTRL_ENABLE);
154}
155
156/*
157 * Returns the earliest expiration time in ns among guest timers.
158 * Note that it will return 0 if none of timers can fire.
159 */
160static u64 kvm_timer_earliest_exp(struct kvm_vcpu *vcpu)
161{
162 u64 min_virt = ULLONG_MAX, min_phys = ULLONG_MAX;
163 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
164 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
165
166 if (kvm_timer_irq_can_fire(vtimer))
167 min_virt = kvm_timer_compute_delta(vtimer);
168
169 if (kvm_timer_irq_can_fire(ptimer))
170 min_phys = kvm_timer_compute_delta(ptimer);
171
172 /* If none of timers can fire, then return 0 */
173 if ((min_virt == ULLONG_MAX) && (min_phys == ULLONG_MAX))
174 return 0;
175
176 return min(min_virt, min_phys);
177}
178
Christoffer Dall14d61fa2017-06-17 07:33:02 -0700179static enum hrtimer_restart kvm_bg_timer_expire(struct hrtimer *hrt)
Marc Zyngier53e72402013-01-23 13:21:58 -0500180{
181 struct arch_timer_cpu *timer;
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100182 struct kvm_vcpu *vcpu;
183 u64 ns;
184
Christoffer Dall14d61fa2017-06-17 07:33:02 -0700185 timer = container_of(hrt, struct arch_timer_cpu, bg_timer);
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100186 vcpu = container_of(timer, struct kvm_vcpu, arch.timer_cpu);
187
188 /*
189 * Check that the timer has really expired from the guest's
190 * PoV (NTP on the host may have forced it to expire
191 * early). If we should have slept longer, restart it.
192 */
Jintack Limfb280e92017-02-03 10:20:05 -0500193 ns = kvm_timer_earliest_exp(vcpu);
Marc Zyngier1c5631c2016-04-06 09:37:22 +0100194 if (unlikely(ns)) {
195 hrtimer_forward_now(hrt, ns_to_ktime(ns));
196 return HRTIMER_RESTART;
197 }
198
Bhaktipriya Shridhar3706fea2016-08-30 23:29:51 +0530199 schedule_work(&timer->expired);
Marc Zyngier53e72402013-01-23 13:21:58 -0500200 return HRTIMER_NORESTART;
201}
202
Christoffer Dallf2a21292017-06-18 00:32:08 -0700203static enum hrtimer_restart kvm_phys_timer_expire(struct hrtimer *hrt)
204{
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700205 struct arch_timer_context *ptimer;
206 struct arch_timer_cpu *timer;
207 struct kvm_vcpu *vcpu;
208 u64 ns;
209
210 timer = container_of(hrt, struct arch_timer_cpu, phys_timer);
211 vcpu = container_of(timer, struct kvm_vcpu, arch.timer_cpu);
212 ptimer = vcpu_ptimer(vcpu);
213
214 /*
215 * Check that the timer has really expired from the guest's
216 * PoV (NTP on the host may have forced it to expire
217 * early). If not ready, schedule for a later time.
218 */
219 ns = kvm_timer_compute_delta(ptimer);
220 if (unlikely(ns)) {
221 hrtimer_forward_now(hrt, ns_to_ktime(ns));
222 return HRTIMER_RESTART;
223 }
224
225 kvm_timer_update_irq(vcpu, true, ptimer);
Christoffer Dallf2a21292017-06-18 00:32:08 -0700226 return HRTIMER_NORESTART;
227}
228
Jintack Lim9171fa22017-02-03 10:20:01 -0500229bool kvm_timer_should_fire(struct arch_timer_context *timer_ctx)
Christoffer Dall1a748472015-03-13 17:02:55 +0000230{
Thomas Gleixnera5a1d1c2016-12-21 20:32:01 +0100231 u64 cval, now;
Christoffer Dall1a748472015-03-13 17:02:55 +0000232
Jintack Lim9171fa22017-02-03 10:20:01 -0500233 if (!kvm_timer_irq_can_fire(timer_ctx))
Christoffer Dall1a748472015-03-13 17:02:55 +0000234 return false;
235
Jintack Lim9171fa22017-02-03 10:20:01 -0500236 cval = timer_ctx->cnt_cval;
237 now = kvm_phys_timer_read() - timer_ctx->cntvoff;
Christoffer Dall1a748472015-03-13 17:02:55 +0000238
239 return cval <= now;
240}
241
Alexander Grafd9e13972016-09-27 21:08:06 +0200242/*
243 * Reflect the timer output level into the kvm_run structure
244 */
245void kvm_timer_update_run(struct kvm_vcpu *vcpu)
246{
247 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
248 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
249 struct kvm_sync_regs *regs = &vcpu->run->s.regs;
250
Alexander Grafd9e13972016-09-27 21:08:06 +0200251 /* Populate the device bitmap with the timer states */
252 regs->device_irq_level &= ~(KVM_ARM_DEV_EL1_VTIMER |
253 KVM_ARM_DEV_EL1_PTIMER);
254 if (vtimer->irq.level)
255 regs->device_irq_level |= KVM_ARM_DEV_EL1_VTIMER;
256 if (ptimer->irq.level)
257 regs->device_irq_level |= KVM_ARM_DEV_EL1_PTIMER;
258}
259
Jintack Lim9171fa22017-02-03 10:20:01 -0500260static void kvm_timer_update_irq(struct kvm_vcpu *vcpu, bool new_level,
261 struct arch_timer_context *timer_ctx)
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200262{
263 int ret;
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200264
Jintack Lim9171fa22017-02-03 10:20:01 -0500265 timer_ctx->irq.level = new_level;
266 trace_kvm_timer_update_irq(vcpu->vcpu_id, timer_ctx->irq.irq,
267 timer_ctx->irq.level);
Christoffer Dall11710de2017-02-01 11:03:45 +0100268
Alexander Grafd9e13972016-09-27 21:08:06 +0200269 if (likely(irqchip_in_kernel(vcpu->kvm))) {
270 ret = kvm_vgic_inject_irq(vcpu->kvm, vcpu->vcpu_id,
271 timer_ctx->irq.irq,
Christoffer Dallcb3f0ad2017-05-16 12:41:18 +0200272 timer_ctx->irq.level,
273 timer_ctx);
Alexander Grafd9e13972016-09-27 21:08:06 +0200274 WARN_ON(ret);
275 }
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200276}
277
Christoffer Dallcda93b72017-06-18 01:41:06 -0700278/* Schedule the background timer for the emulated timer. */
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700279static void phys_timer_emulate(struct kvm_vcpu *vcpu)
Christoffer Dallcda93b72017-06-18 01:41:06 -0700280{
281 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700282 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Christoffer Dallcda93b72017-06-18 01:41:06 -0700283
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700284 /*
285 * If the timer can fire now we have just raised the IRQ line and we
286 * don't need to have a soft timer scheduled for the future. If the
287 * timer cannot fire at all, then we also don't need a soft timer.
