xref: /openbmc/linux/arch/x86/kvm/i8254.c (revision 6f6d6a1a6a1336431a6cba60ace9e97c3a496a19)
17837699fSSheng Yang /*
27837699fSSheng Yang  * 8253/8254 interval timer emulation
37837699fSSheng Yang  *
47837699fSSheng Yang  * Copyright (c) 2003-2004 Fabrice Bellard
57837699fSSheng Yang  * Copyright (c) 2006 Intel Corporation
67837699fSSheng Yang  * Copyright (c) 2007 Keir Fraser, XenSource Inc
77837699fSSheng Yang  * Copyright (c) 2008 Intel Corporation
87837699fSSheng Yang  *
97837699fSSheng Yang  * Permission is hereby granted, free of charge, to any person obtaining a copy
107837699fSSheng Yang  * of this software and associated documentation files (the "Software"), to deal
117837699fSSheng Yang  * in the Software without restriction, including without limitation the rights
127837699fSSheng Yang  * to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
137837699fSSheng Yang  * copies of the Software, and to permit persons to whom the Software is
147837699fSSheng Yang  * furnished to do so, subject to the following conditions:
157837699fSSheng Yang  *
167837699fSSheng Yang  * The above copyright notice and this permission notice shall be included in
177837699fSSheng Yang  * all copies or substantial portions of the Software.
187837699fSSheng Yang  *
197837699fSSheng Yang  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
207837699fSSheng Yang  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
217837699fSSheng Yang  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
227837699fSSheng Yang  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
237837699fSSheng Yang  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
247837699fSSheng Yang  * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
257837699fSSheng Yang  * THE SOFTWARE.
267837699fSSheng Yang  *
277837699fSSheng Yang  * Authors:
287837699fSSheng Yang  *   Sheng Yang <sheng.yang@intel.com>
297837699fSSheng Yang  *   Based on QEMU and Xen.
307837699fSSheng Yang  */
317837699fSSheng Yang 
327837699fSSheng Yang #include <linux/kvm_host.h>
337837699fSSheng Yang 
347837699fSSheng Yang #include "irq.h"
357837699fSSheng Yang #include "i8254.h"
367837699fSSheng Yang 
377837699fSSheng Yang #ifndef CONFIG_X86_64
38*6f6d6a1aSRoman Zippel #define mod_64(x, y) ((x) - (y) * div64_u64(x, y))
397837699fSSheng Yang #else
407837699fSSheng Yang #define mod_64(x, y) ((x) % (y))
417837699fSSheng Yang #endif
427837699fSSheng Yang 
437837699fSSheng Yang #define RW_STATE_LSB 1
447837699fSSheng Yang #define RW_STATE_MSB 2
457837699fSSheng Yang #define RW_STATE_WORD0 3
467837699fSSheng Yang #define RW_STATE_WORD1 4
477837699fSSheng Yang 
487837699fSSheng Yang /* Compute with 96 bit intermediate result: (a*b)/c */
497837699fSSheng Yang static u64 muldiv64(u64 a, u32 b, u32 c)
507837699fSSheng Yang {
517837699fSSheng Yang 	union {
527837699fSSheng Yang 		u64 ll;
537837699fSSheng Yang 		struct {
547837699fSSheng Yang 			u32 low, high;
557837699fSSheng Yang 		} l;
567837699fSSheng Yang 	} u, res;
577837699fSSheng Yang 	u64 rl, rh;
587837699fSSheng Yang 
597837699fSSheng Yang 	u.ll = a;
607837699fSSheng Yang 	rl = (u64)u.l.low * (u64)b;
617837699fSSheng Yang 	rh = (u64)u.l.high * (u64)b;
627837699fSSheng Yang 	rh += (rl >> 32);
63*6f6d6a1aSRoman Zippel 	res.l.high = div64_u64(rh, c);
64*6f6d6a1aSRoman Zippel 	res.l.low = div64_u64(((mod_64(rh, c) << 32) + (rl & 0xffffffff)), c);
657837699fSSheng Yang 	return res.ll;
667837699fSSheng Yang }
677837699fSSheng Yang 
687837699fSSheng Yang static void pit_set_gate(struct kvm *kvm, int channel, u32 val)
697837699fSSheng Yang {
707837699fSSheng Yang 	struct kvm_kpit_channel_state *c =
