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node: Eliminate variable shadowing
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88089c8754
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@ -284,24 +284,26 @@ using TrackSampler = std::shared_ptr<TrackSamplerData>;
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struct Sampler {
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struct Sampler {
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/// Bound samplers constructor
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/// Bound samplers constructor
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constexpr explicit Sampler(u32 index, u32 offset, Tegra::Shader::TextureType type,
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constexpr explicit Sampler(u32 index_, u32 offset_, Tegra::Shader::TextureType type_,
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bool is_array, bool is_shadow, bool is_buffer, bool is_indexed)
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bool is_array_, bool is_shadow_, bool is_buffer_, bool is_indexed_)
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: index{index}, offset{offset}, type{type}, is_array{is_array}, is_shadow{is_shadow},
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: index{index_}, offset{offset_}, type{type_}, is_array{is_array_}, is_shadow{is_shadow_},
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is_buffer{is_buffer}, is_indexed{is_indexed} {}
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is_buffer{is_buffer_}, is_indexed{is_indexed_} {}
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/// Separate sampler constructor
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/// Separate sampler constructor
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constexpr explicit Sampler(u32 index, std::pair<u32, u32> offsets, std::pair<u32, u32> buffers,
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constexpr explicit Sampler(u32 index_, std::pair<u32, u32> offsets, std::pair<u32, u32> buffers,
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Tegra::Shader::TextureType type, bool is_array, bool is_shadow,
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Tegra::Shader::TextureType type, bool is_array_, bool is_shadow_,
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bool is_buffer)
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bool is_buffer_)
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: index{index}, offset{offsets.first}, secondary_offset{offsets.second},
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: index{index_}, offset{offsets.first}, secondary_offset{offsets.second},
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buffer{buffers.first}, secondary_buffer{buffers.second}, type{type}, is_array{is_array},
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buffer{buffers.first}, secondary_buffer{buffers.second}, type{type}, is_array{is_array_},
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is_shadow{is_shadow}, is_buffer{is_buffer}, is_separated{true} {}
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is_shadow{is_shadow_}, is_buffer{is_buffer_}, is_separated{true} {}
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/// Bindless samplers constructor
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/// Bindless samplers constructor
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constexpr explicit Sampler(u32 index, u32 offset, u32 buffer, Tegra::Shader::TextureType type,
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constexpr explicit Sampler(u32 index_, u32 offset_, u32 buffer_,
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bool is_array, bool is_shadow, bool is_buffer, bool is_indexed)
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Tegra::Shader::TextureType type, bool is_array_, bool is_shadow_,
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: index{index}, offset{offset}, buffer{buffer}, type{type}, is_array{is_array},
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bool is_buffer_, bool is_indexed_)
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is_shadow{is_shadow}, is_buffer{is_buffer}, is_bindless{true}, is_indexed{is_indexed} {}
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: index{index_}, offset{offset_}, buffer{buffer_}, type{type}, is_array{is_array_},
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is_shadow{is_shadow_}, is_buffer{is_buffer_}, is_bindless{true}, is_indexed{is_indexed_} {
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}
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u32 index = 0; ///< Emulated index given for the this sampler.
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u32 index = 0; ///< Emulated index given for the this sampler.
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u32 offset = 0; ///< Offset in the const buffer from where the sampler is being read.
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u32 offset = 0; ///< Offset in the const buffer from where the sampler is being read.
