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30 #include <IOKit/IOLib.h>
31 #include <IOKit/IOService.h>
32 #include <IOKit/IOPlatformExpert.h>
33 #include <IOKit/IODeviceTreeSupport.h>
34 #include <IOKit/IOInterrupts.h>
35 #include <IOKit/IOInterruptController.h>
36 #include <IOKit/IOKitDebug.h>
37 #include <IOKit/IOTimeStamp.h>
40 /* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
42 #define super IOService
44 OSDefineMetaClassAndAbstractStructors(IOInterruptController
, IOService
);
46 OSMetaClassDefineReservedUnused(IOInterruptController
, 0);
47 OSMetaClassDefineReservedUnused(IOInterruptController
, 1);
48 OSMetaClassDefineReservedUnused(IOInterruptController
, 2);
49 OSMetaClassDefineReservedUnused(IOInterruptController
, 3);
50 OSMetaClassDefineReservedUnused(IOInterruptController
, 4);
51 OSMetaClassDefineReservedUnused(IOInterruptController
, 5);
53 /* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
55 IOReturn
IOInterruptController::registerInterrupt(IOService
*nub
, int source
,
57 IOInterruptHandler handler
,
60 IOInterruptSource
*interruptSources
;
61 IOInterruptVectorNumber vectorNumber
;
62 IOInterruptVector
*vector
;
67 bool canBeShared
, shouldBeShared
, wasAlreadyRegisterd
;
69 IOService
*originalNub
= NULL
; // Protected by wasAlreadyRegisterd
70 int originalSource
= 0; // Protected by wasAlreadyRegisterd
73 interruptSources
= nub
->_interruptSources
;
74 vectorData
= interruptSources
[source
].vectorData
;
75 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
76 vector
= &vectors
[vectorNumber
];
78 // Get the lock for this vector.
79 IOLockLock(vector
->interruptLock
);
81 // Check if the interrupt source can/should be shared.
82 canBeShared
= vectorCanBeShared(vectorNumber
, vector
);
83 IODTGetInterruptOptions(nub
, source
, &options
);
84 #if defined(__i386__) || defined(__x86_64__)
86 if (OSDynamicCast(IOPlatformDevice
, getProvider()) &&
87 (getInterruptType(nub
, source
, &interruptType
) == kIOReturnSuccess
) &&
88 (kIOInterruptTypeLevel
& interruptType
))
90 options
|= kIODTInterruptShared
;
93 shouldBeShared
= canBeShared
&& (options
& kIODTInterruptShared
);
94 wasAlreadyRegisterd
= vector
->interruptRegistered
;
96 // If the vector is registered and can not be shared return error.
97 if (wasAlreadyRegisterd
&& !canBeShared
) {
98 IOLockUnlock(vector
->interruptLock
);
99 return kIOReturnNoResources
;
102 // If this vector is already in use, and can be shared (implied),
103 // or it is not registered and should be shared,
104 // register as a shared interrupt.
105 if (wasAlreadyRegisterd
|| shouldBeShared
) {
106 // If this vector is not already shared, break it out.
107 if (vector
->sharedController
== 0) {
108 // Make the IOShareInterruptController instance
109 vector
->sharedController
= new IOSharedInterruptController
;
110 if (vector
->sharedController
== 0) {
111 IOLockUnlock(vector
->interruptLock
);
112 return kIOReturnNoMemory
;
115 if (wasAlreadyRegisterd
) {
116 // Save the nub and source for the original consumer.
117 originalNub
= vector
->nub
;
118 originalSource
= vector
->source
;
120 // Physically disable the interrupt, but mark it as being enabled in the hardware.
121 // The interruptDisabledSoft now indicates the driver's request for enablement.
122 disableVectorHard(vectorNumber
, vector
);
123 vector
->interruptDisabledHard
= 0;
126 // Initialize the new shared interrupt controller.
