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//========= Copyright Valve Corporation, All rights reserved. ============//
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// traceperf.cpp : Defines the entry point for the console application.
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//
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#include "stdafx.h"
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#include "gametrace.h"
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#include "fmtstr.h"
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#include "appframework/appframework.h"
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#include "filesystem.h"
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#include "filesystem_init.h"
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#include "tier1/tier1.h"
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#include "tier2/tier2.h"
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#include "tier3/tier3.h"
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IPhysicsCollision *physcollision = NULL;
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#define NUM_COLLISION_TESTS 2500
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void ReadPHYFile(const char *name, vcollide_t &collide )
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{
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FileHandle_t fp = g_pFullFileSystem->Open(name, "rb");
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if (!fp)
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Error ("Couldn't open %s", name);
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phyheader_t header;
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g_pFullFileSystem->Read( &header, sizeof(header), fp );
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if ( header.size != sizeof(header) || header.solidCount <= 0 )
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return;
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int fileSize = g_pFullFileSystem->Size(fp);
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char *buf = (char *)_alloca( fileSize );
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g_pFullFileSystem->Read( buf, fileSize, fp );
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g_pFullFileSystem->Close( fp );
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physcollision->VCollideLoad( &collide, header.solidCount, (const char *)buf, fileSize );
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}
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struct testlist_t
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{
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Vector start;
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Vector end;
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Vector normal;
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bool hit;
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};
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struct benchresults_t
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{
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int collisionTests;
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int collisionHits;
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float totalTime;
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float rayTime;
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float boxTime;
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};
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testlist_t g_Traces[NUM_COLLISION_TESTS];
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void Benchmark_PHY( const CPhysCollide *pCollide, benchresults_t *pOut )
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{
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int i;
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Vector start = vec3_origin;
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static Vector *targets = NULL;
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static bool first = true;
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static float test[2] = {1,1};
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if ( first )
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{
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float radius = 0;
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float theta = 0;
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float phi = 0;
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for ( int i = 0; i < NUM_COLLISION_TESTS; i++ )
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{
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radius += NUM_COLLISION_TESTS * 123.123f;
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radius = fabs(fmod(radius, 128));
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theta += NUM_COLLISION_TESTS * 0.76f;
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theta = fabs(fmod(theta, DEG2RAD(360)));
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phi += NUM_COLLISION_TESTS * 0.16666666f;
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phi = fabs(fmod(phi, DEG2RAD(180)));
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float st, ct, sp, cp;
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SinCos( theta, &st, &ct );
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SinCos( phi, &sp, &cp );
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st = sin(theta);
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ct = cos(theta);
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sp = sin(phi);
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cp = cos(phi);
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g_Traces[i].start.x = radius * ct * sp;
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g_Traces[i].start.y = radius * st * sp;
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g_Traces[i].start.z = radius * cp;
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}
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first = false;
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}
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float duration = 0;
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Vector size[2];
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size[0].Init(0,0,0);
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size[1].Init(16,16,16);
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#if VPROF_LEVEL > 0
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g_VProfCurrentProfile.Reset();
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g_VProfCurrentProfile.ResetPeaks();
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g_VProfCurrentProfile.Start();
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#endif
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#if TEST_BBOX
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Vector mins, maxs;
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physcollision->CollideGetAABB( &mins, &maxs, pCollide, Vector(-500, 200, -100), vec3_angle );
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Vector extents = maxs - mins;
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Vector center = 0.5f * (maxs+mins);
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Msg("bbox: %.2f,%.2f, %.2f @ %.2f, %.2f, %.2f\n", extents.x, extents.y, extents.z, center.x, center.y, center.z );
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#endif
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unsigned int hitCount = 0;
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double startTime = Plat_FloatTime();
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trace_t tr;
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for ( i = 0; i < NUM_COLLISION_TESTS; i++ )
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{
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physcollision->TraceBox( g_Traces[i].start, start, -size[0], size[0], pCollide, vec3_origin, vec3_angle, &tr );
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if ( tr.DidHit() )
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{
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g_Traces[i].end = tr.endpos;
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g_Traces[i].normal = tr.plane.normal;
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g_Traces[i].hit = true;
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hitCount++;
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}
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else
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{
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g_Traces[i].hit = false;
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}
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}
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for ( i = 0; i < NUM_COLLISION_TESTS; i++ )
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{
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physcollision->TraceBox( g_Traces[i].start, start, -size[1], size[1], pCollide, vec3_origin, vec3_angle, &tr );
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}
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duration = Plat_FloatTime() - startTime;