288 */
289 if (kvm_timer_should_fire(ptimer) || !kvm_timer_irq_can_fire(ptimer)) {
290 soft_timer_cancel(&timer->phys_timer, NULL);
Christoffer Dallcda93b72017-06-18 01:41:06 -0700291 return;
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700292 }
Christoffer Dallcda93b72017-06-18 01:41:06 -0700293
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700294 soft_timer_start(&timer->phys_timer, kvm_timer_compute_delta(ptimer));
Christoffer Dallcda93b72017-06-18 01:41:06 -0700295}
296
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200297/*
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700298 * Check if there was a change in the timer state, so that we should either
299 * raise or lower the line level to the GIC or schedule a background timer to
300 * emulate the physical timer.
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200301 */
Christoffer Dallb22e7df2016-09-27 21:08:04 +0200302static void kvm_timer_update_state(struct kvm_vcpu *vcpu)
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200303{
304 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Jintack Limfbb4aee2017-02-03 10:19:59 -0500305 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Jintack Lim58e0c972017-02-03 10:20:04 -0500306 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200307
308 /*
309 * If userspace modified the timer registers via SET_ONE_REG before
Jintack Limfbb4aee2017-02-03 10:19:59 -0500310 * the vgic was initialized, we mustn't set the vtimer->irq.level value
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200311 * because the guest would never see the interrupt. Instead wait
312 * until we call this function from kvm_timer_flush_hwstate.
313 */
Alexander Grafd9e13972016-09-27 21:08:06 +0200314 if (unlikely(!timer->enabled))
Christoffer Dallb22e7df2016-09-27 21:08:04 +0200315 return;
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200316
Jintack Lim9171fa22017-02-03 10:20:01 -0500317 if (kvm_timer_should_fire(vtimer) != vtimer->irq.level)
318 kvm_timer_update_irq(vcpu, !vtimer->irq.level, vtimer);
Andre Przywarab3aff6c2016-02-03 16:56:51 +0000319
Jintack Lim58e0c972017-02-03 10:20:04 -0500320 if (kvm_timer_should_fire(ptimer) != ptimer->irq.level)
321 kvm_timer_update_irq(vcpu, !ptimer->irq.level, ptimer);
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700322
323 phys_timer_emulate(vcpu);
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200324}
325
Christoffer Dallb103cc32016-10-16 20:30:38 +0200326static void vtimer_save_state(struct kvm_vcpu *vcpu)
Christoffer Dall688c50a2017-01-04 16:10:28 +0100327{
328 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
329 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Christoffer Dallb103cc32016-10-16 20:30:38 +0200330 unsigned long flags;
331
332 local_irq_save(flags);
333
334 if (!vtimer->loaded)
335 goto out;
Christoffer Dall688c50a2017-01-04 16:10:28 +0100336
337 if (timer->enabled) {
338 vtimer->cnt_ctl = read_sysreg_el0(cntv_ctl);
339 vtimer->cnt_cval = read_sysreg_el0(cntv_cval);
340 }
341
342 /* Disable the virtual timer */
343 write_sysreg_el0(0, cntv_ctl);
Christoffer Dallb103cc32016-10-16 20:30:38 +0200344
345 vtimer->loaded = false;
346out:
347 local_irq_restore(flags);
Christoffer Dall688c50a2017-01-04 16:10:28 +0100348}
349
Christoffer Dalld35268d2015-08-25 19:48:21 +0200350/*
351 * Schedule the background timer before calling kvm_vcpu_block, so that this
352 * thread is removed from its waitqueue and made runnable when there's a timer
353 * interrupt to handle.
354 */
355void kvm_timer_schedule(struct kvm_vcpu *vcpu)
356{
357 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Jintack Lim9171fa22017-02-03 10:20:01 -0500358 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Jintack Limfb280e92017-02-03 10:20:05 -0500359 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Christoffer Dalld35268d2015-08-25 19:48:21 +0200360
Christoffer Dallb103cc32016-10-16 20:30:38 +0200361 vtimer_save_state(vcpu);
362
Christoffer Dalld35268d2015-08-25 19:48:21 +0200363 /*
Jintack Limfb280e92017-02-03 10:20:05 -0500364 * No need to schedule a background timer if any guest timer has
Christoffer Dalld35268d2015-08-25 19:48:21 +0200365 * already expired, because kvm_vcpu_block will return before putting
366 * the thread to sleep.
