Files
xemu/hw/timer/arm_timer.c
T

411 lines
11 KiB
C
Raw Normal View History

/*
2006-04-09 01:32:52 +00:00
* ARM PrimeCell Timer modules.
*
* Copyright (c) 2005-2006 CodeSourcery.
* Written by Paul Brook
*
2011-06-26 12:21:35 +10:00
* This code is licensed under the GPL.
2006-04-09 01:32:52 +00:00
*/
2016-01-26 18:17:05 +00:00
#include "qemu/osdep.h"
2013-02-04 15:40:22 +01:00
#include "hw/sysbus.h"
2012-12-17 18:20:00 +01:00
#include "qemu/timer.h"
2011-12-29 06:19:51 +00:00
#include "qemu-common.h"
2013-02-04 15:40:22 +01:00
#include "hw/qdev.h"
#include "hw/ptimer.h"
2013-08-21 16:02:47 +01:00
#include "qemu/main-loop.h"
2015-12-15 13:16:16 +01:00
#include "qemu/log.h"
2006-04-09 01:32:52 +00:00
/* Common timer implementation. */
#define TIMER_CTRL_ONESHOT (1 << 0)
#define TIMER_CTRL_32BIT (1 << 1)
#define TIMER_CTRL_DIV1 (0 << 2)
#define TIMER_CTRL_DIV16 (1 << 2)
#define TIMER_CTRL_DIV256 (2 << 2)
#define TIMER_CTRL_IE (1 << 5)
#define TIMER_CTRL_PERIODIC (1 << 6)
#define TIMER_CTRL_ENABLE (1 << 7)
typedef struct {
2007-05-23 00:06:54 +00:00
ptimer_state *timer;
2006-04-09 01:32:52 +00:00
uint32_t control;
uint32_t limit;
int freq;
int int_level;
2007-04-07 18:14:41 +00:00
qemu_irq irq;
2006-04-09 01:32:52 +00:00
} arm_timer_state;
/* Check all active timers, and schedule the next timer interrupt. */
2007-05-23 00:06:54 +00:00
static void arm_timer_update(arm_timer_state *s)
2006-04-09 01:32:52 +00:00
{
/* Update interrupts. */
if (s->int_level && (s->control & TIMER_CTRL_IE)) {
2007-04-07 18:14:41 +00:00
qemu_irq_raise(s->irq);
2006-04-09 01:32:52 +00:00
} else {
2007-04-07 18:14:41 +00:00
qemu_irq_lower(s->irq);
2006-04-09 01:32:52 +00:00
}
}
2012-10-23 12:30:10 +02:00
static uint32_t arm_timer_read(void *opaque, hwaddr offset)
2006-04-09 01:32:52 +00:00
{
arm_timer_state *s = (arm_timer_state *)opaque;
switch (offset >> 2) {
case 0: /* TimerLoad */
case 6: /* TimerBGLoad */
return s->limit;
case 1: /* TimerValue */
2007-05-23 00:06:54 +00:00
return ptimer_get_count(s->timer);
2006-04-09 01:32:52 +00:00
case 2: /* TimerControl */
return s->control;
case 4: /* TimerRIS */
return s->int_level;
case 5: /* TimerMIS */
if ((s->control & TIMER_CTRL_IE) == 0)
return 0;
return s->int_level;
default:
qemu_log_mask(LOG_GUEST_ERROR,
"%s: Bad offset %x\n", __func__, (int)offset);
2006-04-09 01:32:52 +00:00
return 0;
}
}
2007-05-23 00:06:54 +00:00
/* Reset the timer limit after settings have changed. */
static void arm_timer_recalibrate(arm_timer_state *s, int reload)
{
uint32_t limit;
2010-05-02 15:20:52 +05:30
if ((s->control & (TIMER_CTRL_PERIODIC | TIMER_CTRL_ONESHOT)) == 0) {
2007-05-23 00:06:54 +00:00
/* Free running. */
if (s->control & TIMER_CTRL_32BIT)
limit = 0xffffffff;
else
limit = 0xffff;
} else {
/* Periodic. */
limit = s->limit;
}
ptimer_set_limit(s->timer, limit, reload);
}
2012-10-23 12:30:10 +02:00
static void arm_timer_write(void *opaque, hwaddr offset,
2006-04-09 01:32:52 +00:00
uint32_t value)
{
arm_timer_state *s = (arm_timer_state *)opaque;
2007-05-23 00:06:54 +00:00
int freq;
2006-04-09 01:32:52 +00:00
switch (offset >> 2) {
case 0: /* TimerLoad */
s->limit = value;
2007-05-23 00:06:54 +00:00
arm_timer_recalibrate(s, 1);
2006-04-09 01:32:52 +00:00
break;
case 1: /* TimerValue */
/* ??? Linux seems to want to write to this readonly register.
