mirror of https://github.com/llvm/torch-mlir
202 lines
7.8 KiB
C++
202 lines
7.8 KiB
C++
//===- func_builder.