367 */
Jintack Limfb280e92017-02-03 10:20:05 -0500368 if (kvm_timer_should_fire(vtimer) || kvm_timer_should_fire(ptimer))
Christoffer Dalld35268d2015-08-25 19:48:21 +0200369 return;
370
371 /*
Jintack Limfb280e92017-02-03 10:20:05 -0500372 * If both timers are not capable of raising interrupts (disabled or
Christoffer Dalld35268d2015-08-25 19:48:21 +0200373 * masked), then there's no more work for us to do.
374 */
Jintack Limfb280e92017-02-03 10:20:05 -0500375 if (!kvm_timer_irq_can_fire(vtimer) && !kvm_timer_irq_can_fire(ptimer))
Christoffer Dalld35268d2015-08-25 19:48:21 +0200376 return;
377
Jintack Limfb280e92017-02-03 10:20:05 -0500378 /*
379 * The guest timers have not yet expired, schedule a background timer.
380 * Set the earliest expiration time among the guest timers.
381 */
Christoffer Dall14d61fa2017-06-17 07:33:02 -0700382 soft_timer_start(&timer->bg_timer, kvm_timer_earliest_exp(vcpu));
Christoffer Dalld35268d2015-08-25 19:48:21 +0200383}
384
Christoffer Dallb103cc32016-10-16 20:30:38 +0200385static void vtimer_restore_state(struct kvm_vcpu *vcpu)
Christoffer Dall688c50a2017-01-04 16:10:28 +0100386{
387 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
388 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Christoffer Dallb103cc32016-10-16 20:30:38 +0200389 unsigned long flags;
390
391 local_irq_save(flags);
392
393 if (vtimer->loaded)
394 goto out;
Christoffer Dall688c50a2017-01-04 16:10:28 +0100395
396 if (timer->enabled) {
397 write_sysreg_el0(vtimer->cnt_cval, cntv_cval);
398 isb();
399 write_sysreg_el0(vtimer->cnt_ctl, cntv_ctl);
400 }
Christoffer Dallb103cc32016-10-16 20:30:38 +0200401
402 vtimer->loaded = true;
403out:
404 local_irq_restore(flags);
Christoffer Dall688c50a2017-01-04 16:10:28 +0100405}
406
Christoffer Dalld35268d2015-08-25 19:48:21 +0200407void kvm_timer_unschedule(struct kvm_vcpu *vcpu)
408{
409 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Christoffer Dall8409a062017-06-17 01:09:19 -0700410
Christoffer Dallb103cc32016-10-16 20:30:38 +0200411 vtimer_restore_state(vcpu);
412
Christoffer Dall14d61fa2017-06-17 07:33:02 -0700413 soft_timer_cancel(&timer->bg_timer, &timer->expired);
Christoffer Dalld35268d2015-08-25 19:48:21 +0200414}
415
Christoffer Dall688c50a2017-01-04 16:10:28 +0100416static void set_cntvoff(u64 cntvoff)
417{
418 u32 low = lower_32_bits(cntvoff);
419 u32 high = upper_32_bits(cntvoff);
420
421 /*
422 * Since kvm_call_hyp doesn't fully support the ARM PCS especially on
423 * 32-bit systems, but rather passes register by register shifted one
424 * place (we put the function address in r0/x0), we cannot simply pass
425 * a 64-bit value as an argument, but have to split the value in two
426 * 32-bit halves.
427 */
428 kvm_call_hyp(__kvm_timer_set_cntvoff, low, high);
429}
430
Christoffer Dallb103cc32016-10-16 20:30:38 +0200431static void kvm_timer_vcpu_load_vgic(struct kvm_vcpu *vcpu)
Marc Zyngier53e72402013-01-23 13:21:58 -0500432{
Jintack Limfbb4aee2017-02-03 10:19:59 -0500433 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Christoffer Dallcff92112015-10-16 12:41:21 +0200434 bool phys_active;
435 int ret;
Marc Zyngier53e72402013-01-23 13:21:58 -0500436
Jintack Limfbb4aee2017-02-03 10:19:59 -0500437 phys_active = vtimer->irq.level ||
Christoffer Dallb103cc32016-10-16 20:30:38 +0200438 kvm_vgic_map_is_active(vcpu, vtimer->irq.irq);
Marc Zyngier9b4a3002016-01-29 19:04:48 +0000439
Christoffer Dallb452cb52016-06-04 15:41:00 +0100440 ret = irq_set_irqchip_state(host_vtimer_irq,
Christoffer Dallcff92112015-10-16 12:41:21 +0200441 IRQCHIP_STATE_ACTIVE,
442 phys_active);
443 WARN_ON(ret);
Christoffer Dallb103cc32016-10-16 20:30:38 +0200444}
Marc Zyngier9b4a3002016-01-29 19:04:48 +0000445
Christoffer Dallb103cc32016-10-16 20:30:38 +0200446static void kvm_timer_vcpu_load_user(struct kvm_vcpu *vcpu)
447{
448 kvm_vtimer_update_mask_user(vcpu);
449}
450
451void kvm_timer_vcpu_load(struct kvm_vcpu *vcpu)
452{
453 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
454 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
455
456 if (unlikely(!timer->enabled))
457 return;
458
459 if (unlikely(!irqchip_in_kernel(vcpu->kvm)))
460 kvm_timer_vcpu_load_user(vcpu);
461 else
462 kvm_timer_vcpu_load_vgic(vcpu);
463
464 set_cntvoff(vtimer->cntvoff);
465
466 vtimer_restore_state(vcpu);
467
468 if (has_vhe())
469 disable_el1_phys_timer_access();
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700470
471 /* Set the background timer for the physical timer emulation. */