Ignore it. */
break;
case 2: /* TimerControl */
if (s->control & TIMER_CTRL_ENABLE) {
/* Pause the timer if it is running. This may cause some
inaccuracy dure to rounding, but avoids a whole lot of other
messyness. */
2007-05-23 00:06:54 +00:00
ptimer_stop(s->timer);
2006-04-09 01:32:52 +00:00
}
s->control = value;
2007-05-23 00:06:54 +00:00
freq = s->freq;
2006-04-09 01:32:52 +00:00
/* ??? Need to recalculate expiry time after changing divisor. */
switch ((value >> 2) & 3) {
2007-05-23 00:06:54 +00:00
case 1: freq >>= 4; break;
case 2: freq >>= 8; break;
2006-04-09 01:32:52 +00:00
}
2010-05-02 15:20:51 +05:30
arm_timer_recalibrate(s, s->control & TIMER_CTRL_ENABLE);
2007-05-23 00:06:54 +00:00
ptimer_set_freq(s->timer, freq);
2006-04-09 01:32:52 +00:00
if (s->control & TIMER_CTRL_ENABLE) {
/* Restart the timer if still enabled. */
2007-05-23 00:06:54 +00:00
ptimer_run(s->timer, (s->control & TIMER_CTRL_ONESHOT) != 0);
2006-04-09 01:32:52 +00:00
}
break;
case 3: /* TimerIntClr */
s->int_level = 0;
break;
case 6: /* TimerBGLoad */
s->limit = value;
2007-05-23 00:06:54 +00:00
arm_timer_recalibrate(s, 0);
2006-04-09 01:32:52 +00:00
break;
default:
qemu_log_mask(LOG_GUEST_ERROR,
"%s: Bad offset %x\n", __func__, (int)offset);
2006-04-09 01:32:52 +00:00
}
2007-05-23 00:06:54 +00:00
arm_timer_update(s);
2006-04-09 01:32:52 +00:00
}
static void arm_timer_tick(void *opaque)
{
2007-05-23 00:06:54 +00:00
arm_timer_state *s = (arm_timer_state *)opaque;
s->int_level = 1;
arm_timer_update(s);
2006-04-09 01:32:52 +00:00
}
2010-12-01 23:15:41 +01:00
static const VMStateDescription vmstate_arm_timer = {
.name = "arm_timer",
.version_id = 1,
.minimum_version_id = 1,
.fields = (VMStateField[]) {
2010-12-01 23:15:41 +01:00
VMSTATE_UINT32(control, arm_timer_state),
VMSTATE_UINT32(limit, arm_timer_state),
VMSTATE_INT32(int_level, arm_timer_state),
VMSTATE_PTIMER(timer, arm_timer_state),
VMSTATE_END_OF_LIST()
}
};
2008-07-02 16:48:32 +00:00
2009-05-14 22:35:07 +01:00
static arm_timer_state *arm_timer_init(uint32_t freq)
2006-04-09 01:32:52 +00:00
{
arm_timer_state *s;
2007-05-23 00:06:54 +00:00
QEMUBH *bh;
2006-04-09 01:32:52 +00:00
s = (arm_timer_state *)g_malloc0(sizeof(arm_timer_state));
2007-05-23 00:06:54 +00:00
s->freq = freq;
2006-04-09 01:32:52 +00:00
s->control = TIMER_CTRL_IE;
2007-05-23 00:06:54 +00:00
bh = qemu_bh_new(arm_timer_tick, s);
2016-09-22 18:13:06 +01:00
s->timer = ptimer_init(bh, PTIMER_POLICY_DEFAULT);
2010-12-01 23:15:41 +01:00
vmstate_register(NULL, -1, &vmstate_arm_timer, s);
2006-04-09 01:32:52 +00:00
return s;
}
/* ARM PrimeCell SP804 dual timer module.