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@ -341,12 +343,12 @@ struct BindlessSamplerNode {
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struct Image {
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struct Image {
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public:
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public:
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/// Bound images constructor
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/// Bound images constructor
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constexpr explicit Image(u32 index, u32 offset, Tegra::Shader::ImageType type)
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constexpr explicit Image(u32 index_, u32 offset_, Tegra::Shader::ImageType type_)
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: index{index}, offset{offset}, type{type} {}
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: index{index_}, offset{offset_}, type{type_} {}
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/// Bindless samplers constructor
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/// Bindless samplers constructor
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constexpr explicit Image(u32 index, u32 offset, u32 buffer, Tegra::Shader::ImageType type)
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constexpr explicit Image(u32 index_, u32 offset_, u32 buffer_, Tegra::Shader::ImageType type_)
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: index{index}, offset{offset}, buffer{buffer}, type{type}, is_bindless{true} {}
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: index{index_}, offset{offset_}, buffer{buffer_}, type{type_}, is_bindless{true} {}
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void MarkWrite() {
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void MarkWrite() {
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is_written = true;
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is_written = true;
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@ -437,20 +439,20 @@ private:
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/// Holds any kind of operation that can be done in the IR
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/// Holds any kind of operation that can be done in the IR
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class OperationNode final : public AmendNode {
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class OperationNode final : public AmendNode {
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public:
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public:
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explicit OperationNode(OperationCode code) : OperationNode(code, Meta{}) {}
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explicit OperationNode(OperationCode code_) : OperationNode(code_, Meta{}) {}
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explicit OperationNode(OperationCode code, Meta meta)
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explicit OperationNode(OperationCode code_, Meta meta_)
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: OperationNode(code, std::move(meta), std::vector<Node>{}) {}
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: OperationNode(code_, std::move(meta_), std::vector<Node>{}) {}
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explicit OperationNode(OperationCode code, std::vector<Node> operands)
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explicit OperationNode(OperationCode code_, std::vector<Node> operands_)
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: OperationNode(code, Meta{}, std::move(operands)) {}
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: OperationNode(code_, Meta{}, std::move(operands_)) {}
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explicit OperationNode(OperationCode code, Meta meta, std::vector<Node> operands)
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explicit OperationNode(OperationCode code_, Meta meta_, std::vector<Node> operands_)
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: code{code}, meta{std::move(meta)}, operands{std::move(operands)} {}
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: code{code_}, meta{std::move(meta_)}, operands{std::move(operands_)} {}
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template <typename... Args>
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template <typename... Args>
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explicit OperationNode(OperationCode code, Meta meta, Args&&... operands)
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explicit OperationNode(OperationCode code_, Meta meta_, Args&&... operands_)
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: code{code}, meta{std::move(meta)}, operands{operands...} {}
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: code{code_}, meta{std::move(meta_)}, operands{operands_...} {}
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OperationCode GetCode() const {
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OperationCode GetCode() const {
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return code;
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return code;
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@ -477,8 +479,8 @@ private:
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/// Encloses inside any kind of node that returns a boolean conditionally-executed code
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/// Encloses inside any kind of node that returns a boolean conditionally-executed code
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class ConditionalNode final : public AmendNode {
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class ConditionalNode final : public AmendNode {
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public:
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public:
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explicit ConditionalNode(Node condition, std::vector<Node>&& code)
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explicit ConditionalNode(Node condition_, std::vector<Node>&& code_)
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: condition{std::move(condition)}, code{std::move(code)} {}
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: condition{std::move(condition_)}, code{std::move(code_)} {}
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const Node& GetCondition() const {
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const Node& GetCondition() const {
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return condition;
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return condition;
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@ -496,7 +498,7 @@ private:
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/// A general purpose register
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/// A general purpose register
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class GprNode final {
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class GprNode final {
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public:
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public:
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explicit constexpr GprNode(Tegra::Shader::Register index) : index{index} {}
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explicit constexpr GprNode(Tegra::Shader::Register index_) : index{index_} {}
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u32 GetIndex() const {
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u32 GetIndex() const {
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return static_cast<u32>(index);
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return static_cast<u32>(index);
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@ -509,7 +511,7 @@ private:
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/// A custom variable
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/// A custom variable
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class CustomVarNode final {
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class CustomVarNode final {
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public:
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public:
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explicit constexpr CustomVarNode(u32 index) : index{index} {}
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explicit constexpr CustomVarNode(u32 index_) : index{index_} {}
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constexpr u32 GetIndex() const {
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constexpr u32 GetIndex() const {
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return index;
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return index;
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@ -522,7 +524,7 @@ private:
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/// A 32-bits value that represents an immediate value
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/// A 32-bits value that represents an immediate value
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class ImmediateNode final {
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class ImmediateNode final {
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public:
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public:
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explicit constexpr ImmediateNode(u32 value) : value{value} {}
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explicit constexpr ImmediateNode(u32 value_) : value{value_} {}
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u32 GetValue() const {
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u32 GetValue() const {
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return value;
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return value;
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@ -535,7 +537,7 @@ private:
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/// One of Maxwell's internal flags
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/// One of Maxwell's internal flags
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class InternalFlagNode final {
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class InternalFlagNode final {
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public:
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public:
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explicit constexpr InternalFlagNode(InternalFlag flag) : flag{flag} {}
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explicit constexpr InternalFlagNode(InternalFlag flag_) : flag{flag_} {}
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InternalFlag GetFlag() const {
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InternalFlag GetFlag() const {
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return flag;
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return flag;
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@ -548,8 +550,8 @@ private:
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/// A predicate register, it can be negated without additional nodes
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/// A predicate register, it can be negated without additional nodes
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class PredicateNode final {
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class PredicateNode final {
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public:
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public:
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explicit constexpr PredicateNode(Tegra::Shader::Pred index, bool negated)
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explicit constexpr PredicateNode(Tegra::Shader::Pred index_, bool negated_)
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: index{index}, negated{negated} {}
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: index{index_}, negated{negated_} {}
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Tegra::Shader::Pred GetIndex() const {
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Tegra::Shader::Pred GetIndex() const {
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return index;
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return index;
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@ -568,12 +570,12 @@ private:
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class AbufNode final {
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class AbufNode final {
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public:
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public:
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// Initialize for standard attributes (index is explicit).