472 phys_timer_emulate(vcpu);
Marc Zyngier53e72402013-01-23 13:21:58 -0500473}
474
Alexander Grafd9e13972016-09-27 21:08:06 +0200475bool kvm_timer_should_notify_user(struct kvm_vcpu *vcpu)
476{
477 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
478 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
479 struct kvm_sync_regs *sregs = &vcpu->run->s.regs;
480 bool vlevel, plevel;
481
482 if (likely(irqchip_in_kernel(vcpu->kvm)))
483 return false;
484
485 vlevel = sregs->device_irq_level & KVM_ARM_DEV_EL1_VTIMER;
486 plevel = sregs->device_irq_level & KVM_ARM_DEV_EL1_PTIMER;
487
488 return vtimer->irq.level != vlevel ||
489 ptimer->irq.level != plevel;
490}
491
Alexander Grafd9e13972016-09-27 21:08:06 +0200492/**
493 * kvm_timer_flush_hwstate - prepare timers before running the vcpu
494 * @vcpu: The vcpu pointer
495 *
496 * Check if the virtual timer has expired while we were running in the host,
497 * and inject an interrupt if that was the case, making sure the timer is
498 * masked or disabled on the host so that we keep executing. Also schedule a
499 * software timer for the physical timer if it is enabled.
500 */
501void kvm_timer_flush_hwstate(struct kvm_vcpu *vcpu)
502{
503 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Christoffer Dallb103cc32016-10-16 20:30:38 +0200504 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Alexander Grafd9e13972016-09-27 21:08:06 +0200505
506 if (unlikely(!timer->enabled))
507 return;
Christoffer Dallb103cc32016-10-16 20:30:38 +0200508}
Alexander Grafd9e13972016-09-27 21:08:06 +0200509
Christoffer Dallb103cc32016-10-16 20:30:38 +0200510void kvm_timer_vcpu_put(struct kvm_vcpu *vcpu)
511{
512 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Christoffer Dall688c50a2017-01-04 16:10:28 +0100513
Christoffer Dallb103cc32016-10-16 20:30:38 +0200514 if (unlikely(!timer->enabled))
515 return;
516
517 if (has_vhe())
518 enable_el1_phys_timer_access();
519
520 vtimer_save_state(vcpu);
521
522 /*
Christoffer Dallbbdd52c2017-06-18 01:42:55 -0700523 * Cancel the physical timer emulation, because the only case where we
524 * need it after a vcpu_put is in the context of a sleeping VCPU, and
525 * in that case we already factor in the deadline for the physical
526 * timer when scheduling the bg_timer.
527 *
528 * In any case, we re-schedule the hrtimer for the physical timer when
529 * coming back to the VCPU thread in kvm_timer_vcpu_load().
530 */
531 soft_timer_cancel(&timer->phys_timer, NULL);
532
533 /*
Christoffer Dallb103cc32016-10-16 20:30:38 +0200534 * The kernel may decide to run userspace after calling vcpu_put, so
535 * we reset cntvoff to 0 to ensure a consistent read between user
536 * accesses to the virtual counter and kernel access to the physical
537 * counter.
538 */
539 set_cntvoff(0);
540}
541
542static void unmask_vtimer_irq(struct kvm_vcpu *vcpu)
543{
544 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
545
546 if (unlikely(!irqchip_in_kernel(vcpu->kvm))) {
547 kvm_vtimer_update_mask_user(vcpu);
548 return;
549 }
550
551 /*
552 * If the guest disabled the timer without acking the interrupt, then
553 * we must make sure the physical and virtual active states are in
554 * sync by deactivating the physical interrupt, because otherwise we
555 * wouldn't see the next timer interrupt in the host.
556 */
557 if (!kvm_vgic_map_is_active(vcpu, vtimer->irq.irq)) {
558 int ret;
559 ret = irq_set_irqchip_state(host_vtimer_irq,
560 IRQCHIP_STATE_ACTIVE,
561 false);
562 WARN_ON(ret);
563 }
Alexander Grafd9e13972016-09-27 21:08:06 +0200564}
565
Marc Zyngier53e72402013-01-23 13:21:58 -0500566/**
567 * kvm_timer_sync_hwstate - sync timer state from cpu
568 * @vcpu: The vcpu pointer
569 *
Alexander Grafd9e13972016-09-27 21:08:06 +0200570 * Check if any of the timers have expired while we were running in the guest,
Christoffer Dalld35268d2015-08-25 19:48:21 +0200571 * and inject an interrupt if that was the case.
Marc Zyngier53e72402013-01-23 13:21:58 -0500572 */
573void kvm_timer_sync_hwstate(struct kvm_vcpu *vcpu)
574{
Christoffer Dallb103cc32016-10-16 20:30:38 +0200575 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Marc Zyngier53e72402013-01-23 13:21:58 -0500576
Jintack Limf242ada2017-02-03 10:20:06 -0500577 /*
Christoffer Dallb103cc32016-10-16 20:30:38 +0200578 * If we entered the guest with the vtimer output asserted we have to
579 * check if the guest has modified the timer so that we should lower
580 * the line at this point.
