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📄 evgpe.c

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 ******************************************************************************/u32acpi_ev_gpe_detect (	struct acpi_gpe_xrupt_info      *gpe_xrupt_list){	u32                             int_status = ACPI_INTERRUPT_NOT_HANDLED;	u8                              enabled_status_byte;	struct acpi_gpe_register_info   *gpe_register_info;	u32                             status_reg;	u32                             enable_reg;	acpi_status                     status;	struct acpi_gpe_block_info      *gpe_block;	acpi_native_uint                i;	acpi_native_uint                j;	ACPI_FUNCTION_NAME ("ev_gpe_detect");	/* Check for the case where there are no GPEs */	if (!gpe_xrupt_list) {		return (int_status);	}	/* Examine all GPE blocks attached to this interrupt level */	acpi_os_acquire_lock (acpi_gbl_gpe_lock, ACPI_ISR);	gpe_block = gpe_xrupt_list->gpe_block_list_head;	while (gpe_block) {		/*		 * Read all of the 8-bit GPE status and enable registers		 * in this GPE block, saving all of them.		 * Find all currently active GP events.		 */		for (i = 0; i < gpe_block->register_count; i++) {			/* Get the next status/enable pair */			gpe_register_info = &gpe_block->register_info[i];			/* Read the Status Register */			status = acpi_hw_low_level_read (ACPI_GPE_REGISTER_WIDTH, &status_reg,					 &gpe_register_info->status_address);			if (ACPI_FAILURE (status)) {				goto unlock_and_exit;			}			/* Read the Enable Register */			status = acpi_hw_low_level_read (ACPI_GPE_REGISTER_WIDTH, &enable_reg,					 &gpe_register_info->enable_address);			if (ACPI_FAILURE (status)) {				goto unlock_and_exit;			}			ACPI_DEBUG_PRINT ((ACPI_DB_INTERRUPTS,				"Read GPE Register at GPE%X: Status=%02X, Enable=%02X\n",				gpe_register_info->base_gpe_number, status_reg, enable_reg));			/* First check if there is anything active at all in this register */			enabled_status_byte = (u8) (status_reg & enable_reg);			if (!enabled_status_byte) {				/* No active GPEs in this register, move on */				continue;			}			/* Now look at the individual GPEs in this byte register */			for (j = 0; j < ACPI_GPE_REGISTER_WIDTH; j++) {				/* Examine one GPE bit */				if (enabled_status_byte & acpi_gbl_decode_to8bit[j]) {					/*					 * Found an active GPE. Dispatch the event to a handler					 * or method.					 */					int_status |= acpi_ev_gpe_dispatch (							  &gpe_block->event_info[(i * ACPI_GPE_REGISTER_WIDTH) + j],							  (u32) j + gpe_register_info->base_gpe_number);				}			}		}		gpe_block = gpe_block->next;	}unlock_and_exit:	acpi_os_release_lock (acpi_gbl_gpe_lock, ACPI_ISR);	return (int_status);}/******************************************************************************* * * FUNCTION:    acpi_ev_asynch_execute_gpe_method * * PARAMETERS:  Context (gpe_event_info) - Info for this GPE * * RETURN:      None * * DESCRIPTION: Perform the actual execution of a GPE control method.  This *              function is called from an invocation of acpi_os_queue_for_execution *              (and therefore does NOT execute at interrupt level) so that *              the control method itself is not executed in the context of *              an interrupt handler. * ******************************************************************************/static void ACPI_SYSTEM_XFACEacpi_ev_asynch_execute_gpe_method (	void                            *context){	struct acpi_gpe_event_info      *gpe_event_info = (void *) context;	u32                             gpe_number = 0;	acpi_status                     status;	struct acpi_gpe_event_info      