717837699fSSheng Yang 		&kvm->arch.vpit->pit_state.channels[channel];
727837699fSSheng Yang 
737837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&kvm->arch.vpit->pit_state.lock));
747837699fSSheng Yang 
757837699fSSheng Yang 	switch (c->mode) {
767837699fSSheng Yang 	default:
777837699fSSheng Yang 	case 0:
787837699fSSheng Yang 	case 4:
797837699fSSheng Yang 		/* XXX: just disable/enable counting */
807837699fSSheng Yang 		break;
817837699fSSheng Yang 	case 1:
827837699fSSheng Yang 	case 2:
837837699fSSheng Yang 	case 3:
847837699fSSheng Yang 	case 5:
857837699fSSheng Yang 		/* Restart counting on rising edge. */
867837699fSSheng Yang 		if (c->gate < val)
877837699fSSheng Yang 			c->count_load_time = ktime_get();
887837699fSSheng Yang 		break;
897837699fSSheng Yang 	}
907837699fSSheng Yang 
917837699fSSheng Yang 	c->gate = val;
927837699fSSheng Yang }
937837699fSSheng Yang 
947837699fSSheng Yang int pit_get_gate(struct kvm *kvm, int channel)
957837699fSSheng Yang {
967837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&kvm->arch.vpit->pit_state.lock));
977837699fSSheng Yang 
987837699fSSheng Yang 	return kvm->arch.vpit->pit_state.channels[channel].gate;
997837699fSSheng Yang }
1007837699fSSheng Yang 
1017837699fSSheng Yang static int pit_get_count(struct kvm *kvm, int channel)
1027837699fSSheng Yang {
1037837699fSSheng Yang 	struct kvm_kpit_channel_state *c =
1047837699fSSheng Yang 		&kvm->arch.vpit->pit_state.channels[channel];
1057837699fSSheng Yang 	s64 d, t;
1067837699fSSheng Yang 	int counter;
1077837699fSSheng Yang 
1087837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&kvm->arch.vpit->pit_state.lock));
1097837699fSSheng Yang 
1107837699fSSheng Yang 	t = ktime_to_ns(ktime_sub(ktime_get(), c->count_load_time));
1117837699fSSheng Yang 	d = muldiv64(t, KVM_PIT_FREQ, NSEC_PER_SEC);
1127837699fSSheng Yang 
1137837699fSSheng Yang 	switch (c->mode) {
1147837699fSSheng Yang 	case 0:
1157837699fSSheng Yang 	case 1:
1167837699fSSheng Yang 	case 4:
1177837699fSSheng Yang 	case 5:
1187837699fSSheng Yang 		counter = (c->count - d) & 0xffff;
1197837699fSSheng Yang 		break;
1207837699fSSheng Yang 	case 3:
1217837699fSSheng Yang 		/* XXX: may be incorrect for odd counts */
1227837699fSSheng Yang 		counter = c->count - (mod_64((2 * d), c->count));
1237837699fSSheng Yang 		break;
1247837699fSSheng Yang 	default:
1257837699fSSheng Yang 		counter = c->count - mod_64(d, c->count);
1267837699fSSheng Yang 		break;
1277837699fSSheng Yang 	}
1287837699fSSheng Yang 	return counter;
1297837699fSSheng Yang }
1307837699fSSheng Yang 
1317837699fSSheng Yang static int pit_get_out(struct kvm *kvm, int channel)
1327837699fSSheng Yang {
1337837699fSSheng Yang 	struct kvm_kpit_channel_state *c =
1347837699fSSheng Yang 		&kvm->arch.vpit->pit_state.channels[channel];
1357837699fSSheng Yang 	s64 d, t;
1367837699fSSheng Yang 	int out;
1377837699fSSheng Yang 
1387837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&kvm->arch.vpit->pit_state.lock));
1397837699fSSheng Yang 
1407837699fSSheng Yang 	t = ktime_to_ns(ktime_sub(ktime_get(), c->count_load_time));
1417837699fSSheng Yang 	d = muldiv64(t, KVM_PIT_FREQ, NSEC_PER_SEC);
1427837699fSSheng Yang 
1437837699fSSheng Yang 	switch (c->mode) {
1447837699fSSheng Yang 	default:
1457837699fSSheng Yang 	case 0:
1467837699fSSheng Yang 		out = (d >= c->count);
1477837699fSSheng Yang 		break;
1487837699fSSheng Yang 	case 1:
1497837699fSSheng Yang 		out = (d < c->count);
1507837699fSSheng Yang 		break;
1517837699fSSheng Yang 	case 2:
1527837699fSSheng Yang 		out = ((mod_64(d, c->count) == 0) && (d != 0));
1537837699fSSheng Yang 		break;
1547837699fSSheng Yang 	case 3:
