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386 lines
8.0 KiB
386 lines
8.0 KiB
//========= Copyright Valve Corporation, All rights reserved. ============// |
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// |
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// Purpose: |
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// |
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//=============================================================================// |
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#include "cbase.h" |
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#include "filesystem.h" |
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#include "viewangleanim.h" |
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#include "KeyValues.h" |
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#include "tier0/memdbgon.h" |
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extern ConVar cl_pitchdown; |
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extern ConVar cl_pitchup; |
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// ConCommands useful for creating view animations |
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CViewAngleAnimation *g_pTestAnimation = NULL; |
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// create a view animation object to be used for creating an animation. parameter is flags |
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CON_COMMAND( viewanim_create, "viewanim_create" ) |
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{ |
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if ( g_pTestAnimation ) |
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{ |
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delete g_pTestAnimation; |
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g_pTestAnimation = NULL; |
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} |
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int flags = 0; |
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if ( args.ArgC() > 1 ) |
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{ |
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flags = atoi( args[1] ); |
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} |
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g_pTestAnimation = CREATE_ENTITY( CViewAngleAnimation, "viewangleanim" ); |
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if ( g_pTestAnimation ) |
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{ |
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g_pTestAnimation->Spawn(); |
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} |
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} |
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// run the test animation |
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void TestViewAnim( void ) |
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{ |
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if ( g_pTestAnimation ) |
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{ |
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QAngle angles; |
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engine->GetViewAngles( angles ); |
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g_pTestAnimation->RunAnimation( angles ); |
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} |
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else |
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Msg( "No view anim created\n" ); |
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} |
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ConCommand viewanim_test( "viewanim_test", TestViewAnim, "test view animation" ); |
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// set view angles to (0,0,0) |
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void ResetViewAngles( void ) |
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{ |
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// create a blank anim |
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QAngle angles = vec3_angle; |
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engine->SetViewAngles( angles ); |
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} |
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ConCommand viewanim_reset( "viewanim_reset", ResetViewAngles, "reset view angles!", FCVAR_CHEAT ); |
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// add a key frame to the test animation. first parameter is the time taken to get to this keyframe |
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CON_COMMAND_F( viewanim_addkeyframe, "", FCVAR_CHEAT ) |
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{ |
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if ( g_pTestAnimation ) |
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{ |
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QAngle vecTarget; |
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engine->GetViewAngles( vecTarget ); |
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float flDelay = 0.2; |
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if (args.ArgC() > 1) |
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{ |
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flDelay = atof( args[1] ); |
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} |
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int iFlags = 0; |
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if (args.ArgC() > 1) |
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{ |
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iFlags = atof( args[2] ); |
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} |
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g_pTestAnimation->AddKeyFrame( new CViewAngleKeyFrame( vecTarget, flDelay, iFlags ) ); |
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} |
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else |
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Msg( "No view anim created, use viewanim_create" ); |
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} |
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// save the current test anim, pass filename |
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CON_COMMAND( viewanim_save, "Save current animation to file" ) |
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{ |
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if (args.ArgC() < 2) |
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return; |
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if ( g_pTestAnimation ) |
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{ |
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g_pTestAnimation->SaveAsAnimFile( args[1] ); |
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} |
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else |
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{ |
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Msg( "No view anim created\n" ); |
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} |
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} |
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// load a view animation file into the test anim |
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CON_COMMAND( viewanim_load, "load animation from file" ) |
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{ |
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if (args.ArgC() < 2) |
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return; |
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if ( g_pTestAnimation ) |
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{ |
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g_pTestAnimation->LoadViewAnimFile( args[1] ); |
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} |
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else |
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Msg( "No view anim created\n" ); |
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} |
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LINK_ENTITY_TO_CLASS( viewangleanim, CViewAngleAnimation ); |