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200581 */
Christoffer Dallb103cc32016-10-16 20:30:38 +0200582 if (vtimer->irq.level) {
583 vtimer->cnt_ctl = read_sysreg_el0(cntv_ctl);
584 vtimer->cnt_cval = read_sysreg_el0(cntv_cval);
585 if (!kvm_timer_should_fire(vtimer)) {
586 kvm_timer_update_irq(vcpu, false, vtimer);
587 unmask_vtimer_irq(vcpu);
588 }
589 }
Marc Zyngier53e72402013-01-23 13:21:58 -0500590}
591
Christoffer Dall85e69ad2017-05-02 20:14:06 +0200592int kvm_timer_vcpu_reset(struct kvm_vcpu *vcpu)
Anup Patel5ae7f872013-04-30 12:02:15 +0530593{
Jintack Limfbb4aee2017-02-03 10:19:59 -0500594 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Jintack Lima91d1852017-02-03 10:20:03 -0500595 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Anup Patel5ae7f872013-04-30 12:02:15 +0530596
597 /*
Christoffer Dall4ad9e162015-09-04 16:24:39 +0200598 * The bits in CNTV_CTL are architecturally reset to UNKNOWN for ARMv8
599 * and to 0 for ARMv7. We provide an implementation that always
600 * resets the timer to be disabled and unmasked and is compliant with
601 * the ARMv7 architecture.
602 */
Jintack Limfbb4aee2017-02-03 10:19:59 -0500603 vtimer->cnt_ctl = 0;
Jintack Lima91d1852017-02-03 10:20:03 -0500604 ptimer->cnt_ctl = 0;
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200605 kvm_timer_update_state(vcpu);
Christoffer Dall4ad9e162015-09-04 16:24:39 +0200606
Christoffer Dall41a54482016-05-18 16:26:00 +0100607 return 0;
Anup Patel5ae7f872013-04-30 12:02:15 +0530608}
609
Jintack Lim90de9432017-02-03 10:20:00 -0500610/* Make the updates of cntvoff for all vtimer contexts atomic */
611static void update_vtimer_cntvoff(struct kvm_vcpu *vcpu, u64 cntvoff)
612{
613 int i;
614 struct kvm *kvm = vcpu->kvm;
615 struct kvm_vcpu *tmp;
616
617 mutex_lock(&kvm->lock);
618 kvm_for_each_vcpu(i, tmp, kvm)
619 vcpu_vtimer(tmp)->cntvoff = cntvoff;
620
621 /*
622 * When called from the vcpu create path, the CPU being created is not
623 * included in the loop above, so we just set it here as well.
624 */
625 vcpu_vtimer(vcpu)->cntvoff = cntvoff;
626 mutex_unlock(&kvm->lock);
627}
628
Marc Zyngier53e72402013-01-23 13:21:58 -0500629void kvm_timer_vcpu_init(struct kvm_vcpu *vcpu)
630{
631 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Christoffer Dall85e69ad2017-05-02 20:14:06 +0200632 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
633 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Marc Zyngier53e72402013-01-23 13:21:58 -0500634
Jintack Lim90de9432017-02-03 10:20:00 -0500635 /* Synchronize cntvoff across all vtimers of a VM. */
636 update_vtimer_cntvoff(vcpu, kvm_phys_timer_read());
Jintack Lima91d1852017-02-03 10:20:03 -0500637 vcpu_ptimer(vcpu)->cntvoff = 0;
Jintack Lim90de9432017-02-03 10:20:00 -0500638
Marc Zyngier53e72402013-01-23 13:21:58 -0500639 INIT_WORK(&timer->expired, kvm_timer_inject_irq_work);
Christoffer Dall14d61fa2017-06-17 07:33:02 -0700640 hrtimer_init(&timer->bg_timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
641 timer->bg_timer.function = kvm_bg_timer_expire;
Christoffer Dall85e69ad2017-05-02 20:14:06 +0200642
Christoffer Dallf2a21292017-06-18 00:32:08 -0700643 hrtimer_init(&timer->phys_timer, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
644 timer->phys_timer.function = kvm_phys_timer_expire;
645
Christoffer Dall85e69ad2017-05-02 20:14:06 +0200646 vtimer->irq.irq = default_vtimer_irq.irq;
647 ptimer->irq.irq = default_ptimer_irq.irq;
Marc Zyngier53e72402013-01-23 13:21:58 -0500648}
649
650static void kvm_timer_init_interrupt(void *info)
651{
Marc Zyngiercabdc5c2016-08-16 15:03:02 +0100652 enable_percpu_irq(host_vtimer_irq, host_vtimer_irq_flags);
Marc Zyngier53e72402013-01-23 13:21:58 -0500653}
654
Andre Przywara39735a32013-12-13 14:23:26 +0100655int kvm_arm_timer_set_reg(struct kvm_vcpu *vcpu, u64 regid, u64 value)
656{
Jintack Limfbb4aee2017-02-03 10:19:59 -0500657 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700658 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Andre Przywara39735a32013-12-13 14:23:26 +0100659
660 switch (regid) {
661 case KVM_REG_ARM_TIMER_CTL:
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700662 vtimer->cnt_ctl = value & ~ARCH_TIMER_CTRL_IT_STAT;
Andre Przywara39735a32013-12-13 14:23:26 +0100663 break;
664 case KVM_REG_ARM_TIMER_CNT:
Jintack Lim90de9432017-02-03 10:20:00 -0500665 update_vtimer_cntvoff(vcpu, kvm_phys_timer_read() - value);
Andre Przywara39735a32013-12-13 14:23:26 +0100666 break;
667 case KVM_REG_ARM_TIMER_CVAL:
Jintack Limfbb4aee2017-02-03 10:19:59 -0500668 vtimer->cnt_cval = value;
Andre Przywara39735a32013-12-13 14:23:26 +0100669 break;
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700670 case KVM_REG_ARM_PTIMER_CTL:
671 ptimer->cnt_ctl = value & ~ARCH_TIMER_CTRL_IT_STAT;
672 break;
673 case KVM_REG_ARM_PTIMER_CVAL:
674 ptimer->cnt_cval = value;
675 break;
676
Andre Przywara39735a32013-12-13 14:23:26 +0100677 default:
678 return -1;
679 }
Christoffer Dall4b4b4512015-08-30 15:01:27 +0200680
681 kvm_timer_update_state(vcpu);
Andre Przywara39735a32013-12-13 14:23:26 +0100682 return 0;
683}
684
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700685static u64 read_timer_ctl(struct arch_timer_context *timer)
686{
687 /*
688 * Set ISTATUS bit if it's expired.
