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// Copyright (c) 1997-2009 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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// f32test\bench\t_whet.cpp
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// Whetstone Benchmarks
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//
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//
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#include <e32math.h>
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#include <e32std.h>
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#include <e32std_private.h>
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#include <f32file.h>
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#include <e32svr.h>
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#include <e32test.h>
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#include <hal.h>
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#include "../server/t_server.h"
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const TInt KSections=9;
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LOCAL_D TReal64 loop_time[KSections];
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LOCAL_D TReal64 loop_mops[KSections];
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LOCAL_D TReal64 loop_mflops[KSections];
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LOCAL_D TReal64 TimeUsed;
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LOCAL_D TReal64 mwips;
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LOCAL_D TBufC<50> headings[KSections];
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LOCAL_D TReal64 Check;
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LOCAL_D TReal64 results[KSections];
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LOCAL_D TBuf<0x100> buf;
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LOCAL_D TBuf8<0x100> buf8;
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LOCAL_D const TFileName pathName = _L("C:\\E32-MATH\\");
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#ifdef T_WHET_WITH_VFP
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LOCAL_D const TFileName fileName = _L("WHETVFP.RES");
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#else
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LOCAL_D const TFileName fileName = _L("WHET.RES");
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#endif
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LOCAL_D RFile outfile;
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#ifdef T_WHET_WITH_VFP
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GLDEF_D RTest test(_L("TReal64 C/C++ Whetstone Benchmark with VFP"));
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#else
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GLDEF_D RTest test(_L("TReal64 C/C++ Whetstone Benchmark"));
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#endif
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LOCAL_C void appendString(const TDesC& aString)
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{
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buf=_L("");
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buf.AppendFormat(_L("%S\n"),&aString);
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buf8.Copy(buf); // Unicode
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outfile.Write(buf8);
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}
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LOCAL_C void pa(TReal64* e,TReal64 t,TReal64 t2)
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{
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TInt j;
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for (j=0;j<6;j++)
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{
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e[0]=(e[0]+e[1]+e[2]-e[3])*t;
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e[1]=(e[0]+e[1]-e[2]+e[3])*t;
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e[2]=(e[0]-e[1]+e[2]+e[3])*t;
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e[3]=(-e[0]+e[1]+e[2]+e[3])/t2;
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}
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}
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LOCAL_C void po(TReal64* e1,TInt j,TInt k,TInt l)
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{
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e1[j]=e1[k];
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e1[k]=e1[l];
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e1[l]=e1[j];
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}
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LOCAL_C void p3(TReal64 *x,TReal64 *y,TReal64 *z,TReal64 t,TReal64 t1,TReal64 t2)
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{
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*x=*y;
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*y=*z;
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*x=t*(*x+*y);
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*y=t1*(*x+*y);
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*z=(*x+*y)/t2;
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}
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LOCAL_C void pout(const TDesC& aTitle,TReal64 aOps,TInt aType,TReal64 aChecknum,TReal64 aTime,
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TInt aCalibrate,TInt aSection)
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{
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TReal64 mops,mflops;
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Check+=aChecknum;
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loop_time[aSection]=aTime;
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headings[aSection]=aTitle;
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TimeUsed+=aTime;
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if (aCalibrate==1)
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results[aSection]=aChecknum;
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if (aCalibrate==0)
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{
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test.Printf(_L("%- 20S%- 18g"),&headings[aSection],results[aSection]);
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if (aType==1)
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{
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if (aTime>0)
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mflops=aOps/(1E+6*aTime);
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else
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mflops=0.0;
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loop_mops[aSection]=99999.0;
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loop_mflops[aSection]=mflops;
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test.Printf(_L("%- 34g%- 7g\n"),loop_mflops[aSection],loop_time[aSection]);
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}
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else
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{
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if (aTime>0)
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mops=aOps/(1E+6*aTime);
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else
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mops=0.0;
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loop_mops[aSection]=mops;
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loop_mflops[aSection]=0.0;
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test.Printf(_L(" %- 17g%- 7g\n"),loop_mops[aSection],loop_time[aSection]);
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}
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}
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}
