forked from suyu/suyu
shader_ir/memory: Implement physical input attributes
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commit
71aa9d0877
4 changed files with 32 additions and 6 deletions
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@ -98,6 +98,10 @@ union Attribute {
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BitField<22, 2, u64> element;
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BitField<22, 2, u64> element;
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BitField<24, 6, Index> index;
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BitField<24, 6, Index> index;
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BitField<47, 3, AttributeSize> size;
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BitField<47, 3, AttributeSize> size;
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bool IsPhysical() const {
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return element == 0 && static_cast<u64>(index.Value()) == 0;
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}
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} fmt20;
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} fmt20;
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union {
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union {
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@ -50,13 +50,16 @@ u32 ShaderIR::DecodeMemory(NodeBlock& bb, u32 pc) {
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UNIMPLEMENTED_IF_MSG((instr.attribute.fmt20.immediate.Value() % sizeof(u32)) != 0,
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UNIMPLEMENTED_IF_MSG((instr.attribute.fmt20.immediate.Value() % sizeof(u32)) != 0,
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"Unaligned attribute loads are not supported");
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"Unaligned attribute loads are not supported");
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const Node buffer{GetRegister(instr.gpr39)};
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u64 next_element = instr.attribute.fmt20.element;
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u64 next_element = instr.attribute.fmt20.element;
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auto next_index = static_cast<u64>(instr.attribute.fmt20.index.Value());
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auto next_index = static_cast<u64>(instr.attribute.fmt20.index.Value());
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const auto LoadNextElement = [&](u32 reg_offset) {
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const auto LoadNextElement = [&](u32 reg_offset) {
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const Node buffer = GetRegister(instr.gpr39);
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const Node attribute{instr.attribute.fmt20.IsPhysical()
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const Node attribute =
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? GetPhysicalInputAttribute(instr.gpr8, buffer)
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GetInputAttribute(static_cast<Attribute::Index>(next_index), next_element, buffer);
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: GetInputAttribute(static_cast<Attribute::Index>(next_index),
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next_element, buffer)};
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SetRegister(bb, instr.gpr0.Value() + reg_offset, attribute);
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SetRegister(bb, instr.gpr0.Value() + reg_offset, attribute);
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@ -94,6 +94,11 @@ Node ShaderIR::GetInputAttribute(Attribute::Index index, u64 element, Node buffe
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return StoreNode(AbufNode(index, static_cast<u32>(element), buffer));
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return StoreNode(AbufNode(index, static_cast<u32>(element), buffer));
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}
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}
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Node ShaderIR::GetPhysicalInputAttribute(Tegra::Shader::Register physical_address, Node buffer) {
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use_physical_attributes = true;
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return StoreNode(AbufNode(GetRegister(physical_address), buffer));
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}
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Node ShaderIR::GetOutputAttribute(Attribute::Index index, u64 element, Node buffer) {
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Node ShaderIR::GetOutputAttribute(Attribute::Index index, u64 element, Node buffer) {
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if (index == Attribute::Index::ClipDistances0123 ||
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if (index == Attribute::Index::ClipDistances0123 ||
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index == Attribute::Index::ClipDistances4567) {
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index == Attribute::Index::ClipDistances4567) {
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@ -469,6 +469,9 @@ public:
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Node buffer = {})
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Node buffer = {})
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: buffer{buffer}, index{index}, element{element} {}
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: buffer{buffer}, index{index}, element{element} {}
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explicit constexpr AbufNode(Node physical_address, Node buffer = {})
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: physical_address{physical_address}, buffer{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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}
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}
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@ -481,10 +484,19 @@ public:
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return buffer;
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return buffer;
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}
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}
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bool IsPhysicalBuffer() const {
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return physical_address != nullptr;
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}
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Node GetPhysicalAddress() const {
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return physical_address;
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}
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private:
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private:
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const Node buffer;
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Node physical_address{};
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const Tegra::Shader::Attribute::Index index;
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Node buffer{};
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const u32 element;
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Tegra::Shader::Attribute::Index index{};
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u32 element{};
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};
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};
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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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@ -691,6 +703,8 @@ private:
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Node GetPredicate(bool immediate);
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Node GetPredicate(bool immediate);
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/// Generates a node representing an input attribute. Keeps track of used attributes.
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/// Generates a node representing an input attribute. Keeps track of used attributes.
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Node GetInputAttribute(Tegra::Shader::Attribute::Index index, u64 element, Node buffer = {});
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Node GetInputAttribute(Tegra::Shader::Attribute::Index index, u64 element, Node buffer = {});
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/// Generates a node representing a physical input attribute.
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Node GetPhysicalInputAttribute(Tegra::Shader::Register physical_address, Node buffer = {});
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/// Generates a node representing an output attribute. Keeps track of used attributes.
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/// Generates a node representing an output attribute. Keeps track of used attributes.
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Node GetOutputAttribute(Tegra::Shader::Attribute::Index index, u64 element, Node buffer);
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Node GetOutputAttribute(Tegra::Shader::Attribute::Index index, u64 element, Node buffer);
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/// Generates a node representing an internal flag
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/// Generates a node representing an internal flag
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