[MLIR][KernelGen] Lower `tf.Sinh` to MLHLO
PiperOrigin-RevId: 332425724
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@ -366,6 +366,20 @@ def HLOClient_AcosOp : HLOClient_UnaryElementwiseOp<"acos", [],
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}];
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}
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def HLOClient_SinhOp : HLOClient_UnaryElementwiseOp<"sinh", [],
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HLO_FpOrComplexTensor> {
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let summary = "Sinh operation";
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let description = [{
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Returns `Sinh(operand)` element-wise.
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$$
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\sinh(x) = (e^x - e^-x) / 2 if |x| < 1
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= e^(x + log(1/2)) - e^(-x + log(1/2)) otherwise.
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$$
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}];
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}
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def HLOClient_TanOp : HLOClient_UnaryElementwiseOp<"tan", [],
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HLO_FpOrComplexTensor> {
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let summary = "Tan operation";
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@ -49,6 +49,45 @@ def : Pat<(HLOClient_AcosOp $input),
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),
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(HLO_ConstantLike<"M_PI"> $input))>;
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// Express `sinh` as
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// sinh(x) = (e^x - e^-x) / 2 if |x| < 1
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// = e^(x + log(1/2)) - e^(-x + log(1/2)) otherwise.
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def : Pat<(HLOClient_SinhOp $input),
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(HLO_SelectOp
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(HLO_CompareOp
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(HLO_AbsOp $input),
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(HLO_ConstantLike<"1"> $input),
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HLO_COMPARISON_DIRECTION_LT
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),
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(HLO_DivOp
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(HLO_SubOp
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(HLO_ExpOp $input),
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(HLO_ExpOp
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(HLO_NegOp $input)
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)
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),
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(HLO_ConstantLike<"2"> $input)
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),
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(HLO_SubOp
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(HLO_ExpOp
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(HLO_AddOp
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$input,
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(HLO_LogOp
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(HLO_ConstantLike<"0.5"> $input)
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)
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)
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),
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(HLO_ExpOp
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(HLO_SubOp
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(HLO_LogOp
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(HLO_ConstantLike<"0.5"> $input)
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),
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$input
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)
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)
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)
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)>;
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// Express tan in MHLO dialect as
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// tan(x) = sin(x) / cos(x).
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def : Pat<(HLOClient_TanOp $input),
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@ -47,7 +47,8 @@ namespace {
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sep fn(ShiftRightLogicalOp) sep fn(SubOp)
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// TODO(herhut): Generate these out of op definitions.
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#define MAP_CHLO_OPERATION_CWISE_UNARY(fn, sep) fn(TanOp) sep fn(AcosOp)
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#define MAP_CHLO_OPERATION_CWISE_UNARY(fn, sep) \
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fn(TanOp) sep fn(AcosOp) sep fn(SinhOp)
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template <typename OpTy>
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inline void AddLegalOpOnRankedTensor(ConversionTarget *target) {
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