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https://github.com/Atmosphere-NX/Atmosphere.git
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dmnt-cheat: finish vm instruction decoder
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@ -20,7 +20,7 @@
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#include "dmnt_cheat_manager.hpp"
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bool DmntCheatVm::DecodeNextOpcode(CheatVmOpcode *out) {
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/* If we've ever seen a decode failure, return true. */
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/* If we've ever seen a decode failure, return false. */
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bool valid = this->decode_success;
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CheatVmOpcode opcode = {};
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ON_SCOPE_EXIT {
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@ -30,70 +30,154 @@ bool DmntCheatVm::DecodeNextOpcode(CheatVmOpcode *out) {
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}
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};
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/* If we have ever seen a decode failure, don't decode any more. */
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/* Helper function for getting instruction dwords. */
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auto GetNextDword = [&]() {
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if (this->instruction_ptr >= this->num_opcodes) {
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valid = false;
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return static_cast<u32>(0);
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}
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return this->program[this->instruction_ptr++];
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};
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/* Helper function for parsing a VmInt. */
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auto GetNextVmInt = [&](const u32 bit_width) {
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VmInt val = {0};
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const u32 first_dword = GetNextDword();
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switch (bit_width) {
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case 1:
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val.bit8 = (u8)first_dword;
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break;
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case 2:
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val.bit16 = (u16)first_dword;
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break;
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case 4:
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val.bit32 = first_dword;
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break;
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case 8:
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val.bit64 = (((u64)first_dword) << 32ul) | ((u64)GetNextDword());
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break;
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}
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return val;
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};
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/* Read opcode. */
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const u32 first_dword = GetNextDword();
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if (!valid) {
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return valid;
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}
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/* Validate instruction pointer. */
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if (this->instruction_ptr >= this->num_opcodes) {
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valid = false;
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return valid;
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}
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/* Read opcode. */
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const u32 first_dword = this->program[this->instruction_ptr++];
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opcode.opcode = (CheatVmOpcodeType)(((first_dword >> 28) & 0xF));
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switch (opcode.opcode) {
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case CheatVmOpcodeType_StoreStatic:
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{
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/* TODO */
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/* 0TMR00AA AAAAAAAA YYYYYYYY (YYYYYYYY) */
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/* Read additional words. */
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const u32 second_dword = GetNextDword();
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opcode.store_static.bit_width = (first_dword >> 24) & 0xF;
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opcode.store_static.mem_type = (MemoryAccessType)((first_dword >> 20) & 0xF);
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opcode.store_static.offset_register = ((first_dword >> 16) & 0xF);
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opcode.store_static.rel_address = ((u64)(first_dword & 0xFF) << 32ul) | ((u64)second_dword);
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opcode.store_static.value = GetNextVmInt(opcode.store_static.bit_width);
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}
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break;
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case CheatVmOpcodeType_BeginConditionalBlock:
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{
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/* TODO */
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/* 1TMC00AA AAAAAAAA YYYYYYYY (YYYYYYYY) */
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/* Read additional words. */
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const u32 second_dword = GetNextDword();
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opcode.begin_cond.bit_width = (first_dword >> 24) & 0xF;
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opcode.begin_cond.mem_type = (MemoryAccessType)((first_dword >> 20) & 0xF);
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opcode.begin_cond.cond_type = (ConditionalComparisonType)((first_dword >> 16) & 0xF);
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opcode.begin_cond.rel_address = ((u64)(first_dword & 0xFF) << 32ul) | ((u64)second_dword);
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opcode.begin_cond.value = GetNextVmInt(opcode.store_static.bit_width);
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}
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break;
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case CheatVmOpcodeType_EndConditionalBlock:
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{
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/* 20000000 */
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/* There's actually nothing left to process here! */
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}
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break;
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case CheatVmOpcodeType_ControlLoop:
