mirror of
https://github.com/TwilitRealm/dusklight
synced 2026-05-27 15:42:42 -04:00
234 lines
9.5 KiB
C++
234 lines
9.5 KiB
C++
//
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// Generated By: dol2asm
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// Translation Unit: JPADynamicsBlock
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//
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#include "JSystem/JParticle/JPADynamicsBlock.h"
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#include "JSystem/JMath/JMATrigonometric.h"
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#include "JSystem/JParticle/JPAEmitter.h"
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/* 8027B144-8027B220 275A84 00DC+00 1/1 0/0 0/0 .text JPAVolumePoint__FP18JPAEmitterWorkData */
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void JPAVolumePoint(JPAEmitterWorkData* work) {
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work->mVolumeCalcData.mVolumePos.zero();
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work->mVolumeCalcData.mVelOmni.set(work->mpEmtr->get_r_zh(), work->mpEmtr->get_r_zh(),
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work->mpEmtr->get_r_zh());
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work->mVolumeCalcData.mVelAxis.set(work->mVolumeCalcData.mVelOmni.x, 0.0f,
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work->mVolumeCalcData.mVelOmni.z);
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}
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/* 8027B220-8027B33C 275B60 011C+00 1/1 0/0 0/0 .text JPAVolumeLine */
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void JPAVolumeLine(JPAEmitterWorkData* work) {
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedInterval)) {
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work->mVolumeCalcData.mVolumePos.set(
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0.0f, 0.0f,
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work->mVolumeSize * ((work->mVolumeEmitIdx / (work->mEmitCount - 1.0f) - 0.5f)));
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work->mVolumeEmitIdx++;
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} else {
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work->mVolumeCalcData.mVolumePos.set(0.0f, 0.0f,
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work->mVolumeSize * work->mpEmtr->get_r_zh());
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}
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work->mVolumeCalcData.mVelOmni.set(0.0f, 0.0f,
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work->mVolumeCalcData.mVolumePos.z * work->mGlobalScl.z);
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work->mVolumeCalcData.mVelAxis.set(0.0f, 0.0f, work->mVolumeCalcData.mVolumePos.z);
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}
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/* 8027B33C-8027B4E8 275C7C 01AC+00 1/1 0/0 0/0 .text JPAVolumeCircle */
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// NONMATCHING regalloc. Could be issue with mul asm implementations
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void JPAVolumeCircle(JPAEmitterWorkData* work) {
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s16 theta;
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f32 distance;
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedInterval)) {
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theta = (s16)((work->mVolumeEmitIdx << 16) / work->mEmitCount);
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theta = theta * work->mVolumeSweep;
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work->mVolumeEmitIdx++;
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} else {
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theta = work->mVolumeSweep * work->mpEmtr->get_r_ss();
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}
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distance = work->mpEmtr->get_r_f();
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedDensity)) {
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distance = 1.0f - (distance * distance);
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}
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distance = work->mVolumeSize * (work->mVolumeMinRad + distance * (1.0f - work->mVolumeMinRad));
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work->mVolumeCalcData.mVolumePos.set(distance * JMASSin(theta), 0.0f,
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distance * JMASCos(theta));
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work->mVolumeCalcData.mVelOmni.mul(work->mVolumeCalcData.mVolumePos, work->mGlobalScl);
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work->mVolumeCalcData.mVelAxis.set(work->mVolumeCalcData.mVolumePos.x, 0.0f,
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work->mVolumeCalcData.mVolumePos.z);
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}
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/* 8027B4E8-8027B5F0 275E28 0108+00 1/1 0/0 0/0 .text JPAVolumeCube */
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void JPAVolumeCube(JPAEmitterWorkData* work) {
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work->mVolumeCalcData.mVolumePos.set(work->mpEmtr->get_r_zh() * work->mVolumeSize,
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work->mpEmtr->get_r_zh() * work->mVolumeSize,
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work->mpEmtr->get_r_zh() * work->mVolumeSize);
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work->mVolumeCalcData.mVelOmni.mul(work->mVolumeCalcData.mVolumePos, work->mGlobalScl);
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work->mVolumeCalcData.mVelAxis.set(work->mVolumeCalcData.mVolumePos.x, 0.0f, work->mVolumeCalcData.mVolumePos.z);
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}
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/* 8027B5F0-8027B87C 275F30 028C+00 1/1 0/0 0/0 .text JPAVolumeSphere__FP18JPAEmitterWorkData */
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static void JPAVolumeSphere(JPAEmitterWorkData* work) {
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s16 phi, theta;
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedInterval)) {
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phi = (u16)(work->mVolumeX * 0x8000 / (work->mDivNumber - 1) + 0x4000);
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f32 tmp = (u16)(work->mVolumeAngleNum * 0x10000 / (work->mVolumeAngleMax - 1));
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theta = tmp * work->mVolumeSweep + 0x8000;
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work->mVolumeAngleNum++;
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if (work->mVolumeAngleNum == work->mVolumeAngleMax) {
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work->mVolumeAngleNum = 0;
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work->mVolumeX++;
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if (work->mVolumeX * 2 < work->mDivNumber) {
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work->mVolumeAngleMax = work->mVolumeAngleMax != 1 ?