127 error
= vector
->sharedController
->initInterruptController(this, vectorData
);
128 // If the IOSharedInterruptController could not be initalized,
129 // if needed, put the original consumer's interrupt back to normal and
130 // get rid of whats left of the shared controller.
131 if (error
!= kIOReturnSuccess
) {
132 if (wasAlreadyRegisterd
) enableInterrupt(originalNub
, originalSource
);
133 vector
->sharedController
->release();
134 vector
->sharedController
= 0;
135 IOLockUnlock(vector
->interruptLock
);
139 // If there was an original consumer try to register it on the shared controller.
140 if (wasAlreadyRegisterd
) {
141 error
= vector
->sharedController
->registerInterrupt(originalNub
,
146 // If the original consumer could not be moved to the shared controller,
147 // put the original consumor's interrupt back to normal and
148 // get rid of whats left of the shared controller.
149 if (error
!= kIOReturnSuccess
) {
150 // Save the driver's interrupt enablement state.
151 wasDisabledSoft
= vector
->interruptDisabledSoft
;
153 // Make the interrupt really hard disabled.
154 vector
->interruptDisabledSoft
= 1;
155 vector
->interruptDisabledHard
= 1;
157 // Enable the original consumer's interrupt if needed.
158 if (!wasDisabledSoft
) originalNub
->enableInterrupt(originalSource
);
159 enableInterrupt(originalNub
, originalSource
);
161 vector
->sharedController
->release();
162 vector
->sharedController
= 0;
163 IOLockUnlock(vector
->interruptLock
);
168 // Fill in vector with the shared controller's info.
169 vector
->handler
= (IOInterruptHandler
)vector
->sharedController
->getInterruptHandlerAddress();
170 vector
->nub
= vector
->sharedController
;
172 vector
->target
= vector
->sharedController
;
175 // If the interrupt was already registered,
176 // save the driver's interrupt enablement state.
177 if (wasAlreadyRegisterd
) wasDisabledSoft
= vector
->interruptDisabledSoft
;
178 else wasDisabledSoft
= true;
180 // Do any specific initalization for this vector if it has not yet been used.
181 if (!wasAlreadyRegisterd
) initVector(vectorNumber
, vector
);
183 // Make the interrupt really hard disabled.
184 vector
->interruptDisabledSoft
= 1;
185 vector
->interruptDisabledHard
= 1;
186 vector
->interruptRegistered
= 1;
188 // Enable the original consumer's interrupt if needed.
189 // originalNub is protected by wasAlreadyRegisterd here (see line 184).
190 if (!wasDisabledSoft
) originalNub
->enableInterrupt(originalSource
);
193 error
= vector
->sharedController
->registerInterrupt(nub
, source
, target
,
195 IOLockUnlock(vector
->interruptLock
);
199 // Fill in vector with the client's info.
200 vector
->handler
= handler
;
202 vector
->source
= source
;
203 vector
->target
= target
;
204 vector
->refCon
= refCon
;
206 // Do any specific initalization for this vector.
207 initVector(vectorNumber
, vector
);
209 // Get the vector ready. It starts hard disabled.
210 vector
->interruptDisabledHard
= 1;
211 vector
->interruptDisabledSoft
= 1;
212 vector
->interruptRegistered
= 1;
214 IOLockUnlock(vector
->interruptLock
);
215 return kIOReturnSuccess
;
218 IOReturn
IOInterruptController::unregisterInterrupt(IOService
*nub
, int source
)
220 IOInterruptSource
*interruptSources
;
221 IOInterruptVectorNumber vectorNumber
;
222 IOInterruptVector
*vector
;
225 interruptSources
= nub
->_interruptSources
;
226 vectorData
= interruptSources
[source
].vectorData
;
227 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
228 vector
= &vectors
[vectorNumber
];
230 // Get the lock for this vector.
231 IOLockLock(vector
->interruptLock
);
233 // Return success if it is not already registered
234 if (!vector
->interruptRegistered
) {
235 IOLockUnlock(vector
->interruptLock
);
236 return kIOReturnSuccess
;
239 // Soft disable the source.
