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// Copyright (c) 2008-2009 Nokia Corporation and/or its subsidiary(-ies).
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// All rights reserved.
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// This component and the accompanying materials are made available
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// under the terms of the License "Eclipse Public License v1.0"
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// which accompanies this distribution, and is available
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// at the URL "http://www.eclipse.org/legal/epl-v10.html".
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//
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// Initial Contributors:
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// Nokia Corporation - initial contribution.
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//
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// Contributors:
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//
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// Description:
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// e32test\nkernsa\arm\armutils.cpp
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//
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//
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#include <arm.h>
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#include <nktest/nkutils.h>
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const TUint32 KPageSize = 0x1000u;
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extern "C" {
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void thread_request_signal(NThread* aThread);
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TUint64 fcf;
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TUint32 nfcf;
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TUint32 nfcfs;
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TUint32 round_to_page(TUint32 x)
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{
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return (x + KPageSize - 1) &~ (KPageSize - 1);
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}
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TLinAddr __initial_stack_base()
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{
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return __stack_pointer() & ~0xfff;
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}
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TInt __initial_stack_size()
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{
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return 0x1000;
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}
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TUint64 fast_counter_freq()
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{
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return fcf;
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}
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TUint32 norm_fast_counter_freq()
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{
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return nfcf;
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}
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void init_fast_counter()
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{
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NKern::Sleep(30);
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TUint64 initial = fast_counter();
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NKern::Sleep(1000);
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TUint64 final = fast_counter();
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fcf = final - initial;
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TUint64 f = fcf;
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nfcfs = 0;
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while (f > 2000000)
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f>>=1, ++nfcfs;
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nfcf = (TUint32)(fcf >> nfcfs);
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DEBUGPRINT("fcf=%lx",fcf);
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DEBUGPRINT("nfcf=%d",nfcf);
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}
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TInt __microseconds_to_fast_counter(TInt us)
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{
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TUint64 x = TUint64(TUint32(us));
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x *= fcf;
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x += TUint64(500000);
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x /= TUint64(1000000);
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return (TInt)x;
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}
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TInt __microseconds_to_norm_fast_counter(TInt us)
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{
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TUint64 x = TUint64(TUint32(us));
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x *= nfcf;
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x += TUint64(500000);
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x /= TUint64(1000000);
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return (TInt)x;
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}
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void nfcfspin(TUint32 aTicks)
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{
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TUint64 ticks = aTicks;
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ticks <<= nfcfs;
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fcfspin(ticks);
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}
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void fcfspin(TUint64 aTicks)
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{
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TUint64 t0 = fast_counter();
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TUint64 t1;
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do {
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t1 = fast_counter();
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t1 -= t0;
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} while (t1<aTicks);
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}
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extern TUint32 __cpsr();
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void CheckPoint()
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{
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KPrintf("CPSR=%08x", __cpsr());
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}
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void thread_request_signal(NThread* aThread)
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{
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NKern::ThreadRequestSignal(aThread);
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}
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}
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TAny* operator new(TUint aSize) __NO_THROW
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//
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// The global new operator.
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//
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{
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return malloc(aSize);
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}
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TAny* operator new[](TUint aSize) __NO_THROW
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{
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return malloc(aSize);
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}
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void operator delete(TAny* aPtr) __NO_THROW
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//
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// The replacement delete operator.
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//
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{
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free(aPtr);
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}
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void operator delete[](TAny* aPtr) __NO_THROW
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{
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free(aPtr);
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}
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#ifdef __ARMCC__
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TAny* operator new(TUint aSize, const std::nothrow_t& aNoThrow) __NO_THROW
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//
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// The global new operator.
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//
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{
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(void)aNoThrow;
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return malloc(aSize);
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}
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TAny* operator new[](TUint aSize, const std::nothrow_t& aNoThrow) __NO_THROW
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{
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(void)aNoThrow;
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return malloc(aSize);
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}
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#endif
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#ifdef __SMP__
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#include <arm_tmr.h>
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void TickTimerFn(TAny*);
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NFastSemaphore TTSem;
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void TTIDfcFn(TAny*)
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{
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TTSem.Signal();
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}
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TDfc TTIDfc(&TTIDfcFn,0);
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NTimer TickTimer(&TickTimerFn,0);
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volatile TInt State=0;
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volatile TInt Cycle=0;
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volatile TInt WC[1024];
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volatile TInt WCI=0;
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void TickTimerFn(TAny* aPtr)
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{
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ArmLocalTimer& T = LOCAL_TIMER;
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TInt c = (TInt)T.iWatchdogCount;
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WC[WCI++]=c;
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if (c<0)
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{
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if (++State==3)
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{
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if (++Cycle==3)
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{
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TTIDfc.Add();
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return;
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}
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T.iWatchdogCount = 1900000u;
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State = 0;
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}
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}
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TickTimer.Again(1);
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}
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void DoWatchdogTimerTest()
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{
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NKern::FSSetOwner(&TTSem, NKern::CurrentThread());
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ArmLocalTimer& T = LOCAL_TIMER;
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T.iWatchdogLoad = KMaxTUint32;
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T.iWatchdogCount = 2097152;
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T.iWatchdogIntStatus = 1;
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__e32_io_completion_barrier();
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T.iWatchdogCtrl = 3;
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__e32_io_completion_barrier();
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TickTimer.OneShot(1);
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NKern::FSWait(&TTSem);
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TInt i;
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for (i=0; i<WCI; ++i)
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{
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DEBUGPRINT("%03d: %d", i, WC[i]);
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}
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}
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#endif
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