689 * Note that according to ARMv8 ARM Issue A.k, ISTATUS bit is
690 * UNKNOWN when ENABLE bit is 0, so we chose to set ISTATUS bit
691 * regardless of ENABLE bit for our implementation convenience.
692 */
693 if (!kvm_timer_compute_delta(timer))
694 return timer->cnt_ctl | ARCH_TIMER_CTRL_IT_STAT;
695 else
696 return timer->cnt_ctl;
697}
698
Andre Przywara39735a32013-12-13 14:23:26 +0100699u64 kvm_arm_timer_get_reg(struct kvm_vcpu *vcpu, u64 regid)
700{
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700701 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
Jintack Limfbb4aee2017-02-03 10:19:59 -0500702 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Andre Przywara39735a32013-12-13 14:23:26 +0100703
704 switch (regid) {
705 case KVM_REG_ARM_TIMER_CTL:
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700706 return read_timer_ctl(vtimer);
Andre Przywara39735a32013-12-13 14:23:26 +0100707 case KVM_REG_ARM_TIMER_CNT:
Jintack Lim90de9432017-02-03 10:20:00 -0500708 return kvm_phys_timer_read() - vtimer->cntvoff;
Andre Przywara39735a32013-12-13 14:23:26 +0100709 case KVM_REG_ARM_TIMER_CVAL:
Jintack Limfbb4aee2017-02-03 10:19:59 -0500710 return vtimer->cnt_cval;
Christoffer Dall5c5196d2017-06-16 23:08:57 -0700711 case KVM_REG_ARM_PTIMER_CTL:
712 return read_timer_ctl(ptimer);
713 case KVM_REG_ARM_PTIMER_CVAL:
714 return ptimer->cnt_cval;
715 case KVM_REG_ARM_PTIMER_CNT:
716 return kvm_phys_timer_read();
Andre Przywara39735a32013-12-13 14:23:26 +0100717 }
718 return (u64)-1;
719}
Marc Zyngier53e72402013-01-23 13:21:58 -0500720
Richard Cochranb3c99502016-07-13 17:16:47 +0000721static int kvm_timer_starting_cpu(unsigned int cpu)
Marc Zyngier53e72402013-01-23 13:21:58 -0500722{
Richard Cochranb3c99502016-07-13 17:16:47 +0000723 kvm_timer_init_interrupt(NULL);
724 return 0;
Marc Zyngier53e72402013-01-23 13:21:58 -0500725}
726
Richard Cochranb3c99502016-07-13 17:16:47 +0000727static int kvm_timer_dying_cpu(unsigned int cpu)
728{
729 disable_percpu_irq(host_vtimer_irq);
730 return 0;
731}
Marc Zyngier53e72402013-01-23 13:21:58 -0500732
Marc Zyngier53e72402013-01-23 13:21:58 -0500733int kvm_timer_hyp_init(void)
734{
Julien Grall29c2d6f2016-04-11 16:32:58 +0100735 struct arch_timer_kvm_info *info;
Marc Zyngier53e72402013-01-23 13:21:58 -0500736 int err;
737
Julien Grall29c2d6f2016-04-11 16:32:58 +0100738 info = arch_timer_get_kvm_info();
739 timecounter = &info->timecounter;
Marc Zyngier53e72402013-01-23 13:21:58 -0500740
Christoffer Dall8e1a0472016-12-05 10:32:11 +0100741 if (!timecounter->cc) {
742 kvm_err("kvm_arch_timer: uninitialized timecounter\n");
743 return -ENODEV;
744 }
745
Julien Grall29c2d6f2016-04-11 16:32:58 +0100746 if (info->virtual_irq <= 0) {
747 kvm_err("kvm_arch_timer: invalid virtual timer IRQ: %d\n",
748 info->virtual_irq);
Marc Zyngier53e72402013-01-23 13:21:58 -0500749 return -ENODEV;
750 }
Julien Grall29c2d6f2016-04-11 16:32:58 +0100751 host_vtimer_irq = info->virtual_irq;
Marc Zyngier53e72402013-01-23 13:21:58 -0500752
Marc Zyngiercabdc5c2016-08-16 15:03:02 +0100753 host_vtimer_irq_flags = irq_get_trigger_type(host_vtimer_irq);
754 if (host_vtimer_irq_flags != IRQF_TRIGGER_HIGH &&
755 host_vtimer_irq_flags != IRQF_TRIGGER_LOW) {
756 kvm_err("Invalid trigger for IRQ%d, assuming level low\n",
757 host_vtimer_irq);
758 host_vtimer_irq_flags = IRQF_TRIGGER_LOW;
759 }
760
Julien Grall29c2d6f2016-04-11 16:32:58 +0100761 err = request_percpu_irq(host_vtimer_irq, kvm_arch_timer_handler,
Marc Zyngier53e72402013-01-23 13:21:58 -0500762 "kvm guest timer", kvm_get_running_vcpus());
763 if (err) {
764 kvm_err("kvm_arch_timer: can't request interrupt %d (%d)\n",
Julien Grall29c2d6f2016-04-11 16:32:58 +0100765 host_vtimer_irq, err);
Paolo Bonzini5d947a12016-09-08 12:45:59 +0200766 return err;
Marc Zyngier53e72402013-01-23 13:21:58 -0500767 }
768
Christoffer Dall40f4cba2017-07-05 12:50:27 +0200769 err = irq_set_vcpu_affinity(host_vtimer_irq, kvm_get_running_vcpus());
770 if (err) {