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work->mVolumeAngleMax + 4 : work->mVolumeAngleMax + 3;
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} else {
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work->mVolumeAngleMax = work->mVolumeAngleMax != 4 ? work->mVolumeAngleMax - 4 : 1;
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}
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}
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} else {
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phi = work->mpEmtr->get_r_ss() >> 1;
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theta = work->mVolumeSweep * work->mpEmtr->get_r_ss();
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}
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f32 rnd = work->mpEmtr->get_r_f();
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedDensity)) {
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rnd = 1.0f - rnd * rnd * rnd;
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}
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f32 rad = work->mVolumeSize * (work->mVolumeMinRad + rnd * (1.0f - work->mVolumeMinRad));
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work->mVolumeCalcData.mVolumePos.set(rad * JMASCos(phi) * JMASSin(theta), -rad * JMASSin(phi),
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rad * JMASCos(phi) * JMASCos(theta));
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work->mVolumeCalcData.mVelOmni.mul(work->mVolumeCalcData.mVolumePos, work->mGlobalScl);
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work->mVolumeCalcData.mVelAxis.set(work->mVolumeCalcData.mVolumePos.x, 0.0f,
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work->mVolumeCalcData.mVolumePos.z);
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}
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/* 8027B87C-8027B9F8 2761BC 017C+00 1/1 0/0 0/0 .text JPAVolumeCylinder__FP18JPAEmitterWorkData */
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static void JPAVolumeCylinder(JPAEmitterWorkData* work) {
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s16 theta = work->mVolumeSweep * work->mpEmtr->get_r_ss();
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f32 rnd = work->mpEmtr->get_r_f();
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedDensity)) {
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rnd = 1.0f - rnd * rnd;
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}
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f32 rad = work->mVolumeSize * (work->mVolumeMinRad + rnd * (1.0f - work->mVolumeMinRad));
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work->mVolumeCalcData.mVolumePos.set(
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rad * JMASSin(theta), work->mVolumeSize * work->mpEmtr->get_r_zp(), rad * JMASCos(theta));
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work->mVolumeCalcData.mVelOmni.mul(work->mVolumeCalcData.mVolumePos, work->mGlobalScl);
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work->mVolumeCalcData.mVelAxis.set(work->mVolumeCalcData.mVolumePos.x, 0.0f,
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work->mVolumeCalcData.mVolumePos.z);
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}
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/* 8027B9F8-8027BB18 276338 0120+00 1/1 0/0 0/0 .text JPAVolumeTorus__FP18JPAEmitterWorkData */
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static void JPAVolumeTorus(JPAEmitterWorkData* work) {
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s16 theta = work->mVolumeSweep * work->mpEmtr->get_r_ss();
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s16 phi = work->mpEmtr->get_r_ss();
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f32 rad = work->mVolumeSize * work->mVolumeMinRad;
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work->mVolumeCalcData.mVelAxis.set(rad * JMASSin(theta) * JMASCos(phi), rad * JMASSin(phi),
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rad * JMASCos(theta) * JMASCos(phi));
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work->mVolumeCalcData.mVolumePos.set(
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work->mVolumeCalcData.mVelAxis.x + work->mVolumeSize * JMASSin(theta),
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work->mVolumeCalcData.mVelAxis.y,
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work->mVolumeCalcData.mVelAxis.z + work->mVolumeSize * JMASCos(theta));
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work->mVolumeCalcData.mVelOmni.mul(work->mVolumeCalcData.mVolumePos, work->mGlobalScl);
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}
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/* 8027BB18-8027BB4C 276458 0034+00 0/0 1/1 0/0 .text __ct__16JPADynamicsBlockFPCUc */
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JPADynamicsBlock::JPADynamicsBlock(u8 const* data) {
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mpData = (const JPADynamicsBlockData*)data;
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init();
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}
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enum {
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VOL_Cube = 0x00,
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VOL_Sphere = 0x01,
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VOL_Cylinder = 0x02,
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VOL_Torus = 0x03,
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VOL_Point = 0x04,
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VOL_Circle = 0x05,
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VOL_Line = 0x06,
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};
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/* 8027BB4C-8027BBE8 27648C 009C+00 2/1 0/0 0/0 .text init__16JPADynamicsBlockFv */
