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	shader_ir/conversion: Split int and float selector and implement F2F H1
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		@@ -1006,7 +1006,6 @@ union Instruction {
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    } iset;
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    union {
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        BitField<41, 2, u64> selector;
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        BitField<45, 1, u64> negate_a;
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        BitField<49, 1, u64> abs_a;
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        BitField<10, 2, Register::Size> src_size;
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@@ -1031,6 +1030,14 @@ union Instruction {
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                return static_cast<F2fRoundingOp>(rounding.Value() & rounding_mask);
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            }
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        } f2f;
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        union {
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            BitField<41, 2, u64> selector;
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        } int_src;
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        union {
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            BitField<41, 1, u64> selector;
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        } float_src;
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    } conversion;
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    union {
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@@ -14,6 +14,12 @@ using Tegra::Shader::Instruction;
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using Tegra::Shader::OpCode;
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using Tegra::Shader::Register;
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namespace {
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constexpr OperationCode GetFloatSelector(u64 selector) {
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    return selector == 0 ? OperationCode::FCastHalf0 : OperationCode::FCastHalf1;
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}
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} // Anonymous namespace
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u32 ShaderIR::DecodeConversion(NodeBlock& bb, u32 pc) {
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    const Instruction instr = {program_code[pc]};
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    const auto opcode = OpCode::Decode(instr);
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@@ -22,7 +28,7 @@ u32 ShaderIR::DecodeConversion(NodeBlock& bb, u32 pc) {
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    case OpCode::Id::I2I_R:
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    case OpCode::Id::I2I_C:
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    case OpCode::Id::I2I_IMM: {
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        UNIMPLEMENTED_IF(instr.conversion.selector.Value());
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        UNIMPLEMENTED_IF(instr.conversion.int_src.selector != 0);
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        UNIMPLEMENTED_IF(instr.conversion.dst_size != Register::Size::Word);
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        UNIMPLEMENTED_IF(instr.alu.saturate_d);
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@@ -57,7 +63,7 @@ u32 ShaderIR::DecodeConversion(NodeBlock& bb, u32 pc) {
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    case OpCode::Id::I2F_R:
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    case OpCode::Id::I2F_C:
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    case OpCode::Id::I2F_IMM: {
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        UNIMPLEMENTED_IF(instr.conversion.selector.Value());
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        UNIMPLEMENTED_IF(instr.conversion.int_src.selector != 0);
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        UNIMPLEMENTED_IF(instr.conversion.dst_size == Register::Size::Long);
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        UNIMPLEMENTED_IF_MSG(instr.generates_cc,
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                             "Condition codes generation in I2F is not implemented");
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@@ -93,7 +99,6 @@ u32 ShaderIR::DecodeConversion(NodeBlock& bb, u32 pc) {
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    case OpCode::Id::F2F_R:
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    case OpCode::Id::F2F_C:
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    case OpCode::Id::F2F_IMM: {
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        UNIMPLEMENTED_IF(instr.conversion.selector.Value());
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        UNIMPLEMENTED_IF(instr.conversion.dst_size == Register::Size::Long);
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        UNIMPLEMENTED_IF(instr.conversion.src_size == Register::Size::Long);
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        UNIMPLEMENTED_IF_MSG(instr.generates_cc,
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@@ -114,8 +119,10 @@ u32 ShaderIR::DecodeConversion(NodeBlock& bb, u32 pc) {
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        }();
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        if (instr.conversion.src_size == Register::Size::Short) {
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            // TODO: figure where extract is sey in the encoding
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            value = Operation(OperationCode::FCastHalf0, PRECISE, value);
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            value = Operation(GetFloatSelector(instr.conversion.float_src.selector), NO_PRECISE,
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                              std::move(value));
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        } else {
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            ASSERT(instr.conversion.float_src.selector == 0);
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        }
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        value = GetOperandAbsNegFloat(value, instr.conversion.abs_a, instr.conversion.negate_a);
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@@ -170,19 +177,10 @@ u32 ShaderIR::DecodeConversion(NodeBlock& bb, u32 pc) {
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        }();
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        if (instr.conversion.src_size == Register::Size::Short) {
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            const OperationCode cast = [instr] {
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                switch (instr.conversion.selector) {
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                case 0:
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                    return OperationCode::FCastHalf0;
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                case 1:
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                    return OperationCode::FCastHalf1;
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                default:
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                    UNREACHABLE_MSG("Invalid selector={}",
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                                    static_cast<u32>(instr.conversion.selector));
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                    return OperationCode::FCastHalf0;
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                }
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            }();
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            value = Operation(cast, NO_PRECISE, std::move(value));
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            value = Operation(GetFloatSelector(instr.conversion.float_src.selector), NO_PRECISE,
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                              std::move(value));
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        } else {
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            ASSERT(instr.conversion.float_src.selector == 0);
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        }
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        value = GetOperandAbsNegFloat(value, instr.conversion.abs_a, instr.conversion.negate_a);
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