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https://github.com/GTAmodding/re3.git
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306 lines
7.7 KiB
C++
306 lines
7.7 KiB
C++
#include "common.h"
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#include "WaterCannon.h"
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#include "Vector.h"
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#include "General.h"
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#include "main.h"
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#include "Timer.h"
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#include "Pools.h"
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#include "Ped.h"
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#include "AnimManager.h"
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#include "Fire.h"
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#include "WaterLevel.h"
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#include "Camera.h"
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#define WATERCANNONVERTS 4
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#define WATERCANNONINDEXES 12
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RwIm3DVertex WaterCannonVertices[WATERCANNONVERTS];
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RwImVertexIndex WaterCannonIndexList[WATERCANNONINDEXES];
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CWaterCannon CWaterCannons::aCannons[NUM_WATERCANNONS];
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void CWaterCannon::Init(void)
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{
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m_nId = 0;
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m_nCur = 0;
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m_nTimeCreated = CTimer::GetTimeInMilliseconds();
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for ( int32 i = 0; i < NUM_SEGMENTPOINTS; i++ )
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m_abUsed[i] = false;
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RwIm3DVertexSetU(&WaterCannonVertices[0], 0.0f);
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RwIm3DVertexSetV(&WaterCannonVertices[0], 0.0f);
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RwIm3DVertexSetU(&WaterCannonVertices[1], 1.0f);
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RwIm3DVertexSetV(&WaterCannonVertices[1], 0.0f);
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RwIm3DVertexSetU(&WaterCannonVertices[2], 0.0f);
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RwIm3DVertexSetV(&WaterCannonVertices[2], 0.0f);
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RwIm3DVertexSetU(&WaterCannonVertices[3], 1.0f);
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RwIm3DVertexSetV(&WaterCannonVertices[3], 0.0f);
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WaterCannonIndexList[0] = 0;
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WaterCannonIndexList[1] = 1;
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WaterCannonIndexList[2] = 2;
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WaterCannonIndexList[3] = 1;
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WaterCannonIndexList[4] = 3;
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WaterCannonIndexList[5] = 2;
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WaterCannonIndexList[6] = 0;
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WaterCannonIndexList[7] = 2;
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WaterCannonIndexList[8] = 1;
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WaterCannonIndexList[9] = 1;
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WaterCannonIndexList[10] = 2;
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WaterCannonIndexList[11] = 3;
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}
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void CWaterCannon::Update_OncePerFrame(int16 index)
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{
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ASSERT(index < NUM_WATERCANNONS);
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if (CTimer::GetTimeInMilliseconds() > m_nTimeCreated + WATERCANNON_LIFETIME )
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{
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m_nCur = (m_nCur + 1) % -NUM_SEGMENTPOINTS;
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m_abUsed[m_nCur] = false;
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}
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for ( int32 i = 0; i < NUM_SEGMENTPOINTS; i++ )
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{
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if ( m_abUsed[i] )
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{
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m_avecVelocity[i].z += -WATERCANNON_GRAVITY * CTimer::GetTimeStep();
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m_avecPos[i] += m_avecVelocity[i] * CTimer::GetTimeStep();
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}
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}
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int32 extinguishingPoint = CGeneral::GetRandomNumber() & (NUM_SEGMENTPOINTS - 1);
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if ( m_abUsed[extinguishingPoint] )
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gFireManager.ExtinguishPoint(m_avecPos[extinguishingPoint], 3.0f);
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if ( ((index + CTimer::GetFrameCounter()) & 3) == 0 )
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PushPeds();
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// free if unused
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int32 i = 0;
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while ( 1 )
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{
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if ( m_abUsed[i] )
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break;
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if ( ++i >= NUM_SEGMENTPOINTS )
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{
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m_nId = 0;
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return;
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}
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}
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}
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void CWaterCannon::Update_NewInput(CVector *pos, CVector *dir)
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{
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ASSERT(pos != NULL);