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void JPADynamicsBlock::init() {
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switch (getVolumeType()) {
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case VOL_Cube:
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mpCalcVolumeFunc = &JPAVolumeCube;
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break;
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case VOL_Sphere:
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mpCalcVolumeFunc = &JPAVolumeSphere;
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break;
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case VOL_Cylinder:
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mpCalcVolumeFunc = &JPAVolumeCylinder;
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break;
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case VOL_Torus:
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mpCalcVolumeFunc = &JPAVolumeTorus;
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break;
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case VOL_Point:
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mpCalcVolumeFunc = &JPAVolumePoint;
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break;
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case VOL_Circle:
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mpCalcVolumeFunc = &JPAVolumeCircle;
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break;
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case VOL_Line:
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mpCalcVolumeFunc = &JPAVolumeLine;
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break;
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}
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}
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/* 8027BBE8-8027BDEC 276528 0204+00 0/0 1/1 0/0 .text
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* create__16JPADynamicsBlockFP18JPAEmitterWorkData */
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void JPADynamicsBlock::create(JPAEmitterWorkData* work) {
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if (work->mpEmtr->checkStatus(JPAEmtrStts_RateStepEmit)) {
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s32 emitCount;
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s32 createCount;
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// Probably an inlined function.
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if (work->mpEmtr->checkFlag(JPADynFlag_FixedInterval)) {
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s32 count;
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if (getVolumeType() == VOL_Sphere) {
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count = 4 * getDivNumber() * getDivNumber() + 2;
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} else {
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count = getDivNumber();
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}
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emitCount = count;
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work->mVolumeEmitIdx = 0;
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} else {
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f32 newPtclCount =
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work->mpEmtr->mRate * (getRateRndm() * work->mpEmtr->get_r_zp() + 1.0f);
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f32 newEmitCount = work->mpEmtr->mEmitCount + newPtclCount;
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work->mpEmtr->mEmitCount = newEmitCount;
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emitCount = (s32)newEmitCount;
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work->mpEmtr->mEmitCount -= emitCount;
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if (work->mpEmtr->checkStatus(JPAEmtrStts_FirstEmit) && 0.0f < newPtclCount &&
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newPtclCount < 1.0f)
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emitCount = 1;
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}
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work->mEmitCount = emitCount;
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if (work->mpEmtr->checkStatus(JPAEmtrStts_StopEmit)) {
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emitCount = 0;
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}
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// Probably an inlined function.
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createCount = emitCount;
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while (createCount > 0) {
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JPABaseParticle* ptcl = work->mpEmtr->createParticle();
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if (ptcl == NULL)
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break;
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createCount--;
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}
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}
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if (++work->mpEmtr->mRateStepTimer >= (work->mpEmtr->mRateStep + 1)) {
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work->mpEmtr->mRateStepTimer -= (work->mpEmtr->mRateStep + 1);
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work->mpEmtr->setStatus(JPAEmtrStts_RateStepEmit);
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} else {
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work->mpEmtr->clearStatus(JPAEmtrStts_RateStepEmit);
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}
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work->mpEmtr->clearStatus(JPAEmtrStts_FirstEmit);
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}
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