240 disableInterrupt(nub
, source
);
242 // Turn the source off at hardware.
243 disableVectorHard(vectorNumber
, vector
);
245 // Clear all the storage for the vector except for interruptLock.
246 vector
->interruptActive
= 0;
247 vector
->interruptDisabledSoft
= 0;
248 vector
->interruptDisabledHard
= 0;
249 vector
->interruptRegistered
= 0;
256 IOLockUnlock(vector
->interruptLock
);
257 return kIOReturnSuccess
;
260 IOReturn
IOInterruptController::getInterruptType(IOService
*nub
, int source
,
263 IOInterruptSource
*interruptSources
;
264 IOInterruptVectorNumber vectorNumber
;
265 IOInterruptVector
*vector
;
268 if (interruptType
== 0) return kIOReturnBadArgument
;
270 interruptSources
= nub
->_interruptSources
;
271 vectorData
= interruptSources
[source
].vectorData
;
272 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
273 vector
= &vectors
[vectorNumber
];
275 *interruptType
= getVectorType(vectorNumber
, vector
);
277 return kIOReturnSuccess
;
280 IOReturn
IOInterruptController::enableInterrupt(IOService
*nub
, int source
)
282 IOInterruptSource
*interruptSources
;
283 IOInterruptVectorNumber vectorNumber
;
284 IOInterruptVector
*vector
;
287 interruptSources
= nub
->_interruptSources
;
288 vectorData
= interruptSources
[source
].vectorData
;
289 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
290 vector
= &vectors
[vectorNumber
];
292 if (vector
->interruptDisabledSoft
) {
293 vector
->interruptDisabledSoft
= 0;
294 #if !defined(__i386__) && !defined(__x86_64__)
298 if (!getPlatform()->atInterruptLevel()) {
299 while (vector
->interruptActive
)
302 if (vector
->interruptDisabledHard
) {
303 vector
->interruptDisabledHard
= 0;
305 enableVector(vectorNumber
, vector
);
309 return kIOReturnSuccess
;
312 IOReturn
IOInterruptController::disableInterrupt(IOService
*nub
, int source
)
314 IOInterruptSource
*interruptSources
;
315 IOInterruptVectorNumber vectorNumber
;
316 IOInterruptVector
*vector
;
319 interruptSources
= nub
->_interruptSources
;
320 vectorData
= interruptSources
[source
].vectorData
;
321 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
322 vector
= &vectors
[vectorNumber
];
324 vector
->interruptDisabledSoft
= 1;
325 #if !defined(__i386__) && !defined(__x86_64__)
329 if (!getPlatform()->atInterruptLevel()) {
330 while (vector
->interruptActive
)
334 return kIOReturnSuccess
;
337 IOReturn
IOInterruptController::causeInterrupt(IOService
*nub
, int source
)
339 IOInterruptSource
*interruptSources
;
340 IOInterruptVectorNumber vectorNumber
;
341 IOInterruptVector
*vector
;
344 interruptSources
= nub
->_interruptSources
;
345 vectorData
= interruptSources
[source
].vectorData
;
346 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
347 vector
= &vectors
[vectorNumber
];
349 causeVector(vectorNumber
, vector
);
351 return kIOReturnSuccess
;
354 IOInterruptAction
IOInterruptController::getInterruptHandlerAddress(void)
359 IOReturn
IOInterruptController::handleInterrupt(void *refCon
, IOService
*nub
,
362 return kIOReturnInvalid
;
366 // Methods to be overridden for simplifed interrupt controller subclasses.
