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video_core/control_flow: Use std::move where applicable
Results in less work being done where avoidable.
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e7b39f47f8
commit
56bc11d952
@ -371,10 +371,11 @@ bool TryQuery(CFGRebuildState& state) {
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if (state.queries.empty()) {
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if (state.queries.empty()) {
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return false;
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return false;
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}
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}
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Query& q = state.queries.front();
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Query& q = state.queries.front();
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const u32 block_index = state.registered[q.address];
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const u32 block_index = state.registered[q.address];
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BlockInfo& block = state.block_info[block_index];
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BlockInfo& block = state.block_info[block_index];
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// If the block is visted, check if the stacks match, else gather the ssy/pbk
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// If the block is visited, check if the stacks match, else gather the ssy/pbk
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// labels into the current stack and look if the branch at the end of the block
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// labels into the current stack and look if the branch at the end of the block
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// consumes a label. Schedule new queries accordingly
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// consumes a label. Schedule new queries accordingly
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if (block.visited) {
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if (block.visited) {
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@ -385,7 +386,8 @@ bool TryQuery(CFGRebuildState& state) {
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return all_okay;
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return all_okay;
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}
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}
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block.visited = true;
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block.visited = true;
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state.stacks[q.address] = BlockStack{q};
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state.stacks.insert_or_assign(q.address, BlockStack{q});
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Query q2(q);
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Query q2(q);
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state.queries.pop_front();
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state.queries.pop_front();
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gather_labels(q2.ssy_stack, state.ssy_labels, block);
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gather_labels(q2.ssy_stack, state.ssy_labels, block);
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@ -394,6 +396,7 @@ bool TryQuery(CFGRebuildState& state) {
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q2.address = block.end + 1;
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q2.address = block.end + 1;
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state.queries.push_back(q2);
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state.queries.push_back(q2);
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}
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}
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Query conditional_query{q2};
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Query conditional_query{q2};
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if (block.branch.is_sync) {
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if (block.branch.is_sync) {
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if (block.branch.address == unassigned_branch) {
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if (block.branch.address == unassigned_branch) {
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@ -408,7 +411,7 @@ bool TryQuery(CFGRebuildState& state) {
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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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}
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conditional_query.address = block.branch.address;
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conditional_query.address = block.branch.address;
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state.queries.push_back(conditional_query);
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state.queries.push_back(std::move(conditional_query));
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return true;
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return true;
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}
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}
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} // Anonymous namespace
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} // Anonymous namespace
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@ -416,6 +419,7 @@ bool TryQuery(CFGRebuildState& state) {
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std::optional<ShaderCharacteristics> ScanFlow(const ProgramCode& program_code,
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std::optional<ShaderCharacteristics> ScanFlow(const ProgramCode& program_code,
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std::size_t program_size, u32 start_address) {
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std::size_t program_size, u32 start_address) {
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CFGRebuildState state{program_code, program_size, start_address};
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CFGRebuildState state{program_code, program_size, start_address};
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// Inspect Code and generate blocks
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// Inspect Code and generate blocks
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state.labels.clear();
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state.labels.clear();
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state.labels.emplace(start_address);
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state.labels.emplace(start_address);
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@ -425,10 +429,9 @@ std::optional<ShaderCharacteristics> ScanFlow(const ProgramCode& program_code,
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return {};
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return {};
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}
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}
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}
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}
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// Decompile Stacks
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// Decompile Stacks
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Query start_query{};
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state.queries.push_back(Query{state.start, {}, {}});
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start_query.address = state.start;
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state.queries.push_back(start_query);
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bool decompiled = true;
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bool decompiled = true;
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while (!state.queries.empty()) {
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while (!state.queries.empty()) {
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if (!TryQuery(state)) {
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if (!TryQuery(state)) {
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@ -436,14 +439,15 @@ std::optional<ShaderCharacteristics> ScanFlow(const ProgramCode& program_code,
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break;
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break;
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}
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}
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}
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}
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// Sort and organize results
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// Sort and organize results
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std::sort(state.block_info.begin(), state.block_info.end(),
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std::sort(state.block_info.begin(), state.block_info.end(),
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[](const BlockInfo& a, const BlockInfo& b) -> bool { return a.start < b.start; });
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[](const BlockInfo& a, const BlockInfo& b) { return a.start < b.start; });
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ShaderCharacteristics result_out{};
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ShaderCharacteristics result_out{};
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result_out.decompilable = decompiled;
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result_out.decompilable = decompiled;
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result_out.start = start_address;
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result_out.start = start_address;
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result_out.end = start_address;
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result_out.end = start_address;
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for (auto& block : state.block_info) {
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for (const auto& block : state.block_info) {
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ShaderBlock new_block{};
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ShaderBlock new_block{};
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new_block.start = block.start;
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new_block.start = block.start;
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new_block.end = block.end;
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new_block.end = block.end;
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@ -458,8 +462,9 @@ std::optional<ShaderCharacteristics> ScanFlow(const ProgramCode& program_code,
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}
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}
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if (result_out.decompilable) {
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if (result_out.decompilable) {
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result_out.labels = std::move(state.labels);
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result_out.labels = std::move(state.labels);
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return {result_out};
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return {std::move(result_out)};
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}
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}
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// If it's not decompilable, merge the unlabelled blocks together
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// If it's not decompilable, merge the unlabelled blocks together
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auto back = result_out.blocks.begin();
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auto back = result_out.blocks.begin();
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auto next = std::next(back);
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auto next = std::next(back);
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@ -472,6 +477,6 @@ std::optional<ShaderCharacteristics> ScanFlow(const ProgramCode& program_code,
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back = next;
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back = next;
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++next;
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++next;
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}
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}
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return {result_out};
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return {std::move(result_out)};
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}
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}
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} // namespace VideoCommon::Shader
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} // namespace VideoCommon::Shader
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