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https://github.com/yuzu-emu/yuzu.git
synced 2024-11-23 04:25:39 +01:00
dmnt: cheats: Update cheat vm to latest version
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4cccbe7989
commit
504abbd6e0
@ -9,6 +9,7 @@
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#include "core/core_timing.h"
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#include "core/hle/kernel/k_page_table.h"
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#include "core/hle/kernel/k_process.h"
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#include "core/hle/kernel/k_process_page_table.h"
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#include "core/hle/service/hid/hid_server.h"
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#include "core/hle/service/sm/sm.h"
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#include "core/memory.h"
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@ -85,8 +86,12 @@ VAddr StandardVmCallbacks::SanitizeAddress(VAddr in) const {
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if ((in < metadata.main_nso_extents.base ||
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in >= metadata.main_nso_extents.base + metadata.main_nso_extents.size) &&
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(in < metadata.heap_extents.base ||
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in >= metadata.heap_extents.base + metadata.heap_extents.size)) {
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LOG_ERROR(CheatEngine,
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in >= metadata.heap_extents.base + metadata.heap_extents.size) &&
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(in < metadata.alias_extents.base ||
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in >= metadata.heap_extents.base + metadata.alias_extents.size) &&
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(in < metadata.aslr_extents.base ||
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in >= metadata.heap_extents.base + metadata.aslr_extents.size)) {
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LOG_DEBUG(CheatEngine,
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"Cheat attempting to access memory at invalid address={:016X}, if this "
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"persists, "
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"the cheat may be incorrect. However, this may be normal early in execution if "
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@ -211,16 +216,14 @@ void CheatEngine::Initialize() {
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.base = GetInteger(page_table.GetHeapRegionStart()),
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.size = page_table.GetHeapRegionSize(),
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};
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metadata.address_space_extents = {
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.base = GetInteger(page_table.GetAddressSpaceStart()),
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.size = page_table.GetAddressSpaceSize(),
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};
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metadata.alias_extents = {
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metadata.aslr_extents = {
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.base = GetInteger(page_table.GetAliasCodeRegionStart()),
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.size = page_table.GetAliasCodeRegionSize(),
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};
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metadata.alias_extents = {
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.base = GetInteger(page_table.GetAliasRegionStart()),
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.size = page_table.GetAliasRegionSize(),
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};
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is_pending_reload.exchange(true);
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}
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@ -37,7 +37,7 @@ private:
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VAddr SanitizeAddress(VAddr address) const;
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const CheatProcessMetadata& metadata;
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System& system;
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Core::System& system;
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};
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// Intermediary class that parses a text file or other disk format for storing cheats into a
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@ -18,7 +18,7 @@ struct CheatProcessMetadata {
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MemoryRegionExtents main_nso_extents{};
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MemoryRegionExtents heap_extents{};
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MemoryRegionExtents alias_extents{};
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MemoryRegionExtents address_space_extents{};
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MemoryRegionExtents aslr_extents{};
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std::array<u8, 0x20> main_nso_build_id{};
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};
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@ -322,8 +322,9 @@ bool DmntCheatVm::DecodeNextOpcode(CheatVmOpcode& out) {
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} break;
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case CheatVmOpcodeType::EndConditionalBlock: {
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// 20000000
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// There's actually nothing left to process here!
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opcode.opcode = EndConditionalOpcode{};
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opcode.opcode = EndConditionalOpcode{
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.is_else = ((first_dword >> 24) & 0xf) == 1,
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};
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} break;
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case CheatVmOpcodeType::ControlLoop: {
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// 300R0000 VVVVVVVV
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@ -555,6 +556,18 @@ bool DmntCheatVm::DecodeNextOpcode(CheatVmOpcode& out) {
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.idx = first_dword & 0xF,
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};
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} break;
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case CheatVmOpcodeType::PauseProcess: {
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/* FF0????? */
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/* FF0 = opcode 0xFF0 */
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/* Pauses the current process. */
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opcode.opcode = PauseProcessOpcode{};
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} break;
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case CheatVmOpcodeType::ResumeProcess: {
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/* FF0????? */
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/* FF0 = opcode 0xFF0 */
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/* Pauses the current process. */
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opcode.opcode = ResumeProcessOpcode{};
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} break;
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case CheatVmOpcodeType::DebugLog: {
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// FFFTIX##
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// FFFTI0Ma aaaaaaaa
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@ -621,7 +634,7 @@ bool DmntCheatVm::DecodeNextOpcode(CheatVmOpcode& out) {
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return valid;
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}
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void DmntCheatVm::SkipConditionalBlock() {
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void DmntCheatVm::SkipConditionalBlock(bool is_if) {
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if (condition_depth > 0) {
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// We want to continue until we're out of the current block.
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const std::size_t desired_depth = condition_depth - 1;
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@ -637,8 +650,12 @@ void DmntCheatVm::SkipConditionalBlock() {
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// We also support nesting of conditional blocks, and Gateway does not.