2011-12-12 10:25:42 +00:00
* Docs at
* http://infocenter.arm.com/help/index.jsp?topic=/com.arm.doc.ddi0271d/index.html
*/
2006-04-09 01:32:52 +00:00
2013-07-27 14:17:41 +02:00
#define TYPE_SP804 "sp804"
#define SP804(obj) OBJECT_CHECK(SP804State, (obj), TYPE_SP804)
2013-07-27 14:15:46 +02:00
typedef struct SP804State {
2013-07-27 14:17:41 +02:00
SysBusDevice parent_obj;
2011-08-15 17:17:19 +03:00
MemoryRegion iomem;
2009-05-14 22:35:07 +01:00
arm_timer_state *timer[2];
2011-12-29 06:19:51 +00:00
uint32_t freq0, freq1;
2006-04-09 01:32:52 +00:00
int level[2];
2007-04-07 18:14:41 +00:00
qemu_irq irq;
2013-07-27 14:15:46 +02:00
} SP804State;
2006-04-09 01:32:52 +00:00
2011-12-12 10:25:42 +00:00
static const uint8_t sp804_ids[] = {
/* Timer ID */
0x04, 0x18, 0x14, 0,
/* PrimeCell ID */
0xd, 0xf0, 0x05, 0xb1
};
2007-04-07 18:14:41 +00:00
/* Merge the IRQs from the two component devices. */
2006-04-09 01:32:52 +00:00
static void sp804_set_irq(void *opaque, int irq, int level)
{
2013-07-27 14:15:46 +02:00
SP804State *s = (SP804State *)opaque;
2006-04-09 01:32:52 +00:00
s->level[irq] = level;
2007-04-07 18:14:41 +00:00
qemu_set_irq(s->irq, s->level[0] || s->level[1]);
2006-04-09 01:32:52 +00:00
}
2012-10-23 12:30:10 +02:00
static uint64_t sp804_read(void *opaque, hwaddr offset,
2011-08-15 17:17:19 +03:00
unsigned size)
2006-04-09 01:32:52 +00:00
{
2013-07-27 14:15:46 +02:00
SP804State *s = (SP804State *)opaque;
2006-04-09 01:32:52 +00:00
if (offset < 0x20) {
return arm_timer_read(s->timer[0], offset);
2011-12-12 10:25:42 +00:00
}
if (offset < 0x40) {
2006-04-09 01:32:52 +00:00
return arm_timer_read(s->timer[1], offset - 0x20);
}
2011-12-12 10:25:42 +00:00
/* TimerPeriphID */
if (offset >= 0xfe0 && offset <= 0xffc) {
return sp804_ids[(offset - 0xfe0) >> 2];
}
switch (offset) {
/* Integration Test control registers, which we won't support */
case 0xf00: /* TimerITCR */
case 0xf04: /* TimerITOP (strictly write only but..) */
qemu_log_mask(LOG_UNIMP,
"%s: integration test registers unimplemented\n",
__func__);
2011-12-12 10:25:42 +00:00
return 0;
}
qemu_log_mask(LOG_GUEST_ERROR,
"%s: Bad offset %x\n", __func__, (int)offset);
2011-12-12 10:25:42 +00:00
return 0;
2006-04-09 01:32:52 +00:00
}
2012-10-23 12:30:10 +02:00
static void sp804_write(void *opaque, hwaddr offset,
2011-08-15 17:17:19 +03:00
uint64_t value, unsigned size)
2006-04-09 01:32:52 +00:00
{
2013-07-27 14:15:46 +02:00
SP804State *s = (SP804State *)opaque;
2006-04-09 01:32:52 +00:00
if (offset < 0x20) {
arm_timer_write(s->timer[0], offset, value);
2011-12-12 10:25:42 +00:00
return;
2006-04-09 01:32:52 +00:00