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LOCAL_C void whetstones(TInt xtra,TInt x100,TInt calibrate)
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{
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TTime timea,timeb;
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TReal64 t=0.49999975;
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const TReal64 t0=t;
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TReal64 t1=0.50000025;
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TReal64 t2=2.0;
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Check=0.0;
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TInt n1,n2,n3,n4,n5,n6,n7,n8,n1mult;
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n1 = 12*x100;
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n2 = 14*x100;
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n3 = 345*x100;
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n4 = 210*x100;
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n5 = 32*x100;
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n6 = 899*x100;
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n7 = 616*x100;
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n8 = 93*x100;
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n1mult = 10;
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// Section 1, Array elements
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TReal64 e1[] =
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{1.0,-1.0,-1.0,-1.0};
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TInt i,ix;
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0; i<n1*n1mult; i++)
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{
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e1[0]=(e1[0]+e1[1]+e1[2]-e1[3])*t;
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e1[1]=(e1[0]+e1[1]-e1[2]+e1[3])*t;
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e1[2]=(e1[0]-e1[1]+e1[2]+e1[3])*t;
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e1[3]=(-e1[0]+e1[1]+e1[2]+e1[3])*t;
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}
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t=1.0-t;
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}
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t=t0;
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timeb.HomeTime();
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TReal64 time=I64REAL(timeb.Int64()-timea.Int64())/(TReal64(n1mult)*1E+6);
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pout(_L("N1 floating point "),TReal64(n1*16)*TReal64(xtra),1,e1[3],time,calibrate,1);
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// Section 2, Array as parameter
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0; i<n2; i++)
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pa(e1,t,t2);
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t=1.0-t;
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}
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t= t0;
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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pout(_L("N2 floating point "),TReal64(n2*96)*TReal64(xtra),1,e1[3],time,calibrate,2);
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// Section 3, Conditional jumps
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TInt j=1;
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0; i<n3; i++)
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{
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if(j==1)
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j = 2;
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else
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j = 3;
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if(j>2)
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j = 0;
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else
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j = 1;
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if(j<1)
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j = 1;
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else
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j = 0;
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}
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}
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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pout(_L("N3 if then else "),TReal64(n3*3)*TReal64(xtra),2,TReal64(j),time,calibrate,3);
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// Section 4, Integer arithmetic
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j=1;
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TInt k=2;
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TInt l=3;
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0; i<n4; i++)
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{
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j=j*(k-j)*(l-k);
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k=l*k-(l-j)*k;
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l=(l-k)*(k+j);
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e1[l-2]=j+k+l;
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e1[k-2]=j*k*l;
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}
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}
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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TReal64 x=e1[0]+e1[1];
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pout(_L("N4 fixed point "),TReal64(n4*15)*TReal64(xtra),2,x,time,calibrate,4);
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// Section 5, Trig functions
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x=0.5;
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TReal64 y=0.5;
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TReal64 trg1,trg2,trg3,trg4;
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=1; i<n5; i++)
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{
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Math::Sin(trg1,x);
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Math::Cos(trg2,x);
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Math::Cos(trg3,x+y);
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Math::Cos(trg4,x-y);
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Math::ATan(x,(t2*trg1*trg2)/(trg3+trg4-1.0));
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x*=t;
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Math::Sin(trg1,y);
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Math::Cos(trg2,y);
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Math::Cos(trg3,x+y);
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Math::Cos(trg4,x-y);
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Math::ATan(y,(t2*trg1*trg2)/(trg3+trg4-1.0));
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y*=t;
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}
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t=1.0-t;
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}
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t=t0;
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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pout(_L("N5 sin,cos etc. "),TReal64(n5*26)*TReal64(xtra),2,y,time,calibrate,5);
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// Section 6, Procedure calls
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x=1.0;
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y=1.0;
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TReal64 z=1.0;
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0; i<n6; i++)
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p3(&x,&y,&z,t,t1,t2);
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}
