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@ -25,6 +25,7 @@ distribution.
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#include "Internal.h"
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#include "Internal.h"
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#include <string>
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#include <string>
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#include <sstream>
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#include <vector>
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#include <vector>
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#include <cstdio>
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#include <cstdio>
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#include <map>
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#include <map>
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@ -64,9 +65,11 @@ private:
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int32_t offset2;
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int32_t offset2;
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Process * p;
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Process * p;
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DataWidth dataWidth;
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DataWidth dataWidth;
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uint32_t method;
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public:
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public:
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Accessor(uint32_t function, Process * p);
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Accessor(uint32_t function, Process * p);
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Accessor(accessor_type type, int32_t constant, uint32_t offset1, uint32_t offset2, uint32_t dataWidth, Process * p);
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Accessor(accessor_type type, int32_t constant, uint32_t offset1, uint32_t offset2, uint32_t dataWidth, Process * p);
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std::string dump();
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int32_t getValue(uint32_t objectPtr);
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int32_t getValue(uint32_t objectPtr);
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bool isConstant();
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bool isConstant();
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};
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};
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@ -96,6 +99,7 @@ private:
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public:
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public:
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ItemDesc(uint32_t VTable, Process * p);
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ItemDesc(uint32_t VTable, Process * p);
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bool readItem(uint32_t itemptr, dfh_item & item);
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bool readItem(uint32_t itemptr, dfh_item & item);
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std::string dumpAccessors();
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std::string className;
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std::string className;
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uint32_t vtable;
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uint32_t vtable;
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uint32_t mainType;
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uint32_t mainType;
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@ -178,22 +182,22 @@ Accessor::Accessor(uint32_t function, Process *p)
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this->constant = 0;
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this->constant = 0;
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return;
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return;
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}
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}
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uint32_t ptr = function;
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method = function;
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int data_reg = -1;
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int data_reg = -1;
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uint64_t v = p->readQuad(ptr);
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uint64_t v = p->readQuad(method);
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if (do_match(ptr, v, 2, 0xFFFF, 0xC033) ||
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if (do_match(method, v, 2, 0xFFFF, 0xC033) ||
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do_match(ptr, v, 2, 0xFFFF, 0xC031)) // XOR EAX, EAX
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do_match(method, v, 2, 0xFFFF, 0xC031)) // XOR EAX, EAX
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{
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{
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data_reg = 0;
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data_reg = 0;
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this->constant = 0;
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this->constant = 0;
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}
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}
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else if (do_match(ptr, v, 3, 0xFFFFFF, 0xFFC883)) // OR EAX, -1
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else if (do_match(method, v, 3, 0xFFFFFF, 0xFFC883)) // OR EAX, -1
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{
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{
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data_reg = 0;
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data_reg = 0;
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this->constant = -1;
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this->constant = -1;
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}
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}
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else if (do_match(ptr, v, 5, 0xFF, 0xB8)) // MOV EAX,imm
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else if (do_match(method, v, 5, 0xFF, 0xB8)) // MOV EAX,imm
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{
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{
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data_reg = 0;
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data_reg = 0;
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this->constant = (v>>8) & 0xFFFFFFFF;
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this->constant = (v>>8) & 0xFFFFFFFF;
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@ -204,22 +208,22 @@ Accessor::Accessor(uint32_t function, Process *p)
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int ptr_reg = 1, tmp; // ECX
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int ptr_reg = 1, tmp; // ECX
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// MOV REG,[ESP+4]
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// MOV REG,[ESP+4]
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if (do_match(ptr, v, 4, 0xFFFFC7FFU, 0x0424448B))
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if (do_match(method, v, 4, 0xFFFFC7FFU, 0x0424448B))
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{
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{
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ptr_reg = (v>>11)&7;
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ptr_reg = (v>>11)&7;
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v = p->readQuad(ptr);
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v = p->readQuad(method);
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}
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}
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if (match_MOV_MEM(ptr, v, ptr_reg, tmp, this->offset1, xsize)) {
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if (match_MOV_MEM(method, v, ptr_reg, tmp, this->offset1, xsize)) {
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data_reg = tmp;
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data_reg = tmp;
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this->type = ACCESSOR_INDIRECT;
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this->type = ACCESSOR_INDIRECT;
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this->dataWidth = xsize;
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this->dataWidth = xsize;
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if (xsize == Data32)
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if (xsize == Data32)
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{
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{
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v = p->readQuad(ptr);
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v = p->readQuad(method);
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if (match_MOV_MEM(ptr, v, data_reg, tmp, this->offset2, xsize)) {
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if (match_MOV_MEM(method, v, data_reg, tmp, this->offset2, xsize)) {
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data_reg = tmp;
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data_reg = tmp;
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this->type = ACCESSOR_DOUBLE_INDIRECT;
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this->type = ACCESSOR_DOUBLE_INDIRECT;
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this->dataWidth = xsize;
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this->dataWidth = xsize;
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@ -228,9 +232,9 @@ Accessor::Accessor(uint32_t function, Process *p)
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}
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}
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}
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}
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v = p->readQuad(ptr);
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v = p->readQuad(method);
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if (data_reg == 0 && do_match(ptr, v, 1, 0xFF, 0xC3)) // RET
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if (data_reg == 0 && do_match(method, v, 1, 0xFF, 0xC3)) // RET
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return;
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return;
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else
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else
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{
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{
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@ -248,6 +252,55 @@ bool Accessor::isConstant()
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return false;
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return false;
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}
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}
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string Accessor::dump()
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{
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stringstream sstr;