}
2011-12-12 10:25:42 +00:00
if (offset < 0x40) {
arm_timer_write(s->timer[1], offset - 0x20, value);
return;
}
/* Technically we could be writing to the Test Registers, but not likely */
qemu_log_mask(LOG_GUEST_ERROR, "%s: Bad offset %x\n",
__func__, (int)offset);
2006-04-09 01:32:52 +00:00
}
2011-08-15 17:17:19 +03:00
static const MemoryRegionOps sp804_ops = {
.read = sp804_read,
.write = sp804_write,
.endianness = DEVICE_NATIVE_ENDIAN,
2006-04-09 01:32:52 +00:00
};
2010-12-01 23:12:32 +01:00
static const VMStateDescription vmstate_sp804 = {
.name = "sp804",
.version_id = 1,
.minimum_version_id = 1,
.fields = (VMStateField[]) {
2013-07-27 14:15:46 +02:00
VMSTATE_INT32_ARRAY(level, SP804State, 2),
2010-12-01 23:12:32 +01:00
VMSTATE_END_OF_LIST()
}
};
2008-07-02 16:48:32 +00:00
2016-02-18 14:16:20 +00:00
static void sp804_init(Object *obj)
2006-04-09 01:32:52 +00:00
{
2016-02-18 14:16:20 +00:00
SP804State *s = SP804(obj);
SysBusDevice *sbd = SYS_BUS_DEVICE(obj);
2006-04-09 01:32:52 +00:00
2013-07-27 14:17:41 +02:00
sysbus_init_irq(sbd, &s->irq);
2016-02-18 14:16:20 +00:00
memory_region_init_io(&s->iomem, obj, &sp804_ops, s,
"sp804", 0x1000);
sysbus_init_mmio(sbd, &s->iomem);
}
static void sp804_realize(DeviceState *dev, Error **errp)
{
SP804State *s = SP804(dev);
2011-12-29 06:19:51 +00:00
s->timer[0] = arm_timer_init(s->freq0);
s->timer[1] = arm_timer_init(s->freq1);
s->timer[0]->irq = qemu_allocate_irq(sp804_set_irq, s, 0);
s->timer[1]->irq = qemu_allocate_irq(sp804_set_irq, s, 1);
2006-04-09 01:32:52 +00:00
}
/* Integrator/CP timer module. */
#define TYPE_INTEGRATOR_PIT "integrator_pit"
#define INTEGRATOR_PIT(obj) \
OBJECT_CHECK(icp_pit_state, (obj), TYPE_INTEGRATOR_PIT)
2006-04-09 01:32:52 +00:00
typedef struct {
SysBusDevice parent_obj;
2011-08-15 17:17:19 +03:00
MemoryRegion iomem;
2009-05-14 22:35:07 +01:00
arm_timer_state *timer[3];
2006-04-09 01:32:52 +00:00
} icp_pit_state;
2012-10-23 12:30:10 +02:00
static uint64_t icp_pit_read(void *opaque, hwaddr offset,
2011-08-15 17:17:19 +03:00
unsigned size)
2006-04-09 01:32:52 +00:00
{
icp_pit_state *s = (icp_pit_state *)opaque;
int n;
/* ??? Don't know the PrimeCell ID for this device. */
n = offset >> 8;
if (n > 2) {
qemu_log_mask(LOG_GUEST_ERROR, "%s: Bad timer %d\n", __func__, n);
return 0;
2009-05-08 02:35:15 +01:00
}
2006-04-09 01:32:52 +00:00
return arm_timer_read(s->timer[n], offset & 0xff);
}
2012-10-23 12:30:10 +02:00
static void icp_pit_write(void *opaque, hwaddr offset,
2011-08-15 17:17:19 +03:00
uint64_t value, unsigned size)
2006-04-09 01:32:52 +00:00
{
