Implement/Match LegoTree (#485)

* Implement/Match LegoTree

* Fix vtable

* Fixes

---------

Co-authored-by: Christian Semmler <mail@csemmler.com>
This commit is contained in:
Nathan M Gilbert
2024-01-28 11:45:49 -05:00
committed by GitHub
parent 4137cd75e6
commit c0acf11f9b
5 changed files with 204 additions and 58 deletions

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@@ -0,0 +1,110 @@
#include "legotree.h"
#include "decomp.h"
#include "legostorage.h"
DECOMP_SIZE_ASSERT(LegoTreeNodeData, 0x04)
DECOMP_SIZE_ASSERT(LegoTreeNode, 0x010)
DECOMP_SIZE_ASSERT(LegoTree, 0x08)
// FUNCTION: LEGO1 0x10099d60
LegoTreeNode::LegoTreeNode()
{
m_data = NULL;
m_numChildren = 0;
m_children = NULL;
}
// FUNCTION: LEGO1 0x10099da0
LegoTreeNode::~LegoTreeNode()
{
if (m_data) {
delete m_data;
}
if (m_children) {
delete[] m_children;
}
}
// FUNCTION: LEGO1 0x10099dd0
LegoTree::LegoTree()
{
m_root = NULL;
}
// FUNCTION: LEGO1 0x10099e00
LegoTree::~LegoTree()
{
if (m_root) {
Delete(m_root);
}
}
// FUNCTION: LEGO1 0x10099e20
LegoResult LegoTree::Read(LegoStorage* p_storage)
{
return Read(p_storage, m_root);
}
// FUNCTION: LEGO1 0x10099e40
LegoResult LegoTree::Write(LegoStorage* p_storage)
{
return Write(p_storage, m_root);
}
// FUNCTION: LEGO1 0x10099e60
LegoResult LegoTree::Read(LegoStorage* p_storage, LegoTreeNode*& p_node)
{
LegoResult result;
p_node = new LegoTreeNode();
p_node->SetData(CreateData());
if ((result = p_node->GetData()->Read(p_storage)) != SUCCESS) {
return result;
}
LegoU32 numChildren;
if ((result = p_storage->Read(&numChildren, sizeof(numChildren))) != SUCCESS) {
return result;
}
if (numChildren) {
p_node->SetChildren(new LegoTreeNode*[numChildren]);
for (LegoU32 i = 0; i < numChildren; i++) {
LegoTreeNode* node;
if ((result = Read(p_storage, node)) != SUCCESS) {
return result;
}
p_node->SetNumChildren(p_node->GetNumChildren() + 1);
p_node->SetChild(i, node);
}
}
return SUCCESS;
}
// FUNCTION: LEGO1 0x1009a020
LegoResult LegoTree::Write(LegoStorage* p_storage, LegoTreeNode* p_node)
{
LegoResult result;
if (p_node->GetData()) {
if ((result = p_node->GetData()->Write(p_storage)) != SUCCESS) {
return result;
}
}
LegoU32 numChildren = p_node->GetNumChildren();
if ((result = p_storage->Write(&numChildren, sizeof(numChildren))) != SUCCESS) {
return result;
}
for (LegoU32 i = 0; i < p_node->GetNumChildren(); i++) {
if ((result = Write(p_storage, p_node->GetChild(i))) != SUCCESS) {
return result;
}
}
return SUCCESS;
}
// FUNCTION: LEGO1 0x1009a0a0
void LegoTree::Delete(LegoTreeNode* p_node)
{
for (LegoU32 i = 0; i < p_node->GetNumChildren(); i++) {
Delete(p_node->GetChild(i));
}
delete p_node;
}

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#ifndef __LEGOTREE_H
#define __LEGOTREE_H
#ifdef _DEBUG
#include <stdio.h>
#endif
#include "legotypes.h"
class LegoStorage;
// VTABLE: LEGO1 0x100db778
// SIZE 0x4
class LegoTreeNodeData {
public:
LegoTreeNodeData() {}
virtual ~LegoTreeNodeData() {}
// FUNCTION: LEGO1 0x10099fe0
virtual LegoResult Read(LegoStorage* p_storage) { return SUCCESS; } // vtable+0x4
// FUNCTION: LEGO1 0x10099ff0
virtual LegoResult Write(LegoStorage* p_storage) { return SUCCESS; } // vtable+0x8
// SYNTHETIC: LEGO1 0x1009a000
// LegoTreeNodeData::`scalar deleting destructor'
};
// VTABLE: LEGO1 0x100db764
// SIZE 0x10
class LegoTreeNode {
public:
LegoTreeNode();
virtual ~LegoTreeNode();
LegoTreeNodeData* GetData() { return m_data; }
void SetData(LegoTreeNodeData* p_data) { m_data = p_data; }
LegoU32 GetNumChildren() { return m_numChildren; }
void SetNumChildren(LegoU32 p_numChildren) { m_numChildren = p_numChildren; }
LegoTreeNode* GetChild(LegoU32 p_i) { return m_children[p_i]; }
void SetChild(LegoU32 p_i, LegoTreeNode* p_child) { m_children[p_i] = p_child; }
LegoTreeNode** GetChildren() { return m_children; }
void SetChildren(LegoTreeNode** p_children) { m_children = p_children; }
// SYNTHETIC: LEGO1 0x10099d80
// LegoTreeNode::`scalar deleting destructor'
protected:
LegoTreeNodeData* m_data; // 0x4
LegoU32 m_numChildren; // 0x8
LegoTreeNode** m_children; // 0xc
};
// VTABLE: LEGO1 0x100db768
// SIZE 0x8
class LegoTree {
public:
LegoTree();
virtual ~LegoTree();
LegoTreeNode* GetRoot() { return m_root; }
void SetRoot(LegoTreeNode* p_root) { m_root = p_root; }
virtual LegoResult Read(LegoStorage* p_storage); // vtable+0x4
virtual LegoResult Write(LegoStorage* p_storage); // vtable+0x8
// SYNTHETIC: LEGO1 0x10099de0
// LegoTree::`scalar deleting destructor'
protected:
LegoResult Read(LegoStorage* p_storage, LegoTreeNode*& p_node);
LegoResult Write(LegoStorage* p_storage, LegoTreeNode* p_node);
void Delete(LegoTreeNode* p_node);
// FUNCTION: LEGO1 0x10099f70
virtual LegoTreeNodeData* CreateData() { return new LegoTreeNodeData(); } // vtable+0xc
LegoTreeNode* m_root; // 0x4
};
#endif // __LEGOTREE_H