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CViewAngleAnimation::CViewAngleAnimation() |
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{ |
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} |
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CViewAngleAnimation::~CViewAngleAnimation() |
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{ |
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DeleteKeyFrames(); |
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} |
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void CViewAngleAnimation::Spawn( void ) |
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{ |
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m_iFlags = 0; |
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QAngle angles; |
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engine->GetViewAngles( angles ); |
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/* |
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if ( m_iFlags & VIEWANIM_RELATIVE ) |
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{ |
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AddKeyFrame( new CViewAngleKeyFrame( vec3_angle, 0.0, 0 ) ); |
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// seed this so we can add keyframes and have them calc the delta properly |
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m_vecBaseAngles = angles; |
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} |
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else |
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{ |
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AddKeyFrame( new CViewAngleKeyFrame( angles, 0.0, 0 ) ); |
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} |
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*/ |
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m_bFinished = true; // don't run right away |
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ClientEntityList().AddNonNetworkableEntity( this ); |
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SetNextClientThink( CLIENT_THINK_ALWAYS ); |
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} |
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void CViewAngleAnimation::DeleteKeyFrames() |
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{ |
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int i, c; |
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c = m_KeyFrames.Count(); |
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for ( i = c - 1; i >= 0 ; --i ) |
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{ |
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delete m_KeyFrames[ i ]; |
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} |
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m_KeyFrames.RemoveAll(); |
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} |
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void CViewAngleAnimation::LoadViewAnimFile( const char *pKeyFrameFileName ) |
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{ |
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DeleteKeyFrames(); |
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// load keyvalues from this file and stuff them in as keyframes |
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KeyValues *pData = new KeyValues( pKeyFrameFileName ); |
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if ( false == pData->LoadFromFile( filesystem, pKeyFrameFileName, "GAME" ) ) |
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{ |
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Warning( "CViewAngleAnimation::LoadViewAnimFile failed to load script %s\n", pKeyFrameFileName ); |
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pData->deleteThis(); |
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return; |
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} |
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QAngle angles; |
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float flTime; |
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int iFlags; |
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KeyValues *pKey = pData->GetFirstSubKey(); |
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while ( pKey ) |
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{ |
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// angles |
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const char *pszAngles = pKey->GetString( "angles", "0 0 0" ); |
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sscanf( pszAngles, "%f %f %f", &angles[0], &angles[1], &angles[2] ); |
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// time |
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flTime = pKey->GetFloat( "time", 0.001 ); |
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// flags |
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iFlags = pKey->GetInt( "flags", 0 ); |
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AddKeyFrame( new CViewAngleKeyFrame( angles, flTime, iFlags ) ); |
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pKey = pKey->GetNextKey(); |
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} |
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pData->deleteThis(); |
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} |
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void CViewAngleAnimation::SaveAsAnimFile( const char *pKeyFrameFileName ) |
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{ |
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// save all of our keyframes into the file |
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KeyValues *pData = new KeyValues( pKeyFrameFileName ); |
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pData->SetInt( "flags", m_iFlags ); |
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KeyValues *pKey = new KeyValues( "keyframe" ); |
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int i; |
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int c = m_KeyFrames.Count(); |
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char buf[64]; |
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for ( i=0;i<c;i++ ) |
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{ |
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pKey = pData->CreateNewKey(); |
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Q_snprintf( buf, sizeof(buf), "%f %f %f", |
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m_KeyFrames[i]->m_vecAngles[0], |
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m_KeyFrames[i]->m_vecAngles[1], |
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m_KeyFrames[i]->m_vecAngles[2] ); |
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pKey->SetString( "angles", buf ); |
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pKey->SetFloat( "time", m_KeyFrames[i]->m_flTime ); |
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pKey->SetInt( "flags", m_KeyFrames[i]->m_iFlags ); |
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} |
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pData->SaveToFile( filesystem, pKeyFrameFileName, NULL ); |
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pData->deleteThis(); |
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} |
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void CViewAngleAnimation::AddKeyFrame( CViewAngleKeyFrame *pKeyFrame ) |
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{ |
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pKeyFrame->m_vecAngles -= m_vecBaseAngles; |
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m_KeyFrames.AddToTail( pKeyFrame ); |
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} |
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bool CViewAngleAnimation::IsFinished( void ) |
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{ |
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return m_bFinished; |
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} |
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void CViewAngleAnimation::RunAnimation( QAngle angles ) |
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{ |
