/*
- * Copyright (c) 1998-2000 Apple Computer, Inc. All rights reserved.
+ * Copyright (c) 1998-2000, 2009-2010 Apple Inc. All rights reserved.
*
* @APPLE_OSREFERENCE_LICENSE_HEADER_START@
*
*
* @APPLE_OSREFERENCE_LICENSE_HEADER_END@
*/
-/*
- * Copyright (c) 1999 Apple Computer, Inc. All rights reserved.
- *
- * IOTimerEventSource.cpp
- *
- * HISTORY
- * 2-Feb-1999 Joe Liu (jliu) created.
- * 1999-10-14 Godfrey van der Linden(gvdl)
- * Revamped to use thread_call APIs
- *
- */
#include <sys/cdefs.h>
#include <IOKit/IOWorkLoop.h>
#include <IOKit/IOTimeStamp.h>
+#include <IOKit/IOKitDebug.h>
+#if CONFIG_DTRACE
+#include <mach/sdt.h>
+#endif
#define super IOEventSource
OSDefineMetaClassAndStructors(IOTimerEventSource, IOEventSource)
OSMetaClassDefineReservedUnused(IOTimerEventSource, 6);
OSMetaClassDefineReservedUnused(IOTimerEventSource, 7);
+#if IOKITSTATS
+
+#define IOStatisticsInitializeCounter() \
+do { \
+ IOStatistics::setCounterType(IOEventSource::reserved->counter, kIOStatisticsTimerEventSourceCounter); \
+} while (0)
+
+#define IOStatisticsOpenGate() \
+do { \
+ IOStatistics::countOpenGate(me->IOEventSource::reserved->counter); \
+} while (0)
+
+#define IOStatisticsCloseGate() \
+do { \
+ IOStatistics::countCloseGate(me->IOEventSource::reserved->counter); \
+} while (0)
+
+#define IOStatisticsTimeout() \
+do { \
+ IOStatistics::countTimerTimeout(me->IOEventSource::reserved->counter); \
+} while (0)
+
+#else
+
+#define IOStatisticsInitializeCounter()
+#define IOStatisticsOpenGate()
+#define IOStatisticsCloseGate()
+#define IOStatisticsTimeout()
+
+#endif /* IOKITSTATS */
+
//
// reserved != 0 means IOTimerEventSource::timeoutAndRelease is being used,
// not a subclassed implementation.
//
-bool IOTimerEventSource::checkForWork() { return false; }
-
// Timeout handler function. This function is called by the kernel when
// the timeout interval expires.
//
{
IOTimerEventSource *me = (IOTimerEventSource *) self;
+ IOStatisticsTimeout();
+
if (me->enabled && me->action)
{
IOWorkLoop *
{
Action doit;
wl->closeGate();
+ IOStatisticsCloseGate();
doit = (Action) me->action;
if (doit && me->enabled && AbsoluteTime_to_scalar(&me->abstime))
{
- IOTimeStampConstant(IODBG_TIMES(IOTIMES_ACTION),
- (unsigned int) doit, (unsigned int) me->owner);
+ bool trace = (gIOKitTrace & kIOTraceTimers) ? true : false;
+
+ if (trace)
+ IOTimeStampStartConstant(IODBG_TIMES(IOTIMES_ACTION),
+ VM_KERNEL_UNSLIDE(doit), (uintptr_t) me->owner);
+
(*doit)(me->owner, me);
+#if CONFIG_DTRACE
+ DTRACE_TMR3(iotescallout__expire, Action, doit, OSObject, me->owner, void, me->workLoop);
+#endif
+
+ if (trace)
+ IOTimeStampEndConstant(IODBG_TIMES(IOTIMES_ACTION),
+ VM_KERNEL_UNSLIDE(doit), (uintptr_t) me->owner);
}
+ IOStatisticsOpenGate();
wl->openGate();
}
}
}
-void IOTimerEventSource::timeoutAndRelease(void * self, void * count)
+void IOTimerEventSource::timeoutAndRelease(void * self, void * c)
{
IOTimerEventSource *me = (IOTimerEventSource *) self;
+ /* The second parameter (a pointer) gets abused to carry an SInt32, so on LP64, "count"
+ must be cast to "long" before, in order to tell GCC we're not truncating a pointer. */
+ SInt32 count = (SInt32) (long) c;
+ IOStatisticsTimeout();
+
if (me->enabled && me->action)
{
IOWorkLoop *
{
Action doit;
wl->closeGate();
+ IOStatisticsCloseGate();
doit = (Action) me->action;
- if (doit && (me->reserved->calloutGeneration == (SInt32) count))
+ if (doit && (me->reserved->calloutGeneration == count))
{
- IOTimeStampConstant(IODBG_TIMES(IOTIMES_ACTION),
- (unsigned int) doit, (unsigned int) me->owner);
+ bool trace = (gIOKitTrace & kIOTraceTimers) ? true : false;
+
+ if (trace)
+ IOTimeStampStartConstant(IODBG_TIMES(IOTIMES_ACTION),
+ VM_KERNEL_UNSLIDE(doit), (uintptr_t) me->owner);
+
(*doit)(me->owner, me);
+#if CONFIG_DTRACE
+ DTRACE_TMR3(iotescallout__expire, Action, doit, OSObject, me->owner, void, me->workLoop);
+#endif
+
+ if (trace)
+ IOTimeStampEndConstant(IODBG_TIMES(IOTIMES_ACTION),
+ VM_KERNEL_UNSLIDE(doit), (uintptr_t) me->owner);
}
+ IOStatisticsOpenGate();
wl->openGate();
}
}
if (!calloutEntry)
return false;
+ IOStatisticsInitializeCounter();
+
return true;
}
return wakeAtTime(end);
}
+#if !defined(__LP64__)
IOReturn IOTimerEventSource::setTimeout(mach_timespec_t interval)
{
AbsoluteTime end, nsecs;
return wakeAtTime(end);
}
+#endif
IOReturn IOTimerEventSource::setTimeout(AbsoluteTime interval)
{
return wakeAtTime(end);
}
+#if !defined(__LP64__)
IOReturn IOTimerEventSource::wakeAtTime(mach_timespec_t inAbstime)
{
AbsoluteTime end, nsecs;
return wakeAtTime(end);
}
+#endif
void IOTimerEventSource::setWorkLoop(IOWorkLoop *inWorkLoop)
{
return kIOReturnNoResources;
abstime = inAbstime;
- if ( enabled && AbsoluteTime_to_scalar(&abstime) && workLoop )
+ if ( enabled && AbsoluteTime_to_scalar(&inAbstime) && AbsoluteTime_to_scalar(&abstime) && workLoop )
{
if (reserved)
{
reserved->workLoop = workLoop;
reserved->calloutGeneration++;
if (thread_call_enter1_delayed((thread_call_t) calloutEntry,
- (void *) reserved->calloutGeneration, abstime))
+ (void *)(uintptr_t) reserved->calloutGeneration, inAbstime))
{
release();
workLoop->release();
}
}
else
- thread_call_enter_delayed((thread_call_t) calloutEntry, abstime);
+ thread_call_enter_delayed((thread_call_t) calloutEntry, inAbstime);
}
return kIOReturnSuccess;