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// Initialize for standard attributes (index is explicit).
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explicit AbufNode(Tegra::Shader::Attribute::Index index, u32 element, Node buffer = {})
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explicit AbufNode(Tegra::Shader::Attribute::Index index_, u32 element_, Node buffer_ = {})
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: buffer{std::move(buffer)}, index{index}, element{element} {}
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: buffer{std::move(buffer_)}, index{index_}, element{element_} {}
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// Initialize for physical attributes (index is a variable value).
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// Initialize for physical attributes (index is a variable value).
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explicit AbufNode(Node physical_address, Node buffer = {})
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explicit AbufNode(Node physical_address_, Node buffer_ = {})
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: physical_address{std::move(physical_address)}, buffer{std::move(buffer)} {}
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: physical_address{std::move(physical_address_)}, buffer{std::move(buffer_)} {}
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Tegra::Shader::Attribute::Index GetIndex() const {
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Tegra::Shader::Attribute::Index GetIndex() const {
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return index;
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return index;
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@ -605,7 +607,7 @@ private:
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/// Patch memory (used to communicate tessellation stages).
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/// Patch memory (used to communicate tessellation stages).
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class PatchNode final {
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class PatchNode final {
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public:
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public:
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explicit PatchNode(u32 offset) : offset{offset} {}
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explicit PatchNode(u32 offset_) : offset{offset_} {}
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u32 GetOffset() const {
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u32 GetOffset() const {
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return offset;
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return offset;
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@ -618,7 +620,7 @@ private:
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/// Constant buffer node, usually mapped to uniform buffers in GLSL
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/// Constant buffer node, usually mapped to uniform buffers in GLSL
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class CbufNode final {
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class CbufNode final {
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public:
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public:
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explicit CbufNode(u32 index, Node offset) : index{index}, offset{std::move(offset)} {}
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explicit CbufNode(u32 index_, Node offset_) : index{index_}, offset{std::move(offset_)} {}
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u32 GetIndex() const {
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u32 GetIndex() const {
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return index;
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return index;
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@ -636,7 +638,7 @@ private:
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/// Local memory node
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/// Local memory node
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class LmemNode final {
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class LmemNode final {
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public:
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public:
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explicit LmemNode(Node address) : address{std::move(address)} {}
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explicit LmemNode(Node address_) : address{std::move(address_)} {}
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const Node& GetAddress() const {
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const Node& GetAddress() const {
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return address;
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return address;
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@ -649,7 +651,7 @@ private:
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/// Shared memory node
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/// Shared memory node
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class SmemNode final {
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class SmemNode final {
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public:
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public:
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explicit SmemNode(Node address) : address{std::move(address)} {}
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explicit SmemNode(Node address_) : address{std::move(address_)} {}
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const Node& GetAddress() const {
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const Node& GetAddress() const {
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return address;
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return address;
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@ -662,9 +664,9 @@ private:
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/// Global memory node
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/// Global memory node
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class GmemNode final {
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class GmemNode final {
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public:
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public:
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explicit GmemNode(Node real_address, Node base_address, const GlobalMemoryBase& descriptor)
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explicit GmemNode(Node real_address_, Node base_address_, const GlobalMemoryBase& descriptor_)
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: real_address{std::move(real_address)}, base_address{std::move(base_address)},
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: real_address{std::move(real_address_)}, base_address{std::move(base_address_)},
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descriptor{descriptor} {}
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descriptor{descriptor_} {}
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const Node& GetRealAddress() const {
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const Node& GetRealAddress() const {
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return real_address;
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return real_address;
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@ -687,7 +689,7 @@ private:
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/// Commentary, can be dropped
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/// Commentary, can be dropped
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class CommentNode final {
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class CommentNode final {
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public:
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public:
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explicit CommentNode(std::string text) : text{std::move(text)} {}
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explicit CommentNode(std::string text_) : text{std::move(text_)} {}
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const std::string& GetText() const {
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const std::string& GetText() const {
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return text;
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return text;
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