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sstr << hex << "method @0x" << method << dec << " ";
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switch(type)
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{
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case ACCESSOR_CONSTANT:
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sstr << "Constant: " << dec << constant;
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break;
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case ACCESSOR_INDIRECT:
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switch(dataWidth)
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{
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case Data32:
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sstr << "int32_t ";
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break;
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case DataSigned16:
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sstr << "int16_t ";
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break;
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case DataUnsigned16:
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sstr << "uint16_t ";
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break;
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default:
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sstr << "unknown ";
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break;
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}
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sstr << hex << "[obj + 0x" << offset1 << " ]";
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break;
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case ACCESSOR_DOUBLE_INDIRECT:
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switch(dataWidth)
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{
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case Data32:
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sstr << "int32_t ";
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break;
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case DataSigned16:
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sstr << "int16_t ";
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break;
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case DataUnsigned16:
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sstr << "uint16_t ";
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break;
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default:
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sstr << "unknown ";
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break;
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}
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sstr << hex << "[ [obj + 0x" << offset1 << " ] + 0x" << offset2 << " ]";
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break;
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}
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return sstr.str();
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}
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int32_t Accessor::getValue(uint32_t objectPtr)
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int32_t Accessor::getValue(uint32_t objectPtr)
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{
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{
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int32_t offset = this->offset1;
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int32_t offset = this->offset1;
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@ -283,8 +336,10 @@ int32_t Accessor::getValue(uint32_t objectPtr)
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Accessor * buildAccessor (OffsetGroup * I, Process * p, const char * name, uint32_t vtable)
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Accessor * buildAccessor (OffsetGroup * I, Process * p, const char * name, uint32_t vtable)
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{
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{
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int32_t offset;
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int32_t offset;
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if(I->getSafeOffset("item_type_accessor",offset))
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if(I->getSafeOffset(name,offset))
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{
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return new Accessor( p->readDWord( vtable + offset ), p);
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return new Accessor( p->readDWord( vtable + offset ), p);
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}
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else
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else
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{
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{
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fprintf(stderr,"Missing offset for item accessor \"%s\"\n", name);
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fprintf(stderr,"Missing offset for item accessor \"%s\"\n", name);
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@ -324,6 +379,19 @@ ItemDesc::ItemDesc(uint32_t VTable, Process *p)
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}
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}
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}
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}
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string ItemDesc::dumpAccessors()
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{
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std::stringstream outss;
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outss << "MainType :" << AMainType->dump() << endl;
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outss << "ASubType :" << ASubType->dump() << endl;
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outss << "ASubIndex :" << ASubIndex->dump() << endl;
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outss << "AIndex :" << AIndex->dump() << endl;
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outss << "AQuality :" << AQuality->dump() << endl;
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outss << "AWear :" << AWear->dump() << endl;
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return outss.str();
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}
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bool ItemDesc::readItem(uint32_t itemptr, DFHack::dfh_item &item)
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bool ItemDesc::readItem(uint32_t itemptr, DFHack::dfh_item &item)
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{
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{
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p->read(itemptr, sizeof(t_item), (uint8_t*)&item.base);
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p->read(itemptr, sizeof(t_item), (uint8_t*)&item.base);
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@ -485,19 +553,38 @@ std::string Items::getItemClass(int32_t index)
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std::string Items::getItemDescription(const dfh_item & item, Materials * Materials)
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std::string Items::getItemDescription(const dfh_item & item, Materials * Materials)
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{
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{
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std::string out;
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std::stringstream outss;
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switch(item.quality)
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switch(item.quality)
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{
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{
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case 0: break;
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case 0:
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case 1: out.append("Well crafted "); break;
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outss << "Ordinary ";
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case 2: out.append("Finely crafted "); break;
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break;
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case 3: out.append("Superior quality "); break;
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case 1:
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case 4: out.append("Exceptionnal "); break;
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outss << "Well crafted ";
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case 5: out.append("Masterful "); break;
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break;
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default: out.append("Crazy quality "); break;
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case 2:
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outss << "Finely crafted ";
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break;
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case 3:
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outss << "Superior quality ";
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break;
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case 4:
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outss << "Exceptionnal ";
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break;
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case 5:
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outss << "Masterful ";
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break;
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default: outss << "Crazy quality " << item.quality << " "; break;
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}
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}
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out.append(Materials->getDescription(item.matdesc));
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outss << Materials->getDescription(item.matdesc) << " " << getItemClass(item.matdesc.itemType);
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out.append(" ");
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return outss.str();
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out.append(this->getItemClass(item.matdesc.itemType));
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}
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return out;
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/// dump offsets used by accessors of a valid item to a string
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std::string Items::dumpAccessors(const dfh_item & item)
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{
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uint32_t vtable = item.base.vtable;
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std::map< uint32_t, ItemDesc* >::const_iterator it = d->descVTable.find(vtable);
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ItemDesc * desc = it->second;
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return desc->dumpAccessors();
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}
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}
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