1557837699fSSheng Yang 		out = (mod_64(d, c->count) < ((c->count + 1) >> 1));
1567837699fSSheng Yang 		break;
1577837699fSSheng Yang 	case 4:
1587837699fSSheng Yang 	case 5:
1597837699fSSheng Yang 		out = (d == c->count);
1607837699fSSheng Yang 		break;
1617837699fSSheng Yang 	}
1627837699fSSheng Yang 
1637837699fSSheng Yang 	return out;
1647837699fSSheng Yang }
1657837699fSSheng Yang 
1667837699fSSheng Yang static void pit_latch_count(struct kvm *kvm, int channel)
1677837699fSSheng Yang {
1687837699fSSheng Yang 	struct kvm_kpit_channel_state *c =
1697837699fSSheng Yang 		&kvm->arch.vpit->pit_state.channels[channel];
1707837699fSSheng Yang 
1717837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&kvm->arch.vpit->pit_state.lock));
1727837699fSSheng Yang 
1737837699fSSheng Yang 	if (!c->count_latched) {
1747837699fSSheng Yang 		c->latched_count = pit_get_count(kvm, channel);
1757837699fSSheng Yang 		c->count_latched = c->rw_mode;
1767837699fSSheng Yang 	}
1777837699fSSheng Yang }
1787837699fSSheng Yang 
1797837699fSSheng Yang static void pit_latch_status(struct kvm *kvm, int channel)
1807837699fSSheng Yang {
1817837699fSSheng Yang 	struct kvm_kpit_channel_state *c =
1827837699fSSheng Yang 		&kvm->arch.vpit->pit_state.channels[channel];
1837837699fSSheng Yang 
1847837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&kvm->arch.vpit->pit_state.lock));
1857837699fSSheng Yang 
1867837699fSSheng Yang 	if (!c->status_latched) {
1877837699fSSheng Yang 		/* TODO: Return NULL COUNT (bit 6). */
1887837699fSSheng Yang 		c->status = ((pit_get_out(kvm, channel) << 7) |
1897837699fSSheng Yang 				(c->rw_mode << 4) |
1907837699fSSheng Yang 				(c->mode << 1) |
1917837699fSSheng Yang 				c->bcd);
1927837699fSSheng Yang 		c->status_latched = 1;
1937837699fSSheng Yang 	}
1947837699fSSheng Yang }
1957837699fSSheng Yang 
1967837699fSSheng Yang int __pit_timer_fn(struct kvm_kpit_state *ps)
1977837699fSSheng Yang {
1987837699fSSheng Yang 	struct kvm_vcpu *vcpu0 = ps->pit->kvm->vcpus[0];
1997837699fSSheng Yang 	struct kvm_kpit_timer *pt = &ps->pit_timer;
2007837699fSSheng Yang 
2017837699fSSheng Yang 	atomic_inc(&pt->pending);
2027837699fSSheng Yang 	smp_mb__after_atomic_inc();
2037837699fSSheng Yang 	/* FIXME: handle case where the guest is in guest mode */
2047837699fSSheng Yang 	if (vcpu0 && waitqueue_active(&vcpu0->wq)) {
205a4535290SAvi Kivity 		vcpu0->arch.mp_state = KVM_MP_STATE_RUNNABLE;
2067837699fSSheng Yang 		wake_up_interruptible(&vcpu0->wq);
2077837699fSSheng Yang 	}
2087837699fSSheng Yang 
2097837699fSSheng Yang 	pt->timer.expires = ktime_add_ns(pt->timer.expires, pt->period);
2107837699fSSheng Yang 	pt->scheduled = ktime_to_ns(pt->timer.expires);
2117837699fSSheng Yang 
2127837699fSSheng Yang 	return (pt->period == 0 ? 0 : 1);
2137837699fSSheng Yang }
2147837699fSSheng Yang 
2153d80840dSMarcelo Tosatti int pit_has_pending_timer(struct kvm_vcpu *vcpu)
2163d80840dSMarcelo Tosatti {
2173d80840dSMarcelo Tosatti 	struct kvm_pit *pit = vcpu->kvm->arch.vpit;
2183d80840dSMarcelo Tosatti 
2193d80840dSMarcelo Tosatti 	if (pit && vcpu->vcpu_id == 0)
2203d80840dSMarcelo Tosatti 		return atomic_read(&pit->pit_state.pit_timer.pending);
2213d80840dSMarcelo Tosatti 
2223d80840dSMarcelo Tosatti 	return 0;
2233d80840dSMarcelo Tosatti }
2243d80840dSMarcelo Tosatti 
2257837699fSSheng Yang static enum hrtimer_restart pit_timer_fn(struct hrtimer *data)
2267837699fSSheng Yang {
2277837699fSSheng Yang 	struct kvm_kpit_state *ps;
2287837699fSSheng Yang 	int restart_timer = 0;
2297837699fSSheng Yang 
2307837699fSSheng Yang 	ps = container_of(data, struct kvm_kpit_state, pit_timer.timer);
2317837699fSSheng Yang 
