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#include "KingSystem/ActorSystem/Awareness/actAwareness.h"
#include <container/seadSafeArray.h>
#include <cstring>
#include <prim/seadScopedLock.h>
#include <utility/aglParameter.h>
#include <utility/aglResParameter.h>
#include "KingSystem/ActorSystem/Awareness/actAwarenessDefs.h"
#include "KingSystem/ActorSystem/Awareness/actAwarenessInstance.h"
#include "KingSystem/Resource/resHandle.h"
#include "KingSystem/Resource/resLoadRequest.h"
namespace ksys::act {
SEAD_SINGLETON_DISPOSER_IMPL(Awareness)
bool Awareness::Instances::registerInstance(AwarenessInstance* instance) {
auto lock = sead::makeScopedLock(critical_section);
if (instances.size() <= count)
return false;
instances[count].instance = instance;
++count;
return true;
}
void Awareness::Instances::deregisterInstance(AwarenessInstance* instance) {
auto lock = sead::makeScopedLock(critical_section);
for (int i = 0; i < count; ++i) {
if (instances[i].instance == instance) {
// Swap and remove. The instance order doesn't matter here.
--count;
instances[i] = instances[count];
break;
}
}
}
Awareness::~Awareness() {
finalize();
}
void Awareness::finalize() {
mTerrorFilters.finalize();
mSensorFilters.finalize();
mSensorFilterBuffers.finalize();
}
bool Awareness::init(const Awareness::InitArg& arg, sead::Heap* heap) {
mHeap = heap;
if (!loadSystemData())
return false;
mInstances.instances.allocBufferAssert(arg.num_instances_max, heap);
if (!mInstances.instances.isBufferReady())
return false;
mLinks2.buffer.allocBufferAssert(arg.num_links2_max, heap);
if (!mLinks2.buffer.isBufferReady())
return false;
mLinks.buffer.allocBufferAssert(arg.num_links_max, heap);
if (!mLinks.buffer.isBufferReady())
return false;
return true;
}
// agl::utl::ResParameter::getParam being a pain as usual
#ifdef NON_MATCHING
bool Awareness::loadSystemData() {
if (!mHeap)
return false;
res::Handle handle;
res::LoadRequest req;
req.mRequester = "AwarenessSystemData";
req._26 = false;
{
const auto* res = sead::DynamicCast<sead::DirectResource>(
handle.load("Awareness/TerrorFilter.bawntable", &req));
if (!res)
return false;
const agl::utl::ResParameterArchive archive{res->getRawData()};
const auto root = archive.getRootList();
const auto list = agl::utl::getResParameterList(root, "TerrorFilter");
if (list.getResParameterObjNum() == 0)
return false;
if (!mTerrorFilters.allocBuffer(list.getResParameterObjNum(), mHeap))
return false;
for (auto it = list.objBegin(); it != list.objEnd(); ++it) {
const auto obj = it.getObj();
const u32 target = obj.getParameterObjNameHash();
u32 flags = 0;
for (auto it_p = obj.begin(); it_p != obj.end(); ++it_p) {
const auto param = it_p.getParam();
const auto enabled = *param.getData<int>();
if (enabled)
flags |= getAwarenessTerrorFlags(param.getParameterNameHash());
}
mTerrorFilters.insert(TerrorFilter{flags, target});
}
}
handle.requestUnload2();
{
const auto* res = sead::DynamicCast<sead::DirectResource>(
handle.load("Awareness/SensorFilter.bsft", &req));
if (!res)
return false;
const agl::utl::ResParameterArchive archive{res->getRawData()};
const auto root = archive.getRootList();
const auto list = agl::utl::getResParameterList(root, "SensorFilter");
if (list.getResParameterObjNum() == 0)
return false;
if (!mSensorFilters.allocBuffer(list.getResParameterObjNum(), mHeap))
return false;
for (auto it = list.objBegin(); it != list.objEnd(); ++it) {
const auto obj = it.getObj();
const u32 target = obj.getParameterObjNameHash();
u32 flags = 0;
for (auto it_p = obj.begin(); it_p != obj.end(); ++it_p) {
const auto param = it_p.getParam();
const auto enabled = *param.getData<int>();
if (enabled)
flags |= getAwarenessSensorFlags(param.getParameterNameHash());
}
mSensorFilters.insert(SensorFilter{flags, target});
}
}
handle.requestUnload2();
{
const auto* res = sead::DynamicCast<sead::DirectResource>(
handle.load("Awareness/SensorFilterBuffer.bsfbt", &req));
if (!res)
return false;
const agl::utl::ResParameterArchive archive{res->getRawData()};
const auto root = archive.getRootList();
const auto list = agl::utl::getResParameterList(root, "SensorFilterBuffer");
if (list.getResParameterObjNum() == 0)
return false;
if (!mSensorFilterBuffers.allocBuffer(list.getResParameterObjNum(), mHeap))
return false;
for (auto it = list.objBegin(); it != list.objEnd(); ++it) {
const auto obj = it.getObj();
const u32 target = obj.getParameterObjNameHash();
SensorFilterBuffer::Params params;
for (auto it_p = obj.begin(); it_p != obj.end(); ++it_p) {
const auto param = it_p.getParam();
std::memcpy(¶ms.raw[it_p.getIndex()],
param.ptrBytes() + param.ptr()->getOffset(), sizeof(int));
if (it_p.getIndex() >= params.raw.size())
return false;
}
mSensorFilterBuffers.insert(SensorFilterBuffer{params, target});
}
}
handle.requestUnload2();
return true;
}
#endif
bool Awareness::initBeforeStageGen() {
mInstances.count = 0;
mInstances.ticks = 0;
mLinks2.count = 0;
mLinks.count = 0;
mUnk.finalize();
setPaused(false);
return true;
}
void Awareness::setPaused(bool paused) {
mFlags.changeBit(Flag(Flag::Paused), paused);
if (paused) {
mFlags.setBit(Flag(Flag::_2));
} else {
mFlags.setBit(Flag(Flag::_6));
}
}
void Awareness::setEventActive(bool active) {
mFlags.changeBit(Flag(Flag::EventActive), active);
if (active) {
mFlags.setBit(Flag(Flag::_5));
} else {
mFlags.setBit(Flag(Flag::_6));
}
}
void Awareness::calc() {
if (checkFlag(Flag::Paused)) {
if (checkFlag(Flag::_2))
resetFlag(Flag::_2);
} else if (checkFlag(Flag::EventActive)) {
if (checkFlag(Flag::_5)) {
mInstances.calcForEvent(true);
resetFlag(Flag::_5);
}
} else if (checkFlag(Flag::_3)) {
resetFlag(Flag::_3);
} else if (checkFlag(Flag::_6)) {
resetFlag(Flag::_6);
} else {
mInstances.calc();
}
mUnk.calc();
mLinks2.calc();
mLinks.calc();
resetFlag(Flag::_0);
}
void Awareness::Links2::calc() {
count = 0;
}
void Awareness::Links::calc() {
count = 0;
}
void Awareness::Instances::calc() {
++ticks;
for (int i = 0; i < count; ++i) {
if ((i + ticks) % 8 == 0) {
get(i)->calc2();
}
get(i)->calc();
}
}
void Awareness::Instances::calcForEvent(bool check_334) {
for (int i = 0; i < count; ++i) {
if (!check_334 || get(i)->_334 < 0)
get(i)->calcForEvent();
}
}
} // namespace ksys::act
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