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#if VPROF_LEVEL > 0
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g_VProfCurrentProfile.MarkFrame();
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g_VProfCurrentProfile.Stop();
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g_VProfCurrentProfile.Reset();
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g_VProfCurrentProfile.ResetPeaks();
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g_VProfCurrentProfile.Start();
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#endif
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hitCount = 0;
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startTime = Plat_FloatTime();
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for ( i = 0; i < NUM_COLLISION_TESTS; i++ )
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{
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physcollision->TraceBox( g_Traces[i].start, start, -size[0], size[0], pCollide, vec3_origin, vec3_angle, &tr );
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if ( tr.DidHit() )
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{
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g_Traces[i].end = tr.endpos;
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g_Traces[i].normal = tr.plane.normal;
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g_Traces[i].hit = true;
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hitCount++;
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}
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else
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{
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g_Traces[i].hit = false;
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}
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#if VPROF_LEVEL > 0
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g_VProfCurrentProfile.MarkFrame();
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#endif
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}
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double midTime = Plat_FloatTime();
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for ( i = 0; i < NUM_COLLISION_TESTS; i++ )
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{
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physcollision->TraceBox( g_Traces[i].start, start, -size[1], size[1], pCollide, vec3_origin, vec3_angle, &tr );
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#if VPROF_LEVEL > 0
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g_VProfCurrentProfile.MarkFrame();
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#endif
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}
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double endTime = Plat_FloatTime();
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duration = endTime - startTime;
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pOut->collisionTests = NUM_COLLISION_TESTS;
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pOut->collisionHits = hitCount;
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pOut->totalTime = duration * 1000.0f;
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pOut->rayTime = (midTime - startTime) * 1000.0f;
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pOut->boxTime = (endTime - midTime)*1000.0f;
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#if VPROF_LEVEL > 0
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g_VProfCurrentProfile.Stop();
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g_VProfCurrentProfile.OutputReport( VPRT_FULL & ~VPRT_HIERARCHY, NULL );
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#endif
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}
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//===== Copyright <EFBFBD> 1996-2005, Valve Corporation, All rights reserved. ======//
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//
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// Purpose:
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//
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// $NoKeywords: $
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//
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//===========================================================================//
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//-----------------------------------------------------------------------------
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// The application object
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//-----------------------------------------------------------------------------
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class CBenchmarkApp : public CDefaultAppSystemGroup< CSteamAppSystemGroup >
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{
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typedef CDefaultAppSystemGroup< CSteamAppSystemGroup > BaseClass;
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public:
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// Methods of IApplication
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virtual bool Create();
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virtual bool PreInit( );
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virtual int Main();
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virtual void PostShutdown();
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bool SetupSearchPaths();
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private:
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bool ParseArguments();
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};
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DEFINE_CONSOLE_STEAM_APPLICATION_OBJECT( CBenchmarkApp );
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//-----------------------------------------------------------------------------
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// The application object
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//-----------------------------------------------------------------------------
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bool CBenchmarkApp::Create()
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{
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MathLib_Init( 2.2f, 2.2f, 0.0f, 2.0f, false, false, false, false );
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// Add in the cvar factory
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//AppModule_t cvarModule = LoadModule( VStdLib_GetICVarFactory() );
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//AddSystem( cvarModule, VENGINE_CVAR_INTERFACE_VERSION );
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AppSystemInfo_t appSystems[] =
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{
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{ "vphysics.dll", VPHYSICS_INTERFACE_VERSION },
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{ "", "" } // Required to terminate the list
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};
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bool bRet = AddSystems( appSystems );
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if ( bRet )
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{
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physcollision = (IPhysicsCollision*)FindSystem( VPHYSICS_COLLISION_INTERFACE_VERSION );
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if ( !physcollision )
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return false;
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}
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return bRet;
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}
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bool CBenchmarkApp::SetupSearchPaths()
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{
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CFSSteamSetupInfo steamInfo;
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steamInfo.m_pDirectoryName = NULL;
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steamInfo.m_bOnlyUseDirectoryName = false;
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steamInfo.m_bToolsMode = true;
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steamInfo.m_bSetSteamDLLPath = true;
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steamInfo.m_bSteam = g_pFullFileSystem->IsSteam();
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if ( FileSystem_SetupSteamEnvironment( steamInfo ) != FS_OK )
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return false;
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CFSMountContentInfo fsInfo;
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fsInfo.m_pFileSystem = g_pFullFileSystem;
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fsInfo.m_bToolsMode = true;
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fsInfo.m_pDirectoryName = steamInfo.m_GameInfoPath;
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if ( FileSystem_MountContent( fsInfo ) != FS_OK )
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return false;
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// Finally, load the search paths for the "GAME" path.