2327837699fSSheng Yang 	restart_timer = __pit_timer_fn(ps);
2337837699fSSheng Yang 
2347837699fSSheng Yang 	if (restart_timer)
2357837699fSSheng Yang 		return HRTIMER_RESTART;
2367837699fSSheng Yang 	else
2377837699fSSheng Yang 		return HRTIMER_NORESTART;
2387837699fSSheng Yang }
2397837699fSSheng Yang 
2407837699fSSheng Yang static void destroy_pit_timer(struct kvm_kpit_timer *pt)
2417837699fSSheng Yang {
2427837699fSSheng Yang 	pr_debug("pit: execute del timer!\n");
2437837699fSSheng Yang 	hrtimer_cancel(&pt->timer);
2447837699fSSheng Yang }
2457837699fSSheng Yang 
2467837699fSSheng Yang static void create_pit_timer(struct kvm_kpit_timer *pt, u32 val, int is_period)
2477837699fSSheng Yang {
2487837699fSSheng Yang 	s64 interval;
2497837699fSSheng Yang 
2507837699fSSheng Yang 	interval = muldiv64(val, NSEC_PER_SEC, KVM_PIT_FREQ);
2517837699fSSheng Yang 
2527837699fSSheng Yang 	pr_debug("pit: create pit timer, interval is %llu nsec\n", interval);
2537837699fSSheng Yang 
2547837699fSSheng Yang 	/* TODO The new value only affected after the retriggered */
2557837699fSSheng Yang 	hrtimer_cancel(&pt->timer);
2567837699fSSheng Yang 	pt->period = (is_period == 0) ? 0 : interval;
2577837699fSSheng Yang 	pt->timer.function = pit_timer_fn;
2587837699fSSheng Yang 	atomic_set(&pt->pending, 0);
2597837699fSSheng Yang 
2607837699fSSheng Yang 	hrtimer_start(&pt->timer, ktime_add_ns(ktime_get(), interval),
2617837699fSSheng Yang 		      HRTIMER_MODE_ABS);
2627837699fSSheng Yang }
2637837699fSSheng Yang 
2647837699fSSheng Yang static void pit_load_count(struct kvm *kvm, int channel, u32 val)
2657837699fSSheng Yang {
2667837699fSSheng Yang 	struct kvm_kpit_state *ps = &kvm->arch.vpit->pit_state;
2677837699fSSheng Yang 
2687837699fSSheng Yang 	WARN_ON(!mutex_is_locked(&ps->lock));
2697837699fSSheng Yang 
2707837699fSSheng Yang 	pr_debug("pit: load_count val is %d, channel is %d\n", val, channel);
2717837699fSSheng Yang 
2727837699fSSheng Yang 	/*
2737837699fSSheng Yang 	 * Though spec said the state of 8254 is undefined after power-up,
2747837699fSSheng Yang 	 * seems some tricky OS like Windows XP depends on IRQ0 interrupt
2757837699fSSheng Yang 	 * when booting up.
2767837699fSSheng Yang 	 * So here setting initialize rate for it, and not a specific number
2777837699fSSheng Yang 	 */
2787837699fSSheng Yang 	if (val == 0)
2797837699fSSheng Yang 		val = 0x10000;
2807837699fSSheng Yang 
2817837699fSSheng Yang 	ps->channels[channel].count_load_time = ktime_get();
2827837699fSSheng Yang 	ps->channels[channel].count = val;
2837837699fSSheng Yang 
2847837699fSSheng Yang 	if (channel != 0)
2857837699fSSheng Yang 		return;
2867837699fSSheng Yang 
2877837699fSSheng Yang 	/* Two types of timer
2887837699fSSheng Yang 	 * mode 1 is one shot, mode 2 is period, otherwise del timer */
2897837699fSSheng Yang 	switch (ps->channels[0].mode) {
2907837699fSSheng Yang 	case 1:
2917837699fSSheng Yang 		create_pit_timer(&ps->pit_timer, val, 0);
2927837699fSSheng Yang 		break;
2937837699fSSheng Yang 	case 2:
2947837699fSSheng Yang 		create_pit_timer(&ps->pit_timer, val, 1);
2957837699fSSheng Yang 		break;
2967837699fSSheng Yang 	default:
2977837699fSSheng Yang 		destroy_pit_timer(&ps->pit_timer);
2987837699fSSheng Yang 	}
2997837699fSSheng Yang }
3007837699fSSheng Yang 
301e0f63cb9SSheng Yang void kvm_pit_load_count(struct kvm *kvm, int channel, u32 val)
302e0f63cb9SSheng Yang {
303e0f63cb9SSheng Yang 	mutex_lock(&kvm->arch.vpit->pit_state.lock);
304e0f63cb9SSheng Yang 	pit_load_count(kvm, channel, val);
305e0f63cb9SSheng Yang 	mutex_unlock(&kvm->arch.vpit->pit_state.lock);
306e0f63cb9SSheng Yang }
307e0f63cb9SSheng Yang 