771 kvm_err("kvm_arch_timer: error setting vcpu affinity\n");
772 goto out_free_irq;
773 }
774
Julien Grall29c2d6f2016-04-11 16:32:58 +0100775 kvm_info("virtual timer IRQ%d\n", host_vtimer_irq);
Marc Zyngier53e72402013-01-23 13:21:58 -0500776
Richard Cochranb3c99502016-07-13 17:16:47 +0000777 cpuhp_setup_state(CPUHP_AP_KVM_ARM_TIMER_STARTING,
Thomas Gleixner73c1b412016-12-21 20:19:54 +0100778 "kvm/arm/timer:starting", kvm_timer_starting_cpu,
Richard Cochranb3c99502016-07-13 17:16:47 +0000779 kvm_timer_dying_cpu);
Christoffer Dall40f4cba2017-07-05 12:50:27 +0200780 return 0;
781out_free_irq:
782 free_percpu_irq(host_vtimer_irq, kvm_get_running_vcpus());
Marc Zyngier53e72402013-01-23 13:21:58 -0500783 return err;
784}
785
786void kvm_timer_vcpu_terminate(struct kvm_vcpu *vcpu)
787{
788 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Jintack Limfbb4aee2017-02-03 10:19:59 -0500789 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Marc Zyngier53e72402013-01-23 13:21:58 -0500790
Christoffer Dall14d61fa2017-06-17 07:33:02 -0700791 soft_timer_cancel(&timer->bg_timer, &timer->expired);
Christoffer Dallf2a21292017-06-18 00:32:08 -0700792 soft_timer_cancel(&timer->phys_timer, NULL);
Jintack Limfbb4aee2017-02-03 10:19:59 -0500793 kvm_vgic_unmap_phys_irq(vcpu, vtimer->irq.irq);
Marc Zyngier53e72402013-01-23 13:21:58 -0500794}
795
Christoffer Dallabcb8512017-05-04 13:32:53 +0200796static bool timer_irqs_are_valid(struct kvm_vcpu *vcpu)
Christoffer Dall99a1db72017-05-02 20:19:15 +0200797{
Christoffer Dall99a1db72017-05-02 20:19:15 +0200798 int vtimer_irq, ptimer_irq;
Christoffer Dallabcb8512017-05-04 13:32:53 +0200799 int i, ret;
Christoffer Dall99a1db72017-05-02 20:19:15 +0200800
Christoffer Dall99a1db72017-05-02 20:19:15 +0200801 vtimer_irq = vcpu_vtimer(vcpu)->irq.irq;
Christoffer Dallabcb8512017-05-04 13:32:53 +0200802 ret = kvm_vgic_set_owner(vcpu, vtimer_irq, vcpu_vtimer(vcpu));
803 if (ret)
Christoffer Dall99a1db72017-05-02 20:19:15 +0200804 return false;
805
Christoffer Dallabcb8512017-05-04 13:32:53 +0200806 ptimer_irq = vcpu_ptimer(vcpu)->irq.irq;
807 ret = kvm_vgic_set_owner(vcpu, ptimer_irq, vcpu_ptimer(vcpu));
808 if (ret)
809 return false;
810
811 kvm_for_each_vcpu(i, vcpu, vcpu->kvm) {
Christoffer Dall99a1db72017-05-02 20:19:15 +0200812 if (vcpu_vtimer(vcpu)->irq.irq != vtimer_irq ||
813 vcpu_ptimer(vcpu)->irq.irq != ptimer_irq)
814 return false;
815 }
816
817 return true;
818}
819
Christoffer Dall41a54482016-05-18 16:26:00 +0100820int kvm_timer_enable(struct kvm_vcpu *vcpu)
Marc Zyngier53e72402013-01-23 13:21:58 -0500821{
Christoffer Dall41a54482016-05-18 16:26:00 +0100822 struct arch_timer_cpu *timer = &vcpu->arch.timer_cpu;
Jintack Limfbb4aee2017-02-03 10:19:59 -0500823 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
Christoffer Dall41a54482016-05-18 16:26:00 +0100824 struct irq_desc *desc;
825 struct irq_data *data;
826 int phys_irq;
827 int ret;
828
829 if (timer->enabled)
830 return 0;
831
Alexander Grafd9e13972016-09-27 21:08:06 +0200832 /* Without a VGIC we do not map virtual IRQs to physical IRQs */
833 if (!irqchip_in_kernel(vcpu->kvm))
834 goto no_vgic;
835
836 if (!vgic_initialized(vcpu->kvm))
837 return -ENODEV;
838
Christoffer Dallabcb8512017-05-04 13:32:53 +0200839 if (!timer_irqs_are_valid(vcpu)) {
Christoffer Dall99a1db72017-05-02 20:19:15 +0200840 kvm_debug("incorrectly configured timer irqs\n");
841 return -EINVAL;
842 }
843
Christoffer Dall41a54482016-05-18 16:26:00 +0100844 /*
845 * Find the physical IRQ number corresponding to the host_vtimer_irq
846 */
847 desc = irq_to_desc(host_vtimer_irq);
848 if (!desc) {
849 kvm_err("%s: no interrupt descriptor\n", __func__);
850 return -EINVAL;
851 }
852
853 data = irq_desc_get_irq_data(desc);
854 while (data->parent_data)
855 data = data->parent_data;
856
857 phys_irq = data->hwirq;
858
859 /*
860 * Tell the VGIC that the virtual interrupt is tied to a
861 * physical interrupt. We do that once per VCPU.