local_gpe_event_info;	struct acpi_parameter_info      info;	ACPI_FUNCTION_TRACE ("ev_asynch_execute_gpe_method");	status = acpi_ut_acquire_mutex (ACPI_MTX_EVENTS);	if (ACPI_FAILURE (status)) {		return_VOID;	}	/* Must revalidate the gpe_number/gpe_block */	if (!acpi_ev_valid_gpe_event (gpe_event_info)) {		status = acpi_ut_release_mutex (ACPI_MTX_EVENTS);		return_VOID;	}	/* Set the GPE flags for return to enabled state */	(void) acpi_ev_enable_gpe (gpe_event_info, FALSE);	/*	 * Take a snapshot of the GPE info for this level - we copy the	 * info to prevent a race condition with remove_handler/remove_block.	 */	ACPI_MEMCPY (&local_gpe_event_info, gpe_event_info, sizeof (struct acpi_gpe_event_info));	status = acpi_ut_release_mutex (ACPI_MTX_EVENTS);	if (ACPI_FAILURE (status)) {		return_VOID;	}	/*	 * Must check for control method type dispatch one more	 * time to avoid race with ev_gpe_install_handler	 */	if ((local_gpe_event_info.flags & ACPI_GPE_DISPATCH_MASK) == ACPI_GPE_DISPATCH_METHOD) {		/*		 * Invoke the GPE Method (_Lxx, _Exx) i.e., evaluate the _Lxx/_Exx		 * control method that corresponds to this GPE		 */		info.node = local_gpe_event_info.dispatch.method_node;		info.parameters = ACPI_CAST_PTR (union acpi_operand_object *, gpe_event_info);		info.parameter_type = ACPI_PARAM_GPE;		status = acpi_ns_evaluate_by_handle (&info);		if (ACPI_FAILURE (status)) {			ACPI_REPORT_ERROR ((				"%s while evaluating method [%4.4s] for GPE[%2X]\n",				acpi_format_exception (status),				acpi_ut_get_node_name (local_gpe_event_info.dispatch.method_node),				gpe_number));		}	}	if ((local_gpe_event_info.flags & ACPI_GPE_XRUPT_TYPE_MASK) == ACPI_GPE_LEVEL_TRIGGERED) {		/*		 * GPE is level-triggered, we clear the GPE status bit after		 * handling the event.		 */		status = acpi_hw_clear_gpe (&local_gpe_event_info);		if (ACPI_FAILURE (status)) {			return_VOID;		}	}	/* Enable this GPE */	(void) acpi_hw_write_gpe_enable_reg (&local_gpe_event_info);	return_VOID;}/******************************************************************************* * * FUNCTION:    acpi_ev_gpe_dispatch * * PARAMETERS:  gpe_event_info  - info for this GPE *              gpe_number      - Number relative to the parent GPE block * * RETURN:      INTERRUPT_HANDLED or INTERRUPT_NOT_HANDLED * * DESCRIPTION: Dispatch a General Purpose Event to either a function (e.g. EC) *              or method (e.g. _Lxx/_Exx) handler. * *              This function executes at interrupt level. * ******************************************************************************/u32acpi_ev_gpe_dispatch (	struct acpi_gpe_event_info      *gpe_event_info,	u32                             gpe_number){	acpi_status                     status;	ACPI_FUNCTION_TRACE ("ev_gpe_dispatch");	/*	 * If edge-triggered, clear the GPE status bit now.  Note that	 * level-triggered events are cleared after the GPE is serviced.	 */	if ((gpe_event_info->flags & ACPI_GPE_XRUPT_TYPE_MASK) == ACPI_GPE_EDGE_TRIGGERED) {		status = acpi_hw_clear_gpe (gpe_event_info);		if (ACPI_FAILURE (status)) {			ACPI_REPORT_ERROR (("acpi_ev_gpe_dispatch: %s, Unable to clear GPE[%2X]\n",				acpi_format_exception (status), gpe_number));			return_VALUE (ACPI_INTERRUPT_NOT_HANDLED);		}	}	/* Save current system state */	if (acpi_gbl_system_awake_and_running) {		ACPI_SET_BIT (gpe_event_info->flags, ACPI_GPE_SYSTEM_RUNNING);	}	else {		ACPI_CLEAR_BIT (gpe_event_info->flags, ACPI_GPE_SYSTEM_RUNNING);	}	/*	 * Dispatch the GPE to either an installed handler, or the control	 * method associated with this GPE (_Lxx or _Exx).	 * If a handler exists, we invoke it and do not attempt to run the method.	 * If there is neither a handler nor a method, we disable the level to	 * prevent further events from coming in here.	 */	switch (gpe_event_info->flags & ACPI_GPE_DISPATCH_MASK) {	case ACPI_GPE_DISPATCH_HANDLER:		/*		 * Invoke the installed handler (at interrupt level)		 * Ignore return status for now.  TBD: leave GPE disabled on error?		 */		(void) gpe_event_info->dispatch.handler->address (				  gpe_event_info->dispatch.handler->context);		/* It is now safe to clear level-triggered events. */		if ((gpe_event_info->flags & ACPI_GPE_XRUPT_TYPE_MASK) == ACPI_GPE_LEVEL_TRIGGERED) {			status = acpi_hw_clear_gpe (gpe_event_info);			if (ACPI_FAILURE (status)) {				ACPI_REPORT_ERROR ((					"acpi_ev_gpe_dispatch: %s, Unable to clear GPE[%2X]\n",					acpi_format_exception (status), gpe_number));				return_VALUE (ACPI_INTERRUPT_NOT_HANDLED);			}		}		break;	case ACPI_GPE_DISPATCH_METHOD:		/*		 * Disable GPE, so it doesn't keep firing before the method has a		 * chance to run.		 */		status = acpi_ev_disable_gpe (gpe_event_info);		if (ACPI_FAILURE (status)) {			ACPI_REPORT_ERROR ((				"acpi_ev_gpe_dispatch: %s, Unable to disable GPE[%2X]\n",				acpi_format_exception (status), gpe_number));			return_VALUE (ACPI_INTERRUPT_NOT_HANDLED);		}		/*		 * Execute the method associated with the GPE		 * NOTE: Level-triggered GPEs are cleared after the method completes.		 */		status = acpi_os_queue_for_execution (OSD_PRIORITY_GPE,				 acpi_ev_asynch_execute_gpe_method, gpe_event_info);		if (ACPI_FAILURE (status)) {			ACPI_REPORT_ERROR ((				"acpi_ev_gpe_dispatch: %s, Unable to queue handler for GPE[%2X] - event disabled\n",				acpi_format_exception (status), gpe_number));		}		break;	default:		/* No handler or method to run! */		ACPI_REPORT_ERROR ((			"acpi_ev_gpe_dispatch: No handler or method for GPE[%2X], disabling event\n",			gpe_number));		/*		 * Disable the GPE.  The GPE will remain disabled until the ACPI		 * Core Subsystem is restarted, or a handler is installed.		 */		status = acpi_ev_disable_gpe (gpe_event_info);		if (ACPI_FAILURE (status)) {			ACPI_REPORT_ERROR ((				"acpi_ev_gpe_dispatch: %s, Unable to disable GPE[%2X]\n",				acpi_format_exception (status), gpe_number));			return_VALUE (ACPI_INTERRUPT_NOT_HANDLED);		}		break;	}	return_VALUE (ACPI_INTERRUPT_HANDLED);}#ifdef ACPI_GPE_NOTIFY_CHECK/******************************************************************************* * TBD: NOT USED, PROTOTYPE ONLY AND WILL PROBABLY BE REMOVED * * FUNCTION:    acpi_ev_check_for_wake_only_gpe * * PARAMETERS:  gpe_event_info  - info for this GPE * * RETURN:      Status * * DESCRIPTION: Determine if a a GPE is "wake-only". * *              Called from Notify() code in interpreter when a "device_wake" *              Notify comes in. * ******************************************************************************/acpi_statusacpi_ev_check_for_wake_only_gpe (	struct acpi_gpe_event_info      *gpe_event_info){	acpi_status                     status;	ACPI_FUNCTION_TRACE ("ev_check_for_wake_only_gpe");	if ((gpe_event_info) &&  /* Only >0 for _Lxx/_Exx */	   ((gpe_event_info->flags & ACPI_GPE_SYSTEM_MASK) == ACPI_GPE_SYSTEM_RUNNING)) /* System state at GPE time */ {		/* This must be a wake-only GPE, disable it */		status = acpi_ev_disable_gpe (gpe_event_info);		/* Set GPE to wake-only.  Do not change wake disabled/enabled status */		acpi_ev_set_gpe_type (gpe_event_info, ACPI_GPE_TYPE_WAKE);		ACPI_REPORT_INFO (("GPE %p was updated from wake/run to wake-only\n",				gpe_event_info));		/* This was a wake-only GPE */		return_ACPI_STATUS (AE_WAKE_ONLY_GPE);	}	return_ACPI_STATUS (AE_OK);}#endif

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