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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pout(_L("N6 floating point "),TReal64(n6*6)*TReal64(xtra),1,z,time,calibrate,6);
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// Section 7, Array refrences
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j = 0;
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k = 1;
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l = 2;
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TReal64 e2[]=
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{1.0,2.0,3.0};
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0;i<n7;i++)
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po(&e2[0],j,k,l);
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}
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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pout(_L("N7 assignments "),TReal64(n7*3)*TReal64(xtra),2,e2[2],time,calibrate,7);
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// Section 8, Standard functions
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x=0.75;
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timea.HomeTime();
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for (ix=0; ix<xtra; ix++)
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{
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for(i=0; i<n8; i++)
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{
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Math::Log(trg1,x);
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Math::Exp(trg1,trg1/t1);
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Math::Sqrt(x,trg1);
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}
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}
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timeb.HomeTime();
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time=I64REAL(timeb.Int64()-timea.Int64())/1E+6;
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pout(_L("N8 exp,sqrt etc. "),TReal64(n8*4)*TReal64(xtra),2,x,time,calibrate,8);
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}
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GLDEF_C void CallTestsL(void)
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{
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TInt calibrate=1;
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TInt xtra=1;
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TInt section;
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TInt x100=100;
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TInt duration=100;
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test.Title();
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#ifdef T_WHET_WITH_VFP
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TInt supportedModes;
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if (HAL::Get(HALData::EHardwareFloatingPoint, supportedModes) != KErrNone)
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{
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test.Printf(_L("No VFP hardware, skipping test\n"));
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return;
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}
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#endif
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// connect and make directory for write file
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test.Start(_L("Making directory..."));
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TInt r=TheFs.MkDirAll(pathName);
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test(r==KErrNone || r==KErrAlreadyExists);
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test(TheFs.SetSessionPath(pathName)==KErrNone);
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test(outfile.Replace(TheFs,fileName,EFileWrite)==KErrNone);
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// calibrate
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test.Next(_L("Calibrating...\n"));
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TInt count=10;
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while (count>0)
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{
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TimeUsed=0;
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whetstones(xtra,x100,calibrate);
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test.Printf(_L("%g Seconds %d Passes (x 100)\n"),TimeUsed,xtra);
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calibrate++;
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count--;
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if (TimeUsed>2)
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count=0;
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else
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xtra*=5;
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}
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if (TimeUsed>0)
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{
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TRealX TimeX(TimeUsed);
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TInt TimeInt=TInt(TimeX);
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xtra*=duration/TimeInt;
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}
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if (xtra<1)
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xtra=1;
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calibrate=0;
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test.Printf(_L("\nUse %d passes (x 100)\n"),xtra);
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test.Printf(_L("\nTReal64 C/C++ Whetstone Benchmark\n"));
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test.Printf(_L("\nLoop content Result MFLOPS MOPS Seconds\n\n"));
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TimeUsed=0;
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whetstones(xtra,x100,calibrate);
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test.Printf(_L("\nMWIPS "));
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if (TimeUsed>0)
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mwips=(TReal64)(xtra*x100)/(10.0*TimeUsed);
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else
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mwips=0;
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408 |
test.Printf(_L("%- 17g %- 7g\n\n"),mwips,TimeUsed);
|
|
409 |
|
|
410 |
if (Check==TReal64(0.0))
|
|
411 |
test.Printf(_L("Wrong answer "));
|
|
412 |
|
|
413 |
// Add results to output file whets.res
|
|
414 |
appendString(_L("Whetstone TReal64 Benchmark in C/C++\n"));
|
|
415 |
appendString(_L("\n\n"));
|
|
416 |
appendString(_L("Loop content Result MFLOPS MOPS Seconds\n\n"));
|
|
417 |
|
|
418 |
for (section=1; section<KSections; section++)
|
|
419 |
{
|
|
420 |
buf=_L("");
|
|
421 |
buf.AppendFormat(_L("%- 20S%- 20g"),&headings[section],results[section]);
|
|
422 |
buf8.Copy(buf); // Unicode
|
|
423 |
outfile.Write(buf8);
|
|
424 |
|
|
425 |
if (loop_mops[section]==99999.0f)
|
|
426 |
{
|
|
427 |
buf=_L("");
|
|
428 |
buf.AppendFormat(_L("%- 39g%- 8g\n"),loop_mflops[section],loop_time[section]);
|
|
429 |
buf8.Copy(buf); // Unicode
|
|
430 |
outfile.Write(buf8);
|
|
431 |
}
|
|
432 |
else
|
|
433 |
{
|
|
434 |
buf=_L("");
|
|
435 |
buf.AppendFormat(_L(" %- 21g%- 8g\n"),loop_mops[section],loop_time[section]);
|
|
436 |
buf8.Copy(buf); // Unicode
|
|
437 |
outfile.Write(buf8);
|
|
438 |
}
|
|
439 |
}
|
|
440 |
|
|
441 |
buf=_L("");
|
|
442 |
buf.AppendFormat(_L("\nMWIPS %- 18g %- 8g\n\n"),mwips,TimeUsed);
|
|
443 |
buf8.Copy(buf); // Unicode
|
|
444 |
outfile.Write(buf8);
|
|
445 |
|
|
446 |
outfile.Close();
|
|
447 |
test.Printf(_L("\nResults are in file whets.res"));
|
|
448 |
|
|
449 |
test.End();
|
|
450 |
return;
|
|
451 |
}
|
|
452 |
|
|
453 |
|