368 bool IOInterruptController::vectorCanBeShared(IOInterruptVectorNumber
/*vectorNumber*/,
369 IOInterruptVector */
*vector*/
)
374 void IOInterruptController::initVector(IOInterruptVectorNumber
/*vectorNumber*/,
375 IOInterruptVector */
*vector*/
)
379 int IOInterruptController::getVectorType(IOInterruptVectorNumber
/*vectorNumber*/,
380 IOInterruptVector */
*vector*/
)
382 return kIOInterruptTypeEdge
;
385 void IOInterruptController::disableVectorHard(IOInterruptVectorNumber
/*vectorNumber*/,
386 IOInterruptVector */
*vector*/
)
390 void IOInterruptController::enableVector(IOInterruptVectorNumber
/*vectorNumber*/,
391 IOInterruptVector */
*vector*/
)
395 void IOInterruptController::causeVector(IOInterruptVectorNumber
/*vectorNumber*/,
396 IOInterruptVector */
*vector*/
)
401 /* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
404 #define super IOInterruptController
406 OSDefineMetaClassAndStructors(IOSharedInterruptController
, IOInterruptController
);
408 OSMetaClassDefineReservedUnused(IOSharedInterruptController
, 0);
409 OSMetaClassDefineReservedUnused(IOSharedInterruptController
, 1);
410 OSMetaClassDefineReservedUnused(IOSharedInterruptController
, 2);
411 OSMetaClassDefineReservedUnused(IOSharedInterruptController
, 3);
413 /* * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * * */
415 #define kIOSharedInterruptControllerDefaultVectors (128)
417 IOReturn
IOSharedInterruptController::initInterruptController(IOInterruptController
*parentController
, OSData
*parentSource
)
419 int cnt
, interruptType
;
425 return kIOReturnNoResources
;
427 // Set provider to this so enable/disable nub stuff works.
430 // Allocate the IOInterruptSource so this can act like a nub.
431 _interruptSources
= (IOInterruptSource
*)IOMalloc(sizeof(IOInterruptSource
));
432 if (_interruptSources
== 0) return kIOReturnNoMemory
;
433 _numInterruptSources
= 1;
435 // Set up the IOInterruptSource to point at this.
436 parentController
->retain();
437 parentSource
->retain();
438 _interruptSources
[0].interruptController
= parentController
;
439 _interruptSources
[0].vectorData
= parentSource
;
441 sourceIsLevel
= false;
442 error
= provider
->getInterruptType(0, &interruptType
);
443 if (error
== kIOReturnSuccess
) {
444 if (interruptType
& kIOInterruptTypeLevel
)
445 sourceIsLevel
= true;
448 // Allocate the memory for the vectors
449 numVectors
= kIOSharedInterruptControllerDefaultVectors
; // For now a constant number.
450 vectors
= (IOInterruptVector
*)IOMalloc(numVectors
* sizeof(IOInterruptVector
));
451 if (vectors
== NULL
) {
452 IOFree(_interruptSources
, sizeof(IOInterruptSource
));
453 return kIOReturnNoMemory
;
455 bzero(vectors
, numVectors
* sizeof(IOInterruptVector
));
457 // Allocate the lock for the controller.
458 controllerLock
= IOSimpleLockAlloc();
459 if (controllerLock
== 0) return kIOReturnNoResources
;
461 // Allocate locks for the vectors.
462 for (cnt
= 0; cnt
< numVectors
; cnt
++) {
463 vectors
[cnt
].interruptLock
= IOLockAlloc();
464 if (vectors
[cnt
].interruptLock
== NULL
) {
465 for (cnt
= 0; cnt
< numVectors
; cnt
++) {
466 if (vectors
[cnt
].interruptLock
!= NULL
)
467 IOLockFree(vectors
[cnt
].interruptLock
);
469 return kIOReturnNoResources
;
473 numVectors
= 0; // reset the high water mark for used vectors
474 vectorsRegistered
= 0;
476 controllerDisabled
= 1;
478 return kIOReturnSuccess
;
481 IOReturn
IOSharedInterruptController::registerInterrupt(IOService
*nub
,
484 IOInterruptHandler handler
,
487 IOInterruptSource
*interruptSources
;
488 IOInterruptVectorNumber vectorNumber
;
489 IOInterruptVector
*vector
= 0;
491 IOInterruptState interruptState
;
493 interruptSources
= nub
->_interruptSources
;
495 // Find a free vector.
