forked from Imagelibrary/rtems
252 lines
5.7 KiB
C
252 lines
5.7 KiB
C
/**
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* @brief Clock Tick Device Driver
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*
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* This routine utilizes the Decrementer Register common to the PPC family.
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*
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* The tick frequency is directly programmed to the configured number of
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* microseconds per tick.
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*/
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/*
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* COPYRIGHT (c) 1989-2014.
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* On-Line Applications Research Corporation (OAR).
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*
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* The license and distribution terms for this file may in
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* the file LICENSE in this distribution or at
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* http://www.rtems.org/license/LICENSE.
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*
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* Modified to support the MPC750.
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* Modifications Copyright (c) 1999 Eric Valette eric.valette@free.fr
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*/
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#include <rtems.h>
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#include <rtems/libio.h>
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#include <rtems/clockdrv.h>
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#include <stdlib.h> /* for atexit() */
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#include <assert.h>
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#include <libcpu/c_clock.h>
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#include <libcpu/cpuIdent.h>
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#include <libcpu/spr.h>
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#include <rtems/bspIo.h> /* for printk() */
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#include <libcpu/powerpc-utility.h>
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#include <rtems/timecounter.h>
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#include <rtems/score/percpu.h>
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#include <rtems/score/thread.h>
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#include <bspopts.h> /* for CLOCK_DRIVER_USE_FAST_IDLE */
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SPR_RW(BOOKE_TCR)
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SPR_RW(BOOKE_TSR)
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SPR_RW(BOOKE_DECAR)
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extern int BSP_connect_clock_handler (void);
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/*
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* Clock ticks since initialization
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*/
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volatile uint32_t Clock_driver_ticks;
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/*
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* This is the value programmed into the count down timer.
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*/
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static uint32_t Clock_Decrementer_value;
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static struct timecounter Clock_TC;
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static uint32_t Clock_Get_timecount(struct timecounter *tc)
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{
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return ppc_time_base();
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}
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void clockOff(void* unused)
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{
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rtems_interrupt_level l;
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if ( ppc_cpu_is_bookE() ) {
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rtems_interrupt_disable(l);
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_write_BOOKE_TCR(_read_BOOKE_TCR() & ~BOOKE_TCR_DIE);
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rtems_interrupt_enable(l);
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} else {
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/*
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* Nothing to do as we cannot disable all interrupts and
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* the decrementer interrupt enable is MSR_EE
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*/
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}
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}
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void clockOn(void* unused)
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{
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rtems_interrupt_level l;
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PPC_Set_decrementer( Clock_Decrementer_value );
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if ( ppc_cpu_is_bookE() ) {
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_write_BOOKE_DECAR( Clock_Decrementer_value );
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rtems_interrupt_disable(l);
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/* clear pending/stale irq */
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_write_BOOKE_TSR( BOOKE_TSR_DIS );
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/* enable */
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_write_BOOKE_TCR( _read_BOOKE_TCR() | BOOKE_TCR_DIE );
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rtems_interrupt_enable(l);
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}
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}
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static void clockHandler(void)
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{
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#if (CLOCK_DRIVER_USE_FAST_IDLE == 1)
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rtems_interrupt_level level;
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uint32_t tb;
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Per_CPU_Control *cpu_self;
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rtems_interrupt_disable(level);
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tb = ppc_time_base();
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rtems_timecounter_tick();
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cpu_self = _Per_CPU_Get();
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while (
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cpu_self->thread_dispatch_disable_level == cpu_self->isr_nest_level
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&& cpu_self->heir == cpu_self->executing
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&& cpu_self->executing->is_idle
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) {
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tb += Clock_Decrementer_value;
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ppc_set_time_base( tb );
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rtems_timecounter_tick();
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}
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rtems_interrupt_enable(level);
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#else
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rtems_timecounter_tick();
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#endif
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}
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static void (*clock_handler)(void);
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/*
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* Clock_isr
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*
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* This is the clock tick interrupt handler.
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*
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* Input parameters:
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* vector - vector number
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*
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* Output parameters: NONE
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*
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* Return values: NONE
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*
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*/
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void clockIsr(void *unused)
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{
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int decr;
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/*
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* The driver has seen another tick.
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*/
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do {
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register uint32_t flags;
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rtems_interrupt_disable(flags);
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__asm__ volatile (
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"mfdec %0; add %0, %0, %1; mtdec %0"
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: "=&r"(decr)
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: "r"(Clock_Decrementer_value)
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);
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rtems_interrupt_enable(flags);
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Clock_driver_ticks += 1;
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/*
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* Real Time Clock counter/timer is set to automatically reload.
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*/
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clock_handler();
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} while ( decr < 0 );
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}
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/*
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* Clock_isr_bookE
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*
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* This is the clock tick interrupt handler
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* for bookE CPUs. For efficiency reasons we
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* provide a separate handler rather than
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* checking the CPU type each time.
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*/
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void clockIsrBookE(void *unused)
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{
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/* Note: TSR bit has already been cleared in the exception handler */
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/*
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* The driver has seen another tick.
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*/
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Clock_driver_ticks += 1;
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/*
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* Real Time Clock counter/timer is set to automatically reload.
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*/
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clock_handler();
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}
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int clockIsOn(void* unused)
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{
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uint32_t msr_value;
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_CPU_MSR_GET( msr_value );
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if ( ppc_cpu_is_bookE() && ! (_read_BOOKE_TCR() & BOOKE_TCR_DIE) )
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msr_value = 0;
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if (msr_value & MSR_EE) return 1;
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return 0;
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}
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void _Clock_Initialize( void )
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{
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rtems_interrupt_level l,tcr;
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Clock_Decrementer_value = (BSP_bus_frequency/BSP_time_base_divisor)*
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rtems_configuration_get_milliseconds_per_tick();
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/* set the decrementer now, prior to installing the handler
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* so no interrupts will happen in a while.
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*/
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PPC_Set_decrementer( (unsigned)-1 );
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/* On a bookE CPU the decrementer works differently. It doesn't
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* count past zero but we can enable auto-reload :-)
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*/
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if ( ppc_cpu_is_bookE() ) {
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rtems_interrupt_disable(l);
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tcr = _read_BOOKE_TCR();
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tcr |= BOOKE_TCR_ARE;
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tcr &= ~BOOKE_TCR_DIE;
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_write_BOOKE_TCR(tcr);
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rtems_interrupt_enable(l);
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}
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Clock_TC.tc_get_timecount = Clock_Get_timecount;
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Clock_TC.tc_counter_mask = 0xffffffff;
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Clock_TC.tc_frequency = (UINT64_C(1000) * BSP_bus_frequency) / BSP_time_base_divisor;
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Clock_TC.tc_quality = RTEMS_TIMECOUNTER_QUALITY_CLOCK_DRIVER;
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rtems_timecounter_install(&Clock_TC);
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/*
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* If a decrementer exception was pending, it is cleared by
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* executing the default (nop) handler at this point;
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* The next exception will then be taken by our clock handler.
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* Clock handler installation initializes the decrementer to
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* the correct value.
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*/
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clock_handler = clockHandler;
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if (!BSP_connect_clock_handler ()) {
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printk("Unable to initialize system clock\n");
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rtems_fatal_error_occurred(1);
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}
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}
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