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@ -192,7 +192,7 @@ namespace drv
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ZydisDecoder decoder;
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ZydisDecoder decoder;
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ZydisDecoderInit(&decoder, ZYDIS_MACHINE_MODE_LONG_64, ZYDIS_ADDRESS_WIDTH_64);
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ZydisDecoderInit(&decoder, ZYDIS_MACHINE_MODE_LONG_64, ZYDIS_ADDRESS_WIDTH_64);
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ZyanUSize offset = 0;
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std::int32_t offset = 0;
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ZyanUSize length = symbol.size;
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ZyanUSize length = symbol.size;
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ZydisDecodedInstruction instruction;
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ZydisDecodedInstruction instruction;
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@ -203,8 +203,13 @@ namespace drv
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length - offset, &instruction)))
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length - offset, &instruction)))
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{
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{
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auto symbol_name = symbol.symbol_name;
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auto symbol_name = symbol.symbol_name;
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auto jcc_symbol = symbol.symbol_name;
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auto next_instruction_symbol = symbol.symbol_name;
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auto next_instruction_symbol = symbol.symbol_name;
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jcc_symbol.append("@")
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.append(std::to_string(
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offset + instruction.operands[0].imm.value.s + instruction.length));
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next_instruction_symbol.append("@").append(
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next_instruction_symbol.append("@").append(
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std::to_string(offset + instruction.length));
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std::to_string(offset + instruction.length));
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@ -238,12 +243,63 @@ namespace drv
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case ZYDIS_MNEMONIC_JS:
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case ZYDIS_MNEMONIC_JS:
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case ZYDIS_MNEMONIC_JZ:
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case ZYDIS_MNEMONIC_JZ:
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{
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{
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std::vector<std::uint8_t> final_instruction;
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final_instruction.resize(instruction.length +
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instruction.length + (JMP_RIP_SIZE * 2));
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// copy instruction into buffer...
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memcpy(final_instruction.data(),
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obj.data() + symbol.file_offset + offset, instruction.length);
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// TODO check to see if the compiler made a short JCC...
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// with optimizations off it seems to not...
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*reinterpret_cast<std::uint32_t*>(&final_instruction[
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instruction.length - (instruction.operands[0].size / 8)]) = NULL;
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// only jmping +-128 bytes to jtable...
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final_instruction[instruction.length - (instruction.operands[0].size / 8)] = JMP_RIP_SIZE;
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std::printf(" > fixing JCC instruction...\n");
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std::printf(" > original rva = 0x%x, new rva = 0x%x\n", instruction.operands[0].imm.value.s, JMP_RIP_SIZE);
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std::printf(" > conditional branch = 0x%p\n", mapped_symbols[jcc_symbol]);
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std::printf(" > next instruction = 0x%p\n", mapped_symbols[next_instruction_symbol]);
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// copy jmp [rip] after instruction...
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memcpy(&final_instruction[instruction.length], jmp_rip, sizeof jmp_rip);
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// copy jtable entry...
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memcpy(&final_instruction[instruction.length + JMP_RIP_SIZE], jmp_rip, sizeof jmp_rip);
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// this jmp [rip] goes to the conditional branch...
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*reinterpret_cast<std::uintptr_t*>(&final_instruction[
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instruction.length + JMP_RIP_SIZE + JMP_RIP_ADDR_IDX]) = mapped_symbols[jcc_symbol];
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// this jmp [rip] goes to the next instruction...
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*reinterpret_cast<std::uintptr_t*>(&final_instruction[
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instruction.length + JMP_RIP_ADDR_IDX]) = mapped_symbols[next_instruction_symbol];
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const auto instruc_alloc =
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reinterpret_cast<void*>(
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mapped_symbols[symbol_name]);
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// copy the instruction into memory...
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kmemcpy(instruc_alloc, final_instruction.data(), final_instruction.size());
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break;
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break;
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}
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}
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case ZYDIS_MNEMONIC_JMP:
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case ZYDIS_MNEMONIC_JMP:
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{
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{
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std::vector<std::uint8_t> final_instruction;
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final_instruction.resize(JMP_RIP_SIZE);
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memset(final_instruction.data(), NULL, final_instruction.size());
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*reinterpret_cast<std::uintptr_t*>(
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&final_instruction[JMP_RIP_SIZE]) = mapped_symbols[jcc_symbol];
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const auto instruc_alloc =
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reinterpret_cast<void*>(
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mapped_symbols[symbol_name]);
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// copy the instruction into memory...
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kmemcpy(instruc_alloc, final_instruction.data(), final_instruction.size());
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break;
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break;
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}
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}
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case ZYDIS_MNEMONIC_RET:
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case ZYDIS_MNEMONIC_RET:
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