1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
|
#include "HitboxFactory.h"
#include "spdlog/spdlog.h"
#include "Companion.h"
#include "utils/Decompressor.h"
#include "utils/TorchUtils.h"
SF64::HitboxData::HitboxData(std::vector<float> data, std::vector<int> types): mData(data), mTypes(types) {
}
void SF64::HitboxHeaderExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement) {
const auto symbol = GetSafeNode(node, "symbol", entryName);
if(Companion::Instance->IsOTRMode()){
write << "static const char " << symbol << "[] = \"__OTR__" << (*replacement) << "\";\n\n";
return;
}
write << "extern f32 " << symbol << "[];\n";
}
void SF64::HitboxCodeExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement ) {
const auto symbol = GetSafeNode(node, "symbol", entryName);
const auto offset = GetSafeNode<uint32_t>(node, "offset");
auto hitbox = std::static_pointer_cast<SF64::HitboxData>(raw);
auto index = 0;
auto count = hitbox->mData[index++];
auto off = offset;
if(IS_SEGMENTED(off)) {
off = SEGMENT_OFFSET(off);
}
if (Companion::Instance->IsDebug()) {
write << "// 0x" << std::uppercase << std::hex << off << "\n";
}
write << "f32 " << symbol << "[] = {\n";
write << fourSpaceTab << count << ",\n";
for(int i = 0; i < (int)count; i++) {
if(hitbox->mTypes[i] == 4) {
write << fourSpaceTab << "HITBOX_TYPE_4, ";
index++;
} else if (hitbox->mTypes[i] == 3) {
write << fourSpaceTab << "HITBOX_TYPE_3, ";
index++;
} else if (hitbox->mTypes[i] == 2) {
write << fourSpaceTab << "HITBOX_TYPE_2, ";
index++;
for(int j = 0; j < 3; j++) {
write << hitbox->mData[index++] << ", ";
}
write << fourSpaceTab;
} else {
write << " /* HITBOX_TYPE_1 */ ";
}
for(int j = 0; j < 6; j++) {
write << hitbox->mData[index++] << ", ";
}
write << "\n";
}
write << "};\n";
if (Companion::Instance->IsDebug()) {
write << "// 0x" << std::uppercase << std::hex << off + sizeof(float) * index << "\n";
}
write << "\n";
}
void SF64::HitboxBinaryExporter::Export(std::ostream &write, std::shared_ptr<IParsedData> raw, std::string& entryName, YAML::Node &node, std::string* replacement ) {
auto hitbox = std::static_pointer_cast<SF64::HitboxData>(raw);
auto writer = LUS::BinaryWriter();
WriteHeader(writer, LUS::ResourceType::Hitbox, 0);
for (float value : hitbox->mData) {
writer.Write(value);
}
writer.Finish(write);
}
std::optional<std::shared_ptr<IParsedData>> SF64::HitboxFactory::parse(std::vector<uint8_t>& buffer, YAML::Node& node) {
std::vector<float> data;
int count;
std::vector<int> types;
auto [_, segment] = Decompressor::AutoDecode(node, buffer, 0x10000);
LUS::BinaryReader reader(segment.data, segment.size);
reader.SetEndianness(LUS::Endianness::Big);
data.push_back(reader.ReadFloat());
count = data[0];
while(count > 0) {
auto typecode = reader.ReadFloat();
auto readCount = 0;
if(typecode == 300000.0f || typecode == 400000.0f) {
readCount = 6;
types.push_back((typecode == 300000.0f) ? 3 : 4);
} else if (typecode == 200000.0f) {
readCount = 9;
types.push_back(2);
} else {
readCount = 5;
types.push_back(1);
}
data.push_back(typecode);
for(int i = 0; i < readCount; i++) {
data.push_back(reader.ReadFloat());
}
count--;
}
return std::make_shared<SF64::HitboxData>(data, types);
}
|