3087837699fSSheng Yang static void pit_ioport_write(struct kvm_io_device *this,
3097837699fSSheng Yang 			     gpa_t addr, int len, const void *data)
3107837699fSSheng Yang {
3117837699fSSheng Yang 	struct kvm_pit *pit = (struct kvm_pit *)this->private;
3127837699fSSheng Yang 	struct kvm_kpit_state *pit_state = &pit->pit_state;
3137837699fSSheng Yang 	struct kvm *kvm = pit->kvm;
3147837699fSSheng Yang 	int channel, access;
3157837699fSSheng Yang 	struct kvm_kpit_channel_state *s;
3167837699fSSheng Yang 	u32 val = *(u32 *) data;
3177837699fSSheng Yang 
3187837699fSSheng Yang 	val  &= 0xff;
3197837699fSSheng Yang 	addr &= KVM_PIT_CHANNEL_MASK;
3207837699fSSheng Yang 
3217837699fSSheng Yang 	mutex_lock(&pit_state->lock);
3227837699fSSheng Yang 
3237837699fSSheng Yang 	if (val != 0)
3247837699fSSheng Yang 		pr_debug("pit: write addr is 0x%x, len is %d, val is 0x%x\n",
3257837699fSSheng Yang 			  (unsigned int)addr, len, val);
3267837699fSSheng Yang 
3277837699fSSheng Yang 	if (addr == 3) {
3287837699fSSheng Yang 		channel = val >> 6;
3297837699fSSheng Yang 		if (channel == 3) {
3307837699fSSheng Yang 			/* Read-Back Command. */
3317837699fSSheng Yang 			for (channel = 0; channel < 3; channel++) {
3327837699fSSheng Yang 				s = &pit_state->channels[channel];
3337837699fSSheng Yang 				if (val & (2 << channel)) {
3347837699fSSheng Yang 					if (!(val & 0x20))
3357837699fSSheng Yang 						pit_latch_count(kvm, channel);
3367837699fSSheng Yang 					if (!(val & 0x10))
3377837699fSSheng Yang 						pit_latch_status(kvm, channel);
3387837699fSSheng Yang 				}
3397837699fSSheng Yang 			}
3407837699fSSheng Yang 		} else {
3417837699fSSheng Yang 			/* Select Counter <channel>. */
3427837699fSSheng Yang 			s = &pit_state->channels[channel];
3437837699fSSheng Yang 			access = (val >> 4) & KVM_PIT_CHANNEL_MASK;
3447837699fSSheng Yang 			if (access == 0) {
3457837699fSSheng Yang 				pit_latch_count(kvm, channel);
3467837699fSSheng Yang 			} else {
3477837699fSSheng Yang 				s->rw_mode = access;
3487837699fSSheng Yang 				s->read_state = access;
3497837699fSSheng Yang 				s->write_state = access;
3507837699fSSheng Yang 				s->mode = (val >> 1) & 7;
3517837699fSSheng Yang 				if (s->mode > 5)
3527837699fSSheng Yang 					s->mode -= 4;
3537837699fSSheng Yang 				s->bcd = val & 1;
3547837699fSSheng Yang 			}
3557837699fSSheng Yang 		}
3567837699fSSheng Yang 	} else {
3577837699fSSheng Yang 		/* Write Count. */
3587837699fSSheng Yang 		s = &pit_state->channels[addr];
3597837699fSSheng Yang 		switch (s->write_state) {
3607837699fSSheng Yang 		default:
3617837699fSSheng Yang 		case RW_STATE_LSB:
3627837699fSSheng Yang 			pit_load_count(kvm, addr, val);
3637837699fSSheng Yang 			break;
3647837699fSSheng Yang 		case RW_STATE_MSB:
3657837699fSSheng Yang 			pit_load_count(kvm, addr, val << 8);
3667837699fSSheng Yang 			break;
3677837699fSSheng Yang 		case RW_STATE_WORD0:
3687837699fSSheng Yang 			s->write_latch = val;
3697837699fSSheng Yang 			s->write_state = RW_STATE_WORD1;
3707837699fSSheng Yang 			break;
3717837699fSSheng Yang 		case RW_STATE_WORD1:
3727837699fSSheng Yang 			pit_load_count(kvm, addr, s->write_latch | (val << 8));
3737837699fSSheng Yang 			s->write_state = RW_STATE_WORD0;
3747837699fSSheng Yang 			break;
3757837699fSSheng Yang 		}
3767837699fSSheng Yang 	}
3777837699fSSheng Yang 
3787837699fSSheng Yang 	mutex_unlock(&pit_state->lock);
3797837699fSSheng Yang }
3807837699fSSheng Yang 
3817837699fSSheng Yang static void pit_ioport_read(struct kvm_io_device *this,
3827837699fSSheng Yang 			    gpa_t addr, int len, void *data)
3837837699fSSheng Yang {
3847837699fSSheng Yang 	struct kvm_pit *pit = (struct kvm_pit *)this->private;