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if (skip_opcode.begin_conditional_block) {
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condition_depth++;
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} else if (std::holds_alternative<EndConditionalOpcode>(skip_opcode.opcode)) {
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} else if (auto end_cond = std::get_if<EndConditionalOpcode>(&skip_opcode.opcode)) {
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if (!end_cond->is_else) {
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condition_depth--;
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} else if (is_if && condition_depth - 1 == desired_depth) {
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break;
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}
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}
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}
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} else {
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@ -675,6 +692,10 @@ u64 DmntCheatVm::GetCheatProcessAddress(const CheatProcessMetadata& metadata,
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return metadata.main_nso_extents.base + rel_address;
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case MemoryAccessType::Heap:
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return metadata.heap_extents.base + rel_address;
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case MemoryAccessType::Alias:
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return metadata.alias_extents.base + rel_address;
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case MemoryAccessType::Aslr:
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return metadata.aslr_extents.base + rel_address;
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}
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}
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@ -682,7 +703,6 @@ void DmntCheatVm::ResetState() {
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registers.fill(0);
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saved_values.fill(0);
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loop_tops.fill(0);
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static_registers.fill(0);
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instruction_ptr = 0;
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condition_depth = 0;
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decode_success = true;
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@ -794,14 +814,19 @@ void DmntCheatVm::Execute(const CheatProcessMetadata& metadata) {
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}
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// Skip conditional block if condition not met.
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if (!cond_met) {
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SkipConditionalBlock();
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SkipConditionalBlock(true);
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}
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} else if (std::holds_alternative<EndConditionalOpcode>(cur_opcode.opcode)) {
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// Decrement the condition depth.
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// We will assume, graciously, that mismatched conditional block ends are a nop.
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} else if (auto end_cond = std::get_if<EndConditionalOpcode>(&cur_opcode.opcode)) {
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if (end_cond->is_else) {
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/* Skip to the end of the conditional block. */
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this->SkipConditionalBlock(false);
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} else {
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/* Decrement the condition depth. */
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/* We will assume, graciously, that mismatched conditional block ends are a nop. */
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if (condition_depth > 0) {
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condition_depth--;
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}
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}
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} else if (auto ctrl_loop = std::get_if<ControlLoopOpcode>(&cur_opcode.opcode)) {
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if (ctrl_loop->start_loop) {
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// Start a loop.
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@ -908,7 +933,7 @@ void DmntCheatVm::Execute(const CheatProcessMetadata& metadata) {
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// Check for keypress.
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if ((begin_keypress_cond->key_mask & kDown) != begin_keypress_cond->key_mask) {
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// Keys not pressed. Skip conditional block.
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SkipConditionalBlock();
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SkipConditionalBlock(true);
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}
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} else if (auto perform_math_reg =
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std::get_if<PerformArithmeticRegisterOpcode>(&cur_opcode.opcode)) {
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@ -1116,7 +1141,7 @@ void DmntCheatVm::Execute(const CheatProcessMetadata& metadata) {
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// Skip conditional block if condition not met.
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if (!cond_met) {
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SkipConditionalBlock();
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SkipConditionalBlock(true);
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}
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} else if (auto save_restore_reg =
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std::get_if<SaveRestoreRegisterOpcode>(&cur_opcode.opcode)) {
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@ -1178,6 +1203,10 @@ void DmntCheatVm::Execute(const CheatProcessMetadata& metadata) {
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// Store a register to a static register.
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static_registers[rw_static_reg->static_idx] = registers[rw_static_reg->idx];
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}
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} else if (std::holds_alternative<PauseProcessOpcode>(cur_opcode.opcode)) {
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// TODO: Pause cheat process
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} else if (std::holds_alternative<ResumeProcessOpcode>(cur_opcode.opcode)) {
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// TODO: Resume cheat process
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} else if (auto debug_log = std::get_if<DebugLogOpcode>(&cur_opcode.opcode)) {
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// Read value from memory.
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u64 log_value = 0;
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@ -42,12 +42,16 @@ enum class CheatVmOpcodeType : u32 {
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DoubleExtendedWidth = 0xF0,
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// Double-extended width opcodes.
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PauseProcess = 0xFF0,
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ResumeProcess = 0xFF1,
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DebugLog = 0xFFF,
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};
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enum class MemoryAccessType : u32 {
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MainNso = 0,
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Heap = 1,
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Alias = 2,
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Aslr = 3,
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};
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enum class ConditionalComparisonType : u32 {
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@ -131,7 +135,9 @@ struct BeginConditionalOpcode {
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VmInt value{};
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};
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struct EndConditionalOpcode {};
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struct EndConditionalOpcode {
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bool is_else;
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};
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struct ControlLoopOpcode {
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bool start_loop{};
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@ -222,6 +228,10 @@ struct ReadWriteStaticRegisterOpcode {
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u32 idx{};
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};
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struct PauseProcessOpcode {};
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struct ResumeProcessOpcode {};
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struct DebugLogOpcode {
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u32 bit_width{};
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u32 log_id{};
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@ -244,8 +254,8 @@ struct CheatVmOpcode {
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PerformArithmeticStaticOpcode, BeginKeypressConditionalOpcode,
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PerformArithmeticRegisterOpcode, StoreRegisterToAddressOpcode,
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BeginRegisterConditionalOpcode, SaveRestoreRegisterOpcode,
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SaveRestoreRegisterMaskOpcode, ReadWriteStaticRegisterOpcode, DebugLogOpcode,
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UnrecognizedInstruction>
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SaveRestoreRegisterMaskOpcode, ReadWriteStaticRegisterOpcode, PauseProcessOpcode,
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ResumeProcessOpcode, DebugLogOpcode, UnrecognizedInstruction>
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opcode{};
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};
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@ -296,7 +306,7 @@ private:
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std::array<std::size_t, NumRegisters> loop_tops{};
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bool DecodeNextOpcode(CheatVmOpcode& out);
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void SkipConditionalBlock();
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void SkipConditionalBlock(bool is_if);
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void ResetState();
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// For implementing the DebugLog opcode.
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