496 vectorNumber
= kIOSharedInterruptControllerDefaultVectors
;
497 while (vectorsRegistered
!= kIOSharedInterruptControllerDefaultVectors
) {
498 for (vectorNumber
= 0; vectorNumber
< kIOSharedInterruptControllerDefaultVectors
; vectorNumber
++) {
499 vector
= &vectors
[vectorNumber
];
501 // Get the lock for this vector.
502 IOLockLock(vector
->interruptLock
);
504 // Is it unregistered?
505 if (!vector
->interruptRegistered
) break;
507 // Move along to the next one.
508 IOLockUnlock(vector
->interruptLock
);
511 if (vectorNumber
!= kIOSharedInterruptControllerDefaultVectors
) break;
514 // Could not find a free one, so give up.
515 if (vectorNumber
== kIOSharedInterruptControllerDefaultVectors
) {
516 return kIOReturnNoResources
;
519 // Create the vectorData for the IOInterruptSource.
520 vectorData
= OSData::withBytes(&vectorNumber
, sizeof(vectorNumber
));
521 if (vectorData
== 0) {
522 return kIOReturnNoMemory
;
525 // Fill in the IOInterruptSource with the controller's info.
526 interruptSources
[source
].interruptController
= this;
527 interruptSources
[source
].vectorData
= vectorData
;
529 // Fill in vector with the client's info.
530 vector
->handler
= handler
;
532 vector
->source
= source
;
533 vector
->target
= target
;
534 vector
->refCon
= refCon
;
536 // Get the vector ready. It starts off soft disabled.
537 vector
->interruptDisabledSoft
= 1;
538 vector
->interruptRegistered
= 1;
540 interruptState
= IOSimpleLockLockDisableInterrupt(controllerLock
);
541 // Move the high water mark if needed
542 if (++vectorsRegistered
> numVectors
) numVectors
= vectorsRegistered
;
543 IOSimpleLockUnlockEnableInterrupt(controllerLock
, interruptState
);
545 IOLockUnlock(vector
->interruptLock
);
546 return kIOReturnSuccess
;
549 IOReturn
IOSharedInterruptController::unregisterInterrupt(IOService
*nub
,
552 IOInterruptVectorNumber vectorNumber
;
553 IOInterruptVector
*vector
;
554 IOInterruptState interruptState
;
556 for (vectorNumber
= 0; vectorNumber
< kIOSharedInterruptControllerDefaultVectors
; vectorNumber
++) {
557 vector
= &vectors
[vectorNumber
];
559 // Get the lock for this vector.
560 IOLockLock(vector
->interruptLock
);
562 // Return success if it is not already registered
563 if (!vector
->interruptRegistered
564 || (vector
->nub
!= nub
) || (vector
->source
!= source
)) {
565 IOLockUnlock(vector
->interruptLock
);
569 // Soft disable the source and the controller too.
570 disableInterrupt(nub
, source
);
572 // Clear all the storage for the vector except for interruptLock.
573 vector
->interruptActive
= 0;
574 vector
->interruptDisabledSoft
= 0;
575 vector
->interruptDisabledHard
= 0;
576 vector
->interruptRegistered
= 0;
583 interruptState
= IOSimpleLockLockDisableInterrupt(controllerLock
);
585 IOSimpleLockUnlockEnableInterrupt(controllerLock
, interruptState
);
587 // Move along to the next one.
588 IOLockUnlock(vector
->interruptLock
);
591 // Re-enable the controller if all vectors are enabled.