3857837699fSSheng Yang 	struct kvm_kpit_state *pit_state = &pit->pit_state;
3867837699fSSheng Yang 	struct kvm *kvm = pit->kvm;
3877837699fSSheng Yang 	int ret, count;
3887837699fSSheng Yang 	struct kvm_kpit_channel_state *s;
3897837699fSSheng Yang 
3907837699fSSheng Yang 	addr &= KVM_PIT_CHANNEL_MASK;
3917837699fSSheng Yang 	s = &pit_state->channels[addr];
3927837699fSSheng Yang 
3937837699fSSheng Yang 	mutex_lock(&pit_state->lock);
3947837699fSSheng Yang 
3957837699fSSheng Yang 	if (s->status_latched) {
3967837699fSSheng Yang 		s->status_latched = 0;
3977837699fSSheng Yang 		ret = s->status;
3987837699fSSheng Yang 	} else if (s->count_latched) {
3997837699fSSheng Yang 		switch (s->count_latched) {
4007837699fSSheng Yang 		default:
4017837699fSSheng Yang 		case RW_STATE_LSB:
4027837699fSSheng Yang 			ret = s->latched_count & 0xff;
4037837699fSSheng Yang 			s->count_latched = 0;
4047837699fSSheng Yang 			break;
4057837699fSSheng Yang 		case RW_STATE_MSB:
4067837699fSSheng Yang 			ret = s->latched_count >> 8;
4077837699fSSheng Yang 			s->count_latched = 0;
4087837699fSSheng Yang 			break;
4097837699fSSheng Yang 		case RW_STATE_WORD0:
4107837699fSSheng Yang 			ret = s->latched_count & 0xff;
4117837699fSSheng Yang 			s->count_latched = RW_STATE_MSB;
4127837699fSSheng Yang 			break;
4137837699fSSheng Yang 		}
4147837699fSSheng Yang 	} else {
4157837699fSSheng Yang 		switch (s->read_state) {
4167837699fSSheng Yang 		default:
4177837699fSSheng Yang 		case RW_STATE_LSB:
4187837699fSSheng Yang 			count = pit_get_count(kvm, addr);
4197837699fSSheng Yang 			ret = count & 0xff;
4207837699fSSheng Yang 			break;
4217837699fSSheng Yang 		case RW_STATE_MSB:
4227837699fSSheng Yang 			count = pit_get_count(kvm, addr);
4237837699fSSheng Yang 			ret = (count >> 8) & 0xff;
4247837699fSSheng Yang 			break;
4257837699fSSheng Yang 		case RW_STATE_WORD0:
4267837699fSSheng Yang 			count = pit_get_count(kvm, addr);
4277837699fSSheng Yang 			ret = count & 0xff;
4287837699fSSheng Yang 			s->read_state = RW_STATE_WORD1;
4297837699fSSheng Yang 			break;
4307837699fSSheng Yang 		case RW_STATE_WORD1:
4317837699fSSheng Yang 			count = pit_get_count(kvm, addr);
4327837699fSSheng Yang 			ret = (count >> 8) & 0xff;
4337837699fSSheng Yang 			s->read_state = RW_STATE_WORD0;
4347837699fSSheng Yang 			break;
4357837699fSSheng Yang 		}
4367837699fSSheng Yang 	}
4377837699fSSheng Yang 
4387837699fSSheng Yang 	if (len > sizeof(ret))
4397837699fSSheng Yang 		len = sizeof(ret);
4407837699fSSheng Yang 	memcpy(data, (char *)&ret, len);
4417837699fSSheng Yang 
4427837699fSSheng Yang 	mutex_unlock(&pit_state->lock);
4437837699fSSheng Yang }
4447837699fSSheng Yang 
4457837699fSSheng Yang static int pit_in_range(struct kvm_io_device *this, gpa_t addr)
4467837699fSSheng Yang {
4477837699fSSheng Yang 	return ((addr >= KVM_PIT_BASE_ADDRESS) &&
4487837699fSSheng Yang 		(addr < KVM_PIT_BASE_ADDRESS + KVM_PIT_MEM_LENGTH));
4497837699fSSheng Yang }
4507837699fSSheng Yang 
4517837699fSSheng Yang static void speaker_ioport_write(struct kvm_io_device *this,
4527837699fSSheng Yang 				 gpa_t addr, int len, const void *data)
4537837699fSSheng Yang {
4547837699fSSheng Yang 	struct kvm_pit *pit = (struct kvm_pit *)this->private;
4557837699fSSheng Yang 	struct kvm_kpit_state *pit_state = &pit->pit_state;
4567837699fSSheng Yang 	struct kvm *kvm = pit->kvm;
4577837699fSSheng Yang 	u32 val = *(u32 *) data;
4587837699fSSheng Yang 
4597837699fSSheng Yang 	mutex_lock(&pit_state->lock);
4607837699fSSheng Yang 	pit_state->speaker_data_on = (val >> 1) & 1;
4617837699fSSheng Yang 	pit_set_gate(kvm, 2, val & 1);
4627837699fSSheng Yang 	mutex_unlock(&pit_state->lock);
