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	control_flow: Address feedback.
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				@ -4,6 +4,7 @@
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#include <list>
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#include <map>
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#include <stack>
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#include <unordered_map>
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#include <unordered_set>
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#include <vector>
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@ -20,68 +21,18 @@ using Tegra::Shader::OpCode;
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constexpr s32 unassigned_branch = -2;
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/**
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 * 'ControlStack' represents a static stack of control jumps such as SSY and PBK
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 * stacks in Maxwell.
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 **/
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struct ControlStack {
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    static constexpr std::size_t stack_fixed_size = 20;
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    std::array<u32, stack_fixed_size> stack{};
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    u32 index{};
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    bool Compare(const ControlStack& cs) const {
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        if (index != cs.index) {
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            return false;
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        }
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        return std::memcmp(stack.data(), cs.stack.data(), index * sizeof(u32)) == 0;
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    }
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    /// This compare just compares the top of the stack against one another
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    bool SoftCompare(const ControlStack& cs) const {
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        if (index == 0 || cs.index == 0) {
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            return index == cs.index;
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        }
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        return Top() == cs.Top();
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    }
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    u32 Size() const {
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        return index;
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    }
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    u32 Top() const {
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        return stack[index - 1];
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    }
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    bool Push(u32 address) {
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        if (index >= stack.size()) {
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            return false;
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        }
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        stack[index] = address;
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        index++;
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        return true;
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    }
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    bool Pop() {
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        if (index == 0) {
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            return false;
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        }
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        index--;
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        return true;
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    }
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};
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struct Query {
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    u32 address{};
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    ControlStack ssy_stack{};
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    ControlStack pbk_stack{};
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    std::stack<u32> ssy_stack{};
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    std::stack<u32> pbk_stack{};
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};
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struct BlockStack {
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    BlockStack() = default;
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    BlockStack(const BlockStack& b) = default;
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    BlockStack(const Query& q) : ssy_stack{q.ssy_stack}, pbk_stack{q.pbk_stack} {}
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    ControlStack ssy_stack{};
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    ControlStack pbk_stack{};
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    std::stack<u32> ssy_stack{};
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    std::stack<u32> pbk_stack{};
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};
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struct BlockBranchInfo {
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@ -144,13 +95,13 @@ struct ParseInfo {
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    u32 end_address{};
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};
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BlockInfo* CreateBlockInfo(CFGRebuildState& state, u32 start, u32 end) {
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BlockInfo& CreateBlockInfo(CFGRebuildState& state, u32 start, u32 end) {
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    auto& it = state.block_info.emplace_back();
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    it.start = start;
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    it.end = end;
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    const u32 index = static_cast<u32>(state.block_info.size() - 1);
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    state.registered.insert({start, index});
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    return ⁢
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    return it;
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}
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Pred GetPredicate(u32 index, bool negated) {
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@ -174,16 +125,17 @@ enum class ParseResult : u32 {
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    AbnormalFlow,
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};
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ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info) {
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std::pair<ParseResult, ParseInfo> ParseCode(CFGRebuildState& state, u32 address) {
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    u32 offset = static_cast<u32>(address);
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    const u32 end_address = static_cast<u32>(state.program_size / sizeof(Instruction));
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    ParseInfo parse_info{};
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    const auto insert_label = ([](CFGRebuildState& state, u32 address) {
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        auto pair = state.labels.emplace(address);
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    const auto insert_label = [](CFGRebuildState& state, u32 address) {
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        const auto pair = state.labels.emplace(address);
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        if (pair.second) {
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            state.inspect_queries.push_back(address);
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        }
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    });
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    };
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    while (true) {
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        if (offset >= end_address) {
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@ -229,11 +181,11 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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            parse_info.branch_info.ignore = false;
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            parse_info.end_address = offset;
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            return ParseResult::ControlCaught;
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            return {ParseResult::ControlCaught, parse_info};
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        }
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        case OpCode::Id::BRA: {
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            if (instr.bra.constant_buffer != 0) {
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                return ParseResult::AbnormalFlow;
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                return {ParseResult::AbnormalFlow, parse_info};
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            }
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            const auto pred_index = static_cast<u32>(instr.pred.pred_index);
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            parse_info.branch_info.condition.predicate =
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@ -248,7 +200,7 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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                offset++;
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                continue;
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            }
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            u32 branch_offset = offset + instr.bra.GetBranchTarget();
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            const u32 branch_offset = offset + instr.bra.GetBranchTarget();
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            if (branch_offset == 0) {
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                parse_info.branch_info.address = exit_branch;
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            } else {
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@ -261,10 +213,9 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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            parse_info.branch_info.ignore = false;
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            parse_info.end_address = offset;
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            return ParseResult::ControlCaught;
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            return {ParseResult::ControlCaught, parse_info};
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        }
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        case OpCode::Id::SYNC: {
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            parse_info.branch_info.condition;
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            const auto pred_index = static_cast<u32>(instr.pred.pred_index);
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            parse_info.branch_info.condition.predicate =
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                GetPredicate(pred_index, instr.negate_pred != 0);
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@ -285,10 +236,9 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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            parse_info.branch_info.ignore = false;
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            parse_info.end_address = offset;
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            return ParseResult::ControlCaught;
