shader: FMUL switch to using LUT (#3441)
* shader: add FmulPostFactor LUT table * shader: FMUL apply LUT * Update src/video_core/engines/shader_bytecode.h Co-Authored-By: Mat M. <mathew1800@gmail.com> * nit: mistype * clang-format & add missing import * shader: remove post factor LUT. * shader: move post factor LUT to function and fix incorrect order. * clang-format * shader: FMUL: add static to post factor LUT * nit: typo Co-authored-by: Mat M. <mathew1800@gmail.com>
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@ -53,28 +53,23 @@ u32 ShaderIR::DecodeArithmetic(NodeBlock& bb, u32 pc) {
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op_b = GetOperandAbsNegFloat(op_b, false, instr.fmul.negate_b);
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op_b = GetOperandAbsNegFloat(op_b, false, instr.fmul.negate_b);
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// TODO(Rodrigo): Should precise be used when there's a postfactor?
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static constexpr std::array FmulPostFactor = {
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Node value = Operation(OperationCode::FMul, PRECISE, op_a, op_b);
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1.000f, // None
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0.500f, // Divide 2
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0.250f, // Divide 4
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0.125f, // Divide 8
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8.000f, // Mul 8
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4.000f, // Mul 4
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2.000f, // Mul 2
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};
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if (instr.fmul.postfactor != 0) {
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if (instr.fmul.postfactor != 0) {
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auto postfactor = static_cast<s32>(instr.fmul.postfactor);
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op_a = Operation(OperationCode::FMul, NO_PRECISE, op_a,
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Immediate(FmulPostFactor[instr.fmul.postfactor]));
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// Postfactor encoded as 3-bit 1's complement in instruction, interpreted with below
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// logic.
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if (postfactor >= 4) {
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postfactor = 7 - postfactor;
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} else {
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postfactor = 0 - postfactor;
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}
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}
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if (postfactor > 0) {
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// TODO(Rodrigo): Should precise be used when there's a postfactor?
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value = Operation(OperationCode::FMul, NO_PRECISE, value,
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Node value = Operation(OperationCode::FMul, PRECISE, op_a, op_b);
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Immediate(static_cast<f32>(1 << postfactor)));
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} else {
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value = Operation(OperationCode::FDiv, NO_PRECISE, value,
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Immediate(static_cast<f32>(1 << -postfactor)));
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}
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}
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value = GetSaturatedFloat(value, instr.alu.saturate_d);
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value = GetSaturatedFloat(value, instr.alu.saturate_d);
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