4637837699fSSheng Yang }
4647837699fSSheng Yang 
4657837699fSSheng Yang static void speaker_ioport_read(struct kvm_io_device *this,
4667837699fSSheng Yang 				gpa_t addr, int len, void *data)
4677837699fSSheng Yang {
4687837699fSSheng Yang 	struct kvm_pit *pit = (struct kvm_pit *)this->private;
4697837699fSSheng Yang 	struct kvm_kpit_state *pit_state = &pit->pit_state;
4707837699fSSheng Yang 	struct kvm *kvm = pit->kvm;
4717837699fSSheng Yang 	unsigned int refresh_clock;
4727837699fSSheng Yang 	int ret;
4737837699fSSheng Yang 
4747837699fSSheng Yang 	/* Refresh clock toggles at about 15us. We approximate as 2^14ns. */
4757837699fSSheng Yang 	refresh_clock = ((unsigned int)ktime_to_ns(ktime_get()) >> 14) & 1;
4767837699fSSheng Yang 
4777837699fSSheng Yang 	mutex_lock(&pit_state->lock);
4787837699fSSheng Yang 	ret = ((pit_state->speaker_data_on << 1) | pit_get_gate(kvm, 2) |
4797837699fSSheng Yang 		(pit_get_out(kvm, 2) << 5) | (refresh_clock << 4));
4807837699fSSheng Yang 	if (len > sizeof(ret))
4817837699fSSheng Yang 		len = sizeof(ret);
4827837699fSSheng Yang 	memcpy(data, (char *)&ret, len);
4837837699fSSheng Yang 	mutex_unlock(&pit_state->lock);
4847837699fSSheng Yang }
4857837699fSSheng Yang 
4867837699fSSheng Yang static int speaker_in_range(struct kvm_io_device *this, gpa_t addr)
4877837699fSSheng Yang {
4887837699fSSheng Yang 	return (addr == KVM_SPEAKER_BASE_ADDRESS);
4897837699fSSheng Yang }
4907837699fSSheng Yang 
491308b0f23SSheng Yang void kvm_pit_reset(struct kvm_pit *pit)
4927837699fSSheng Yang {
4937837699fSSheng Yang 	int i;
494308b0f23SSheng Yang 	struct kvm_kpit_channel_state *c;
495308b0f23SSheng Yang 
496308b0f23SSheng Yang 	mutex_lock(&pit->pit_state.lock);
497308b0f23SSheng Yang 	for (i = 0; i < 3; i++) {
498308b0f23SSheng Yang 		c = &pit->pit_state.channels[i];
499308b0f23SSheng Yang 		c->mode = 0xff;
500308b0f23SSheng Yang 		c->gate = (i != 2);
501308b0f23SSheng Yang 		pit_load_count(pit->kvm, i, 0);
502308b0f23SSheng Yang 	}
503308b0f23SSheng Yang 	mutex_unlock(&pit->pit_state.lock);
504308b0f23SSheng Yang 
505308b0f23SSheng Yang 	atomic_set(&pit->pit_state.pit_timer.pending, 0);
506308b0f23SSheng Yang 	pit->pit_state.inject_pending = 1;
507308b0f23SSheng Yang }
508308b0f23SSheng Yang 
509308b0f23SSheng Yang struct kvm_pit *kvm_create_pit(struct kvm *kvm)
510308b0f23SSheng Yang {
5117837699fSSheng Yang 	struct kvm_pit *pit;
5127837699fSSheng Yang 	struct kvm_kpit_state *pit_state;
5137837699fSSheng Yang 
5147837699fSSheng Yang 	pit = kzalloc(sizeof(struct kvm_pit), GFP_KERNEL);
5157837699fSSheng Yang 	if (!pit)
5167837699fSSheng Yang 		return NULL;
5177837699fSSheng Yang 
5187837699fSSheng Yang 	mutex_init(&pit->pit_state.lock);
5197837699fSSheng Yang 	mutex_lock(&pit->pit_state.lock);
5207837699fSSheng Yang 
5217837699fSSheng Yang 	/* Initialize PIO device */
5227837699fSSheng Yang 	pit->dev.read = pit_ioport_read;
5237837699fSSheng Yang 	pit->dev.write = pit_ioport_write;
5247837699fSSheng Yang 	pit->dev.in_range = pit_in_range;
5257837699fSSheng Yang 	pit->dev.private = pit;
5267837699fSSheng Yang 	kvm_io_bus_register_dev(&kvm->pio_bus, &pit->dev);
5277837699fSSheng Yang 
5287837699fSSheng Yang 	pit->speaker_dev.read = speaker_ioport_read;
5297837699fSSheng Yang 	pit->speaker_dev.write = speaker_ioport_write;
5307837699fSSheng Yang 	pit->speaker_dev.in_range = speaker_in_range;
5317837699fSSheng Yang 	pit->speaker_dev.private = pit;
5327837699fSSheng Yang 	kvm_io_bus_register_dev(&kvm->pio_bus, &pit->speaker_dev);
5337837699fSSheng Yang 
5347837699fSSheng Yang 	kvm->arch.vpit = pit;
5357837699fSSheng Yang 	pit->kvm = kvm;
5367837699fSSheng Yang 
5377837699fSSheng Yang 	pit_state = &pit->pit_state;