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            return {ParseResult::ControlCaught, parse_info};
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        }
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        case OpCode::Id::BRK: {
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            parse_info.branch_info.condition;
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            const auto pred_index = static_cast<u32>(instr.pred.pred_index);
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            parse_info.branch_info.condition.predicate =
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                GetPredicate(pred_index, instr.negate_pred != 0);
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@ -309,10 +259,9 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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            parse_info.branch_info.ignore = false;
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            parse_info.end_address = offset;
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            return ParseResult::ControlCaught;
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            return {ParseResult::ControlCaught, parse_info};
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        }
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        case OpCode::Id::KIL: {
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            parse_info.branch_info.condition;
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            const auto pred_index = static_cast<u32>(instr.pred.pred_index);
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            parse_info.branch_info.condition.predicate =
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                GetPredicate(pred_index, instr.negate_pred != 0);
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@ -333,7 +282,7 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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            parse_info.branch_info.ignore = false;
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            parse_info.end_address = offset;
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            return ParseResult::ControlCaught;
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            return {ParseResult::ControlCaught, parse_info};
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        }
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        case OpCode::Id::SSY: {
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            const u32 target = offset + instr.bra.GetBranchTarget();
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@ -348,7 +297,7 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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            break;
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        }
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        case OpCode::Id::BRX: {
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            return ParseResult::AbnormalFlow;
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            return {ParseResult::AbnormalFlow, parse_info};
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        }
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        default:
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            break;
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@ -360,7 +309,7 @@ ParseResult ParseCode(CFGRebuildState& state, u32 address, ParseInfo& parse_info
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    parse_info.branch_info.is_sync = false;
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    parse_info.branch_info.is_brk = false;
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    parse_info.end_address = offset - 1;
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    return ParseResult::BlockEnd;
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    return {ParseResult::BlockEnd, parse_info};
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}
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bool TryInspectAddress(CFGRebuildState& state) {
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@ -377,10 +326,10 @@ bool TryInspectAddress(CFGRebuildState& state) {
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    case BlockCollision::Inside: {
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        // This case is the tricky one:
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        // We need to Split the block in 2 sepparate blocks
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        auto it = search_result.second;
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        BlockInfo* block_info = CreateBlockInfo(state, address, it->end);
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        const auto it = search_result.second;
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        BlockInfo& block_info = CreateBlockInfo(state, address, it->end);
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        it->end = address - 1;
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        block_info->branch = it->branch;
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        block_info.branch = it->branch;
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        BlockBranchInfo forward_branch{};
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        forward_branch.address = address;
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        forward_branch.ignore = true;
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@ -390,15 +339,14 @@ bool TryInspectAddress(CFGRebuildState& state) {
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    default:
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        break;
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    }
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    ParseInfo parse_info;
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    const ParseResult parse_result = ParseCode(state, address, parse_info);
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    const auto [parse_result, parse_info] = ParseCode(state, address);
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    if (parse_result == ParseResult::AbnormalFlow) {
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        // if it's AbnormalFlow, we end it as false, ending the CFG reconstruction
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        return false;
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    }
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    BlockInfo* block_info = CreateBlockInfo(state, address, parse_info.end_address);
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    block_info->branch = parse_info.branch_info;
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    BlockInfo& block_info = CreateBlockInfo(state, address, parse_info.end_address);
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    block_info.branch = parse_info.branch_info;
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    if (parse_info.branch_info.condition.IsUnconditional()) {
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        return true;
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    }
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@ -409,14 +357,15 @@ bool TryInspectAddress(CFGRebuildState& state) {
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}
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bool TryQuery(CFGRebuildState& state) {
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    const auto gather_labels = ([](ControlStack& cc, std::map<u32, u32>& labels, BlockInfo& block) {
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    const auto gather_labels = [](std::stack<u32>& cc, std::map<u32, u32>& labels,
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                                  BlockInfo& block) {
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        auto gather_start = labels.lower_bound(block.start);
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        const auto gather_end = labels.upper_bound(block.end);
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        while (gather_start != gather_end) {
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            cc.Push(gather_start->second);
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            cc.push(gather_start->second);
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            gather_start++;
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        }
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    });
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    };
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    if (state.queries.empty()) {
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        return false;
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    }
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@ -428,9 +377,8 @@ bool TryQuery(CFGRebuildState& state) {
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    // consumes a label. Schedule new queries accordingly
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    if (block.visited) {
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        BlockStack& stack = state.stacks[q.address];
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        const bool all_okay =
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            (stack.ssy_stack.Size() == 0 || q.ssy_stack.Compare(stack.ssy_stack)) &&
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            (stack.pbk_stack.Size() == 0 || q.pbk_stack.Compare(stack.pbk_stack));
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        const bool all_okay = (stack.ssy_stack.size() == 0 || q.ssy_stack == stack.ssy_stack) &&
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                              (stack.pbk_stack.size() == 0 || q.pbk_stack == stack.pbk_stack);
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        state.queries.pop_front();
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        return all_okay;
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    }
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@ -447,15 +395,15 @@ bool TryQuery(CFGRebuildState& state) {
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    Query conditional_query{q2};
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    if (block.branch.is_sync) {
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        if (block.branch.address == unassigned_branch) {
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            block.branch.address = conditional_query.ssy_stack.Top();
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            block.branch.address = conditional_query.ssy_stack.top();
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        }
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        conditional_query.ssy_stack.Pop();
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        conditional_query.ssy_stack.pop();
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    }
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    if (block.branch.is_brk) {
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        if (block.branch.address == unassigned_branch) {
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            block.branch.address = conditional_query.pbk_stack.Top();
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            block.branch.address = conditional_query.pbk_stack.top();
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        }
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        conditional_query.pbk_stack.Pop();
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        conditional_query.pbk_stack.pop();
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    }
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    conditional_query.address = block.branch.address;
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    state.queries.push_back(conditional_query);
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