extern LpEventHandler lpEventHandler[HvLpEvent_Type_NumTypes];
 unsigned long ItLpQueueInProcess = 0;
 
-static struct HvLpEvent * ItLpQueue_getNextLpEvent(void)
+static struct HvLpEvent * get_next_hvlpevent(void)
 {
        struct HvLpEvent * nextLpEvent = 
                (struct HvLpEvent *)hvlpevent_queue.xSlicCurEventPtr;
 
 static unsigned long spread_lpevents = NR_CPUS;
 
-int ItLpQueue_isLpIntPending(void)
+int hvlpevent_is_pending(void)
 {
        struct HvLpEvent *next_event;
 
        return next_event->xFlags.xValid | hvlpevent_queue.xPlicOverflowIntPending;
 }
 
-static void ItLpQueue_clearValid( struct HvLpEvent * event )
+static void hvlpevent_clear_valid( struct HvLpEvent * event )
 {
        /* Clear the valid bit of the event
         * Also clear bits within this event that might
        event->xFlags.xValid = 0;
 }
 
-unsigned ItLpQueue_process(struct pt_regs *regs)
+unsigned process_hvlpevents(struct pt_regs *regs)
 {
        unsigned numIntsProcessed = 0;
        struct HvLpEvent * nextLpEvent;
                BUG();
 
        for (;;) {
-               nextLpEvent = ItLpQueue_getNextLpEvent();
+               nextLpEvent = get_next_hvlpevent();
                if ( nextLpEvent ) {
                        /* Count events to return to caller
                         * and count processed events in hvlpevent_queue
                        else
                                printk(KERN_INFO "Unexpected Lp Event type=%d\n", nextLpEvent->xType );
                        
-                       ItLpQueue_clearValid( nextLpEvent );
+                       hvlpevent_clear_valid( nextLpEvent );
                } else if ( hvlpevent_queue.xPlicOverflowIntPending )
                        /*
                         * No more valid events. If overflow events are
 
 
        while (1) {
                if (lpaca->lppaca.shared_proc) {
-                       if (ItLpQueue_isLpIntPending())
+                       if (hvlpevent_is_pending())
                                process_iSeries_events();
                        if (!need_resched())
                                yield_shared_processor();
 
                                while (!need_resched()) {
                                        HMT_medium();
-                                       if (ItLpQueue_isLpIntPending())
+                                       if (hvlpevent_is_pending())
                                                process_iSeries_events();
                                        HMT_low();
                                }
 
                iSeries_smp_message_recv(regs);
        }
 #endif /* CONFIG_SMP */
-       if (ItLpQueue_isLpIntPending())
-               lpevent_count += ItLpQueue_process(regs);
+       if (hvlpevent_is_pending())
+               lpevent_count += process_hvlpevents(regs);
 
        irq_exit();
 
 
        /* We need to poll here as we are not yet taking interrupts */
        while (rtc_data.busy) {
                extern unsigned long lpevent_count;
-               if (ItLpQueue_isLpIntPending())
-                       lpevent_count += ItLpQueue_process(NULL);
+               if (hvlpevent_is_pending())
+                       lpevent_count += process_hvlpevents(NULL);
        }
        return rtc_set_tm(rtc_data.rc, rtc_data.ce_msg.ce_msg, tm);
 }
 
        set_dec(next_dec);
 
 #ifdef CONFIG_PPC_ISERIES
-       if (ItLpQueue_isLpIntPending())
-               lpevent_count += ItLpQueue_process(regs);
+       if (hvlpevent_is_pending())
+               lpevent_count += process_hvlpevents(regs);
 #endif
 
 /* collect purr register values often, for accurate calculations */
 
 
 extern struct hvlpevent_queue hvlpevent_queue;
 
-extern int ItLpQueue_isLpIntPending(void);
-extern unsigned ItLpQueue_process(struct pt_regs *);
+extern int hvlpevent_is_pending(void);
+extern unsigned process_hvlpevents(struct pt_regs *);
 extern void setup_hvlpevent_queue(void);
 
 #endif /* _ITLPQUEUE_H */