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{
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/* TODO */
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/* 300R0000 VVVVVVVV */
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/* 310R0000 */
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/* Parse register, whether loop start or loop end. */
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opcode.ctrl_loop.start_loop = ((first_dword >> 24) & 0xF) == 0;
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opcode.ctrl_loop.reg_index = ((first_dword >> 20) & 0xF);
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/* Read number of iters if loop start. */
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if (opcode.ctrl_loop.start_loop) {
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opcode.ctrl_loop.num_iters = GetNextDword();
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}
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}
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break;
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case CheatVmOpcodeType_LoadRegisterStatic:
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{
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/* TODO */
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/* 400R0000 VVVVVVVV VVVVVVVV */
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/* Read additional words. */
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opcode.ldr_static.reg_index = ((first_dword >> 20) & 0xF);
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opcode.ldr_static.value = (((u64)GetNextDword()) << 32ul) | ((u64)GetNextDword());
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}
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break;
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case CheatVmOpcodeType_LoadRegisterMemory:
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{
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/* TODO */
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/* 5TMRI0AA AAAAAAAA */
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/* Read additional words. */
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const u32 second_dword = GetNextDword();
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opcode.ldr_memory.bit_width = (first_dword >> 24) & 0xF;
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opcode.ldr_memory.mem_type = (MemoryAccessType)((first_dword >> 20) & 0xF);
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opcode.ldr_memory.reg_index = ((first_dword >> 16) & 0xF);
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opcode.ldr_memory.load_from_reg = ((first_dword >> 12) & 0xF) == 0;
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opcode.ldr_memory.rel_address = ((u64)(first_dword & 0xFF) << 32ul) | ((u64)second_dword);
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}
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break;
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case CheatVmOpcodeType_StoreToRegisterAddress:
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{
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/* TODO */
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/* 6T0RIor0 VVVVVVVV VVVVVVVV */
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/* Read additional words. */
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opcode.str_regaddr.bit_width = (first_dword >> 24) & 0xF;
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opcode.str_regaddr.reg_index = ((first_dword >> 16) & 0xF);
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opcode.str_regaddr.increment_reg = ((first_dword >> 12) & 0xF) == 0;
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opcode.str_regaddr.add_offset_reg = ((first_dword >> 8) & 0xF) == 0;
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opcode.str_regaddr.offset_reg_index = ((first_dword >> 4) & 0xF);
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opcode.str_regaddr.value = (((u64)GetNextDword()) << 32ul) | ((u64)GetNextDword());
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}
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break;
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case CheatVmOpcodeType_PerformArithmeticStatic:
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{
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/* TODO */
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/* 7T0RC000 VVVVVVVV */
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/* Read additional words. */
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opcode.perform_math_static.bit_width = (first_dword >> 24) & 0xF;
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opcode.perform_math_static.reg_index = ((first_dword >> 16) & 0xF);
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opcode.perform_math_static.math_type = (RegisterArithmeticType)((first_dword >> 12) & 0xF);
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opcode.perform_math_static.value = GetNextDword();
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}
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break;
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case CheatVmOpcodeType_BeginKeypressConditionalBlock:
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{
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/* TODO */
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/* 8kkkkkkk */
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/* Just parse the mask. */
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opcode.begin_keypress_cond.key_mask = first_dword & 0x0FFFFFFF;
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}
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break;
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case CheatVmOpcodeType_PerformArithmeticRegister:
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{
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/* TODO */
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/* 9TCRSIs0 (VVVVVVVV (VVVVVVVV)) */
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opcode.perform_math_reg.bit_width = (first_dword >> 24) & 0xF;
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opcode.perform_math_reg.math_type = (RegisterArithmeticType)((first_dword >> 20) & 0xF);
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opcode.perform_math_reg.dst_reg_index = ((first_dword >> 16) & 0xF);
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opcode.perform_math_reg.src_reg_1_index = ((first_dword >> 12) & 0xF);
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opcode.perform_math_reg.has_immediate = ((first_dword >> 8) & 0xF) == 0;
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if (opcode.perform_math_reg.has_immediate) {
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opcode.perform_math_reg.src_reg_2_index = 0;
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opcode.perform_math_reg.value = GetNextVmInt(opcode.perform_math_reg.bit_width);
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} else {
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opcode.perform_math_reg.src_reg_2_index = ((first_dword >> 4) & 0xF);
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}
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}
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break;
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default:
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