862 */
Jintack Limfbb4aee2017-02-03 10:19:59 -0500863 ret = kvm_vgic_map_phys_irq(vcpu, vtimer->irq.irq, phys_irq);
Christoffer Dall41a54482016-05-18 16:26:00 +0100864 if (ret)
865 return ret;
866
Alexander Grafd9e13972016-09-27 21:08:06 +0200867no_vgic:
Longpeng(Mike)fd5ebf92016-11-09 10:50:14 +0800868 timer->enabled = 1;
Christoffer Dall41a54482016-05-18 16:26:00 +0100869 return 0;
Christoffer Dall05971122014-12-12 21:19:23 +0100870}
871
Jintack Lim488f94d2016-12-01 14:32:05 -0500872/*
873 * On VHE system, we only need to configure trap on physical timer and counter
874 * accesses in EL0 and EL1 once, not for every world switch.
875 * The host kernel runs at EL2 with HCR_EL2.TGE == 1,
876 * and this makes those bits have no effect for the host kernel execution.
877 */
878void kvm_timer_init_vhe(void)
879{
880 /* When HCR_EL2.E2H ==1, EL1PCEN and EL1PCTEN are shifted by 10 */
881 u32 cnthctl_shift = 10;
882 u64 val;
883
884 /*
885 * Disallow physical timer access for the guest.
886 * Physical counter access is allowed.
887 */
888 val = read_sysreg(cnthctl_el2);
889 val &= ~(CNTHCTL_EL1PCEN << cnthctl_shift);
890 val |= (CNTHCTL_EL1PCTEN << cnthctl_shift);
891 write_sysreg(val, cnthctl_el2);
892}
Christoffer Dall99a1db72017-05-02 20:19:15 +0200893
894static void set_timer_irqs(struct kvm *kvm, int vtimer_irq, int ptimer_irq)
895{
896 struct kvm_vcpu *vcpu;
897 int i;
898
899 kvm_for_each_vcpu(i, vcpu, kvm) {
900 vcpu_vtimer(vcpu)->irq.irq = vtimer_irq;
901 vcpu_ptimer(vcpu)->irq.irq = ptimer_irq;
902 }
903}
904
905int kvm_arm_timer_set_attr(struct kvm_vcpu *vcpu, struct kvm_device_attr *attr)
906{
907 int __user *uaddr = (int __user *)(long)attr->addr;
908 struct arch_timer_context *vtimer = vcpu_vtimer(vcpu);
909 struct arch_timer_context *ptimer = vcpu_ptimer(vcpu);
910 int irq;
911
912 if (!irqchip_in_kernel(vcpu->kvm))
913 return -EINVAL;
914
915 if (get_user(irq, uaddr))
916 return -EFAULT;
917
918 if (!(irq_is_ppi(irq)))
919 return -EINVAL;
920
921 if (vcpu->arch.timer_cpu.enabled)
922 return -EBUSY;
923
924 switch (attr->attr) {
925 case KVM_ARM_VCPU_TIMER_IRQ_VTIMER:
926 set_timer_irqs(vcpu->kvm, irq, ptimer->irq.irq);
927 break;
928 case KVM_ARM_VCPU_TIMER_IRQ_PTIMER:
929 set_timer_irqs(vcpu->kvm, vtimer->irq.irq, irq);
930 break;
931 default:
932 return -ENXIO;
933 }
934
935 return 0;
936}
937
938int kvm_arm_timer_get_attr(struct kvm_vcpu *vcpu, struct kvm_device_attr *attr)
939{
940 int __user *uaddr = (int __user *)(long)attr->addr;
941 struct arch_timer_context *timer;
942 int irq;
943
944 switch (attr->attr) {
945 case KVM_ARM_VCPU_TIMER_IRQ_VTIMER:
946 timer = vcpu_vtimer(vcpu);
947 break;
948 case KVM_ARM_VCPU_TIMER_IRQ_PTIMER:
949 timer = vcpu_ptimer(vcpu);
950 break;
951 default:
952 return -ENXIO;
953 }
954
955 irq = timer->irq.irq;
956 return put_user(irq, uaddr);
957}
958
959int kvm_arm_timer_has_attr(struct kvm_vcpu *vcpu, struct kvm_device_attr *attr)
960{
961 switch (attr->attr) {
962 case KVM_ARM_VCPU_TIMER_IRQ_VTIMER:
963 case KVM_ARM_VCPU_TIMER_IRQ_PTIMER:
964 return 0;
965 }
966
967 return -ENXIO;
968}