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ASSERT(dir != NULL);
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m_avecPos[m_nCur] = *pos;
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m_avecVelocity[m_nCur] = *dir;
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m_abUsed[m_nCur] = true;
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}
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void CWaterCannon::Render(void)
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{
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RwRenderStateSet(rwRENDERSTATEZWRITEENABLE, (void *)FALSE);
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RwRenderStateSet(rwRENDERSTATEVERTEXALPHAENABLE, (void *)TRUE);
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RwRenderStateSet(rwRENDERSTATEFOGENABLE, (void *)TRUE);
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RwRenderStateSet(rwRENDERSTATETEXTURERASTER, (void *)gpWaterRaster);
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float v = float(CGeneral::GetRandomNumber() & 255) / 256;
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RwIm3DVertexSetV(&WaterCannonVertices[0], v);
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RwIm3DVertexSetV(&WaterCannonVertices[1], v);
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RwIm3DVertexSetV(&WaterCannonVertices[2], v);
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RwIm3DVertexSetV(&WaterCannonVertices[3], v);
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int16 pointA = m_nCur % -NUM_SEGMENTPOINTS;
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int16 pointB = pointA - 1;
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if ( (pointA - 1) < 0 )
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pointB += NUM_SEGMENTPOINTS;
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bool bInit = false;
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CVector norm;
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for ( int32 i = 0; i < NUM_SEGMENTPOINTS - 1; i++ )
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{
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if ( m_abUsed[pointA] && m_abUsed[pointB] )
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{
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if ( !bInit )
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{
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CVector cp = CrossProduct(m_avecPos[pointB] - m_avecPos[pointA], TheCamera.GetForward());
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cp.Normalise(0.05f);
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norm = cp;
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bInit = true;
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}
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float dist = float(i*i*i) / 300.0f + 1.0f;
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float brightness = float(i) / NUM_SEGMENTPOINTS;
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int32 color = (int32)((1.0f - brightness*brightness) * 255.0f);
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CVector offset = dist * norm;
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RwIm3DVertexSetRGBA(&WaterCannonVertices[0], color, color, color, color);
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RwIm3DVertexSetPos (&WaterCannonVertices[0], m_avecPos[pointA].x - offset.x, m_avecPos[pointA].y - offset.y, m_avecPos[pointA].z - offset.z);
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RwIm3DVertexSetRGBA(&WaterCannonVertices[1], color, color, color, color);
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RwIm3DVertexSetPos (&WaterCannonVertices[1], m_avecPos[pointA].x + offset.x, m_avecPos[pointA].y + offset.y, m_avecPos[pointA].z + offset.z);
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RwIm3DVertexSetRGBA(&WaterCannonVertices[2], color, color, color, color);
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RwIm3DVertexSetPos (&WaterCannonVertices[2], m_avecPos[pointB].x - offset.x, m_avecPos[pointB].y - offset.y, m_avecPos[pointB].z - offset.z);
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RwIm3DVertexSetRGBA(&WaterCannonVertices[3], color, color, color, color);
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RwIm3DVertexSetPos (&WaterCannonVertices[3], m_avecPos[pointB].x + offset.x, m_avecPos[pointB].y + offset.y, m_avecPos[pointB].z + offset.z);
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LittleTest();
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if ( RwIm3DTransform(WaterCannonVertices, WATERCANNONVERTS, NULL, rwIM3D_VERTEXUV) )
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{
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RwIm3DRenderIndexedPrimitive(rwPRIMTYPETRILIST, WaterCannonIndexList, WATERCANNONINDEXES);
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RwIm3DEnd();
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}
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}
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pointA = pointB--;
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if ( pointB < 0 )
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pointB += NUM_SEGMENTPOINTS;
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}
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RwRenderStateSet(rwRENDERSTATEZWRITEENABLE, (void *)TRUE);
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RwRenderStateSet(rwRENDERSTATEVERTEXALPHAENABLE, (void *)FALSE);
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RwRenderStateSet(rwRENDERSTATEFOGENABLE, (void *)FALSE);
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}
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void CWaterCannon::PushPeds(void)
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{
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float minx = 10000.0f;
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float maxx = -10000.0f;
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float miny = 10000.0f;
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float maxy = -10000.0f;
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float minz = 10000.0f;
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float maxz = -10000.0f;
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for ( int32 i = 0; i < NUM_SEGMENTPOINTS; i++ )
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{
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if ( m_abUsed[i] )
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{
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minx = Min(minx, m_avecPos[i].x);
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maxx = Max(maxx, m_avecPos[i].x);