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CFSSearchPathsInit searchPathsInit;
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searchPathsInit.m_pDirectoryName = steamInfo.m_GameInfoPath;
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searchPathsInit.m_pFileSystem = g_pFullFileSystem;
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if ( FileSystem_LoadSearchPaths( searchPathsInit ) != FS_OK )
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return false;
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g_pFullFileSystem->AddSearchPath( steamInfo.m_GameInfoPath, "SKIN", PATH_ADD_TO_HEAD );
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FileSystem_AddSearchPath_Platform( g_pFullFileSystem, steamInfo.m_GameInfoPath );
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return true;
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}
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bool CBenchmarkApp::PreInit( )
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{
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CreateInterfaceFn factory = GetFactory();
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ConnectTier1Libraries( &factory, 1 );
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ConnectTier2Libraries( &factory, 1 );
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ConnectTier3Libraries( &factory, 1 );
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if ( !g_pFullFileSystem || !physcollision )
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{
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Warning( "benchmark is missing a required interface!\n" );
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return false;
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}
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return SetupSearchPaths();//( NULL, false, true );
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}
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void CBenchmarkApp::PostShutdown()
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{
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DisconnectTier3Libraries();
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DisconnectTier2Libraries();
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DisconnectTier1Libraries();
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}
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struct baseline_t
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{
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float total;
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float ray;
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float box;
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};
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// current baseline measured on Core2DuoE6600
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baseline_t g_Baselines[] =
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{
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{ 40.56f, 10.64f, 29.92f}, // bench01a.phy
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{ 38.13f, 10.76f, 27.37f }, // bicycle01a.phy
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{ 25.46f, 8.34f, 17.13f }, // furnituretable001a.phy
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{ 12.65f, 6.02f, 6.62f }, // gravestone003a.phy
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{ 40.58f, 16.49f, 24.10f }, // combineinnerwall001a.phy
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};
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const float g_TotalBaseline = 157.38f;
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/*
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Benchmark models\props_c17\bench01a.phy!
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33.90 ms [1.20 X] 2500/2500 hits
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8.95 ms rays [1.19 X] 24.95 ms boxes [1.20 X]
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Benchmark models\props_junk\bicycle01a.phy!
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30.55 ms [1.25 X] 803/2500 hits
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8.96 ms rays [1.20 X] 21.59 ms boxes [1.27 X]
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Benchmark models\props_c17\furnituretable001a.phy!
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20.61 ms [1.24 X] 755/2500 hits
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6.88 ms rays [1.21 X] 13.73 ms boxes [1.25 X]
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Benchmark models\props_c17\gravestone003a.phy!
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9.13 ms [1.39 X] 2500/2500 hits
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4.34 ms rays [1.39 X] 4.79 ms boxes [1.38 X]
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Benchmark models\props_combine\combineinnerwall001a.phy!
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33.04 ms [1.23 X] 985/2500 hits
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13.37 ms rays [1.23 X] 19.67 ms boxes [1.23 X]
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127.22s total [1.24 X]!
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*/
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#define IMPROVEMENT_FACTOR(x,baseline) (baseline/(x))
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#define IMPROVEMENT_PERCENT(x,baseline) (((baseline-(x)) / baseline) * 100.0f)
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#include <windows.h>
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//-----------------------------------------------------------------------------
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// The application object
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//-----------------------------------------------------------------------------
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int CBenchmarkApp::Main()
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{
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const char *pFileNames[] =
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{
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"models\\props_c17\\bench01a.phy",
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"models\\props_junk\\bicycle01a.phy",
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"models\\props_c17\\furnituretable001a.phy",
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"models\\props_c17\\gravestone003a.phy",
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"models\\props_combine\\combineinnerwall001a.phy",
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};
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vcollide_t testModels[ARRAYSIZE(pFileNames)];
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for ( int i = 0; i < ARRAYSIZE(pFileNames); i++ )
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{
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ReadPHYFile( pFileNames[i], testModels[i] );
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}
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SetPriorityClass( GetCurrentProcess(), REALTIME_PRIORITY_CLASS );
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SetThreadPriority( GetCurrentThread(), THREAD_PRIORITY_HIGHEST );
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float totalTime = 0.0f;
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int loopCount = ARRAYSIZE(pFileNames);
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#if VPROF_LEVEL > 0
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// loopCount = 3;
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#endif
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for ( int i = 0; i < loopCount; i++ )
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{
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if ( testModels[i].solidCount < 1 )
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{
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Msg("Failed to load %s, skipping test!\n", pFileNames[i] );
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continue;
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}
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Msg("Benchmark %s!\n\n", pFileNames[i] );
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benchresults_t results;
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memset( &results, 0, sizeof(results));
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int numRepeats = 3;
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#if VPROF_LEVEL > 0
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numRepeats = 1;
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#endif
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for ( int j = 0; j < numRepeats; j++ )
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{
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Benchmark_PHY( testModels[i].solids[0], &results );
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}
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Msg("%.2f ms [%.2f X] %d/%d hits\n", results.totalTime, IMPROVEMENT_FACTOR(results.totalTime, g_Baselines[i].total), results.collisionHits, results.collisionTests);
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Msg("%.2f ms rays \t[%.2f X] \t%.2f ms boxes [%.2f X]\n",
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results.rayTime, IMPROVEMENT_FACTOR(results.rayTime, g_Baselines[i].ray),
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results.boxTime, IMPROVEMENT_FACTOR(results.boxTime, g_Baselines[i].box));
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totalTime += results.totalTime;
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}
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SetPriorityClass( GetCurrentProcess(), NORMAL_PRIORITY_CLASS );
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Msg("\n%.2fs total \t[%.2f X]!\n", totalTime, IMPROVEMENT_FACTOR(totalTime, g_TotalBaseline) );
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return 0;
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}
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