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if ( m_KeyFrames.Count() == 0 ) |
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{ |
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Warning( "CViewAngleAnimation::RunAnimation called on an empty view animation\n" ); |
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return; |
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} |
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m_flAnimStartTime = gpGlobals->curtime; |
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m_bFinished = false; |
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m_vecBaseAngles = angles; |
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m_iFlags = m_KeyFrames[0]->m_iFlags; |
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if ( !( m_iFlags & VIEWANIM_RELATIVE ) ) |
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{ |
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m_KeyFrames[0]->m_vecAngles = angles; |
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} |
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} |
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void CViewAngleAnimation::ClientThink() |
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{ |
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if ( IsFinished() ) |
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return; |
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float flCurrentTime = gpGlobals->curtime - m_flAnimStartTime; |
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if ( flCurrentTime < 0 ) |
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flCurrentTime = 0.001; |
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// find two nearest points |
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int i, c; |
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c = m_KeyFrames.Count(); |
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float flTime = 0; |
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for ( i=0;i<c;i++ ) |
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{ |
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if ( flTime + m_KeyFrames[i]->m_flTime > flCurrentTime ) |
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{ |
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break; |
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} |
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flTime += m_KeyFrames[i]->m_flTime; |
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} |
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Assert( i > 0 ); |
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if ( i >= c ) |
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{ |
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if ( i > 0 ) |
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{ |
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// animation complete, set to end point |
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SetAngles( m_KeyFrames[i-1]->m_vecAngles ); |
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} |
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if ( m_pAnimCompleteCallback ) |
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{ |
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m_pAnimCompleteCallback(); |
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} |
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m_bFinished = true; |
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return; |
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} |
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if ( m_KeyFrames[i]->m_iFlags != m_iFlags ) |
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{ |
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if ( ( m_KeyFrames[i]->m_iFlags & VIEWANIM_RELATIVE ) && !( m_iFlags & VIEWANIM_RELATIVE ) ) |
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{ |
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// new relative position is current angles |
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engine->GetViewAngles( m_vecBaseAngles ); |
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} |
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// copy the rest over |
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m_iFlags = m_KeyFrames[i]->m_iFlags; |
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} |
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// previous frame is m_KeyFrames[i-1]; |
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// next frame is m_KeyFrames[i]; |
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float flFraction = ( flCurrentTime - flTime ) / ( m_KeyFrames[i]->m_flTime ); |
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Vector v0, v1, v2, v3; |
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if ( i-2 <= 0 ) |
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{ |
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QAngleToVector( m_KeyFrames[i-1]->m_vecAngles, v0 ); |
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} |
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else |
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{ |
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QAngleToVector( m_KeyFrames[i-2]->m_vecAngles, v0 ); |
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} |
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QAngleToVector( m_KeyFrames[i-1]->m_vecAngles, v1 ); |
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QAngleToVector( m_KeyFrames[i]->m_vecAngles, v2 ); |
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if ( i+1 >= c ) |
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{ |
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QAngleToVector( m_KeyFrames[i]->m_vecAngles, v3 ); |
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} |
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else |
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{ |
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QAngleToVector( m_KeyFrames[i+1]->m_vecAngles, v3 ); |
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} |
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Vector out; |
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Catmull_Rom_Spline( v0, v1, v2, v3, flFraction, out ); |
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QAngle vecCalculatedAngles; |
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QAngleToVector( out, vecCalculatedAngles ); |
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SetAngles( vecCalculatedAngles ); |
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} |
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void CViewAngleAnimation::SetAngles( QAngle vecCalculatedAngles ) |
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{ |
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if ( m_iFlags & VIEWANIM_RELATIVE ) |
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vecCalculatedAngles += m_vecBaseAngles; |
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QAngle vecViewAngle; |
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engine->GetViewAngles( vecViewAngle ); |
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if ( !(FBitSet( m_iFlags, VIEWANIM_IGNORE_X ) ) ) |
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vecViewAngle[PITCH] = vecCalculatedAngles[PITCH]; |
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if ( !(FBitSet( m_iFlags, VIEWANIM_IGNORE_Y ) ) ) |
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vecViewAngle[YAW] = vecCalculatedAngles[YAW]; |
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if ( !(FBitSet( m_iFlags, VIEWANIM_IGNORE_Z ) ) ) |
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vecViewAngle[ROLL] = vecCalculatedAngles[ROLL]; |
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// clamp pitch |
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vecViewAngle[PITCH] = clamp( vecViewAngle[PITCH], -cl_pitchup.GetFloat(), cl_pitchdown.GetFloat() ); |
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engine->SetViewAngles( vecViewAngle ); |
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} |
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