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miny = Min(miny, m_avecPos[i].y);
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maxy = Max(maxy, m_avecPos[i].y);
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minz = Min(minz, m_avecPos[i].z);
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maxz = Max(maxz, m_avecPos[i].z);
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}
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}
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for ( int32 i = CPools::GetPedPool()->GetSize() - 1; i >= 0; i--)
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{
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CPed *ped = CPools::GetPedPool()->GetSlot(i);
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if ( ped )
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{
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if ( ped->GetPosition().x > minx && ped->GetPosition().x < maxx
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&& ped->GetPosition().y > miny && ped->GetPosition().y < maxy
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&& ped->GetPosition().z > minz && ped->GetPosition().z < maxz )
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{
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for ( int32 j = 0; j < NUM_SEGMENTPOINTS; j++ )
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{
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if ( m_abUsed[j] )
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{
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CVector dist = m_avecPos[j] - ped->GetPosition();
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if ( dist.MagnitudeSqr() < 5.0f )
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{
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int32 localDir = ped->GetLocalDirection(CVector2D(1.0f, 0.0f));
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ped->bIsStanding = false;
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ped->ApplyMoveForce(0.0f, 0.0f, 2.0f * CTimer::GetTimeStep());
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ped->m_vecMoveSpeed.x = (0.6f * m_avecVelocity[j].x + ped->m_vecMoveSpeed.x) * 0.5f;
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ped->m_vecMoveSpeed.y = (0.6f * m_avecVelocity[j].y + ped->m_vecMoveSpeed.y) * 0.5f;
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ped->SetFall(2000, AnimationId(ANIM_KO_SKID_FRONT + localDir), 0);
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CFire *fire = ped->m_pFire;
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if ( fire )
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fire->Extinguish();
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j = NUM_SEGMENTPOINTS;
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}
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}
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}
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}
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}
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}
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}
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void CWaterCannons::Init(void)
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{
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for ( int32 i = 0; i < NUM_WATERCANNONS; i++ )
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aCannons[i].Init();
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}
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void CWaterCannons::UpdateOne(uint32 id, CVector *pos, CVector *dir)
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{
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ASSERT(pos != NULL);
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ASSERT(dir != NULL);
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// find the one by id
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{
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int32 n = 0;
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while ( n < NUM_WATERCANNONS && id != aCannons[n].m_nId )
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n++;
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if ( n < NUM_WATERCANNONS )
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{
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aCannons[n].Update_NewInput(pos, dir);
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return;
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}
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}
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// if no luck then find a free one
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{
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int32 n = 0;
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while ( n < NUM_WATERCANNONS && 0 != aCannons[n].m_nId )
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n++;
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if ( n < NUM_WATERCANNONS )
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{
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aCannons[n].Init();
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aCannons[n].m_nId = id;
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aCannons[n].Update_NewInput(pos, dir);
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return;
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}
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}
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}
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void CWaterCannons::Update(void)
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{
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for ( int32 i = 0; i < NUM_WATERCANNONS; i++ )
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{
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if ( aCannons[i].m_nId != 0 )
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aCannons[i].Update_OncePerFrame(i);
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}
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}
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void CWaterCannons::Render(void)
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{
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for ( int32 i = 0; i < NUM_WATERCANNONS; i++ )
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{
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if ( aCannons[i].m_nId != 0 )
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aCannons[i].Render();
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}
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}
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