icp_pit_state *s = (icp_pit_state *)opaque;
int n;
n = offset >> 8;
if (n > 2) {
qemu_log_mask(LOG_GUEST_ERROR, "%s: Bad timer %d\n", __func__, n);
return;
2009-05-08 02:35:15 +01:00
}
2006-04-09 01:32:52 +00:00
arm_timer_write(s->timer[n], offset & 0xff, value);
}
2011-08-15 17:17:19 +03:00
static const MemoryRegionOps icp_pit_ops = {
.read = icp_pit_read,
.write = icp_pit_write,
.endianness = DEVICE_NATIVE_ENDIAN,
2006-04-09 01:32:52 +00:00
};
2016-02-18 14:16:20 +00:00
static void icp_pit_init(Object *obj)
2006-04-09 01:32:52 +00:00
{
2016-02-18 14:16:20 +00:00
icp_pit_state *s = INTEGRATOR_PIT(obj);
SysBusDevice *dev = SYS_BUS_DEVICE(obj);
2006-04-09 01:32:52 +00:00
/* Timer 0 runs at the system clock speed (40MHz). */
2009-05-14 22:35:07 +01:00
s->timer[0] = arm_timer_init(40000000);
2006-04-09 01:32:52 +00:00
/* The other two timers run at 1MHz. */
2009-05-14 22:35:07 +01:00
s->timer[1] = arm_timer_init(1000000);
s->timer[2] = arm_timer_init(1000000);
sysbus_init_irq(dev, &s->timer[0]->irq);
sysbus_init_irq(dev, &s->timer[1]->irq);
sysbus_init_irq(dev, &s->timer[2]->irq);
2006-04-09 01:32:52 +00:00
2016-02-18 14:16:20 +00:00
memory_region_init_io(&s->iomem, obj, &icp_pit_ops, s,
"icp_pit", 0x1000);
sysbus_init_mmio(dev, &s->iomem);
2008-07-02 16:48:32 +00:00
/* This device has no state to save/restore. The component timers will
save themselves. */
}
2013-01-10 16:19:07 +01:00
static const TypeInfo icp_pit_info = {
.name = TYPE_INTEGRATOR_PIT,
.parent = TYPE_SYS_BUS_DEVICE,
.instance_size = sizeof(icp_pit_state),
2016-02-18 14:16:20 +00:00
.instance_init = icp_pit_init,
};
static Property sp804_properties[] = {
2013-07-27 14:15:46 +02:00
DEFINE_PROP_UINT32("freq0", SP804State, freq0, 1000000),
DEFINE_PROP_UINT32("freq1", SP804State, freq1, 1000000),
DEFINE_PROP_END_OF_LIST(),
};
static void sp804_class_init(ObjectClass *klass, void *data)
{
DeviceClass *k = DEVICE_CLASS(klass);
2016-02-18 14:16:20 +00:00
k->realize = sp804_realize;
k->props = sp804_properties;
2016-02-18 14:16:20 +00:00
k->vmsd = &vmstate_sp804;
}
2013-01-10 16:19:07 +01:00
static const TypeInfo sp804_info = {
2013-07-27 14:17:41 +02:00
.name = TYPE_SP804,
.parent = TYPE_SYS_BUS_DEVICE,
2013-07-27 14:15:46 +02:00
.instance_size = sizeof(SP804State),
2016-02-18 14:16:20 +00:00
.instance_init = sp804_init,
.class_init = sp804_class_init,
};
2012-02-09 15:20:55 +01:00
static void arm_timer_register_types(void)
2009-05-14 22:35:07 +01:00
{
type_register_static(&icp_pit_info);
type_register_static(&sp804_info);
2009-05-14 22:35:07 +01:00
}
2012-02-09 15:20:55 +01:00
type_init(arm_timer_register_types)