592 if (vectorsEnabled
== vectorsRegistered
) {
593 controllerDisabled
= 0;
594 provider
->enableInterrupt(0);
597 return kIOReturnSuccess
;
600 IOReturn
IOSharedInterruptController::getInterruptType(IOService */
*nub*/
,
604 return provider
->getInterruptType(0, interruptType
);
607 IOReturn
IOSharedInterruptController::enableInterrupt(IOService
*nub
,
610 IOInterruptSource
*interruptSources
;
611 IOInterruptVectorNumber vectorNumber
;
612 IOInterruptVector
*vector
;
614 IOInterruptState interruptState
;
616 interruptSources
= nub
->_interruptSources
;
617 vectorData
= interruptSources
[source
].vectorData
;
618 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
619 vector
= &vectors
[vectorNumber
];
621 interruptState
= IOSimpleLockLockDisableInterrupt(controllerLock
);
622 if (!vector
->interruptDisabledSoft
) {
623 IOSimpleLockUnlockEnableInterrupt(controllerLock
, interruptState
);
624 return kIOReturnSuccess
;
627 vector
->interruptDisabledSoft
= 0;
629 IOSimpleLockUnlockEnableInterrupt(controllerLock
, interruptState
);
631 if (controllerDisabled
&& (vectorsEnabled
== vectorsRegistered
)) {
632 controllerDisabled
= 0;
633 provider
->enableInterrupt(0);
636 return kIOReturnSuccess
;
639 IOReturn
IOSharedInterruptController::disableInterrupt(IOService
*nub
,
642 IOInterruptSource
*interruptSources
;
643 IOInterruptVectorNumber vectorNumber
;
644 IOInterruptVector
*vector
;
646 IOInterruptState interruptState
;
648 interruptSources
= nub
->_interruptSources
;
649 vectorData
= interruptSources
[source
].vectorData
;
650 vectorNumber
= *(IOInterruptVectorNumber
*)vectorData
->getBytesNoCopy();
651 vector
= &vectors
[vectorNumber
];
653 interruptState
= IOSimpleLockLockDisableInterrupt(controllerLock
);
654 if (!vector
->interruptDisabledSoft
) {
655 vector
->interruptDisabledSoft
= 1;
656 #if !defined(__i386__) && !defined(__x86_64__)
662 IOSimpleLockUnlockEnableInterrupt(controllerLock
, interruptState
);
664 if (!getPlatform()->atInterruptLevel()) {
665 while (vector
->interruptActive
)
669 return kIOReturnSuccess
;
672 IOInterruptAction
IOSharedInterruptController::getInterruptHandlerAddress(void)
674 return OSMemberFunctionCast(IOInterruptAction
,
675 this, &IOSharedInterruptController::handleInterrupt
);
678 IOReturn
IOSharedInterruptController::handleInterrupt(void * /*refCon*/,
682 IOInterruptVectorNumber vectorNumber
;
683 IOInterruptVector
*vector
;
685 for (vectorNumber
= 0; vectorNumber
< numVectors
; vectorNumber
++) {
686 vector
= &vectors
[vectorNumber
];
688 vector
->interruptActive
= 1;
689 #if !defined(__i386__) && !defined(__x86_64__)
693 if (!vector
->interruptDisabledSoft
) {
695 // Call the handler if it exists.
696 if (vector
->interruptRegistered
) {
698 bool trace
= (gIOKitTrace
& kIOTraceInterrupts
) ? true : false;
701 IOTimeStampStartConstant(IODBG_INTC(IOINTC_HANDLER
),
702 (uintptr_t) vectorNumber
, (uintptr_t) vector
->handler
, (uintptr_t)vector
->target
);
705 vector
->handler(vector
->target
, vector
->refCon
, vector
->nub
, vector
->source
);
708 IOTimeStampEndConstant(IODBG_INTC(IOINTC_HANDLER
),
709 (uintptr_t) vectorNumber
, (uintptr_t) vector
->handler
, (uintptr_t)vector
->target
);
714 vector
->interruptActive
= 0;
717 // if any of the vectors are dissabled, then dissable this controller.
718 IOSimpleLockLock(controllerLock
);
719 if (vectorsEnabled
!= vectorsRegistered
) {
720 nub
->disableInterrupt(0);
721 controllerDisabled
= 1;
723 IOSimpleLockUnlock(controllerLock
);
725 return kIOReturnSuccess
;