5387837699fSSheng Yang 	pit_state->pit = pit;
5397837699fSSheng Yang 	hrtimer_init(&pit_state->pit_timer.timer,
5407837699fSSheng Yang 		     CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
5417837699fSSheng Yang 	mutex_unlock(&pit->pit_state.lock);
5427837699fSSheng Yang 
543308b0f23SSheng Yang 	kvm_pit_reset(pit);
5447837699fSSheng Yang 
5457837699fSSheng Yang 	return pit;
5467837699fSSheng Yang }
5477837699fSSheng Yang 
5487837699fSSheng Yang void kvm_free_pit(struct kvm *kvm)
5497837699fSSheng Yang {
5507837699fSSheng Yang 	struct hrtimer *timer;
5517837699fSSheng Yang 
5527837699fSSheng Yang 	if (kvm->arch.vpit) {
5537837699fSSheng Yang 		mutex_lock(&kvm->arch.vpit->pit_state.lock);
5547837699fSSheng Yang 		timer = &kvm->arch.vpit->pit_state.pit_timer.timer;
5557837699fSSheng Yang 		hrtimer_cancel(timer);
5567837699fSSheng Yang 		mutex_unlock(&kvm->arch.vpit->pit_state.lock);
5577837699fSSheng Yang 		kfree(kvm->arch.vpit);
5587837699fSSheng Yang 	}
5597837699fSSheng Yang }
5607837699fSSheng Yang 
5617837699fSSheng Yang void __inject_pit_timer_intr(struct kvm *kvm)
5627837699fSSheng Yang {
5637837699fSSheng Yang 	mutex_lock(&kvm->lock);
5647837699fSSheng Yang 	kvm_ioapic_set_irq(kvm->arch.vioapic, 0, 1);
5657837699fSSheng Yang 	kvm_ioapic_set_irq(kvm->arch.vioapic, 0, 0);
5667837699fSSheng Yang 	kvm_pic_set_irq(pic_irqchip(kvm), 0, 1);
5677837699fSSheng Yang 	kvm_pic_set_irq(pic_irqchip(kvm), 0, 0);
5687837699fSSheng Yang 	mutex_unlock(&kvm->lock);
5697837699fSSheng Yang }
5707837699fSSheng Yang 
5717837699fSSheng Yang void kvm_inject_pit_timer_irqs(struct kvm_vcpu *vcpu)
5727837699fSSheng Yang {
5737837699fSSheng Yang 	struct kvm_pit *pit = vcpu->kvm->arch.vpit;
5747837699fSSheng Yang 	struct kvm *kvm = vcpu->kvm;
5757837699fSSheng Yang 	struct kvm_kpit_state *ps;
5767837699fSSheng Yang 
5777837699fSSheng Yang 	if (vcpu && pit) {
5787837699fSSheng Yang 		ps = &pit->pit_state;
5797837699fSSheng Yang 
5807837699fSSheng Yang 		/* Try to inject pending interrupts when:
5817837699fSSheng Yang 		 * 1. Pending exists
5827837699fSSheng Yang 		 * 2. Last interrupt was accepted or waited for too long time*/
5837837699fSSheng Yang 		if (atomic_read(&ps->pit_timer.pending) &&
5847837699fSSheng Yang 		    (ps->inject_pending ||
5857837699fSSheng Yang 		    (jiffies - ps->last_injected_time
5867837699fSSheng Yang 				>= KVM_MAX_PIT_INTR_INTERVAL))) {
5877837699fSSheng Yang 			ps->inject_pending = 0;
5887837699fSSheng Yang 			__inject_pit_timer_intr(kvm);
5897837699fSSheng Yang 			ps->last_injected_time = jiffies;
5907837699fSSheng Yang 		}
5917837699fSSheng Yang 	}
5927837699fSSheng Yang }
5937837699fSSheng Yang 
5947837699fSSheng Yang void kvm_pit_timer_intr_post(struct kvm_vcpu *vcpu, int vec)
5957837699fSSheng Yang {
5967837699fSSheng Yang 	struct kvm_arch *arch = &vcpu->kvm->arch;
5977837699fSSheng Yang 	struct kvm_kpit_state *ps;
5987837699fSSheng Yang 
5997837699fSSheng Yang 	if (vcpu && arch->vpit) {
6007837699fSSheng Yang 		ps = &arch->vpit->pit_state;
6017837699fSSheng Yang 		if (atomic_read(&ps->pit_timer.pending) &&
6027837699fSSheng Yang 		(((arch->vpic->pics[0].imr & 1) == 0 &&
6037837699fSSheng Yang 		  arch->vpic->pics[0].irq_base == vec) ||
6047837699fSSheng Yang 		  (arch->vioapic->redirtbl[0].fields.vector == vec &&
6057837699fSSheng Yang 		  arch->vioapic->redirtbl[0].fields.mask != 1))) {
6067837699fSSheng Yang 			ps->inject_pending = 1;
6077837699fSSheng Yang 			atomic_dec(&ps->pit_timer.pending);
6087837699fSSheng Yang 			ps->channels[0].count_load_time = ktime_get();
6097837699fSSheng Yang 		}
6107837699fSSheng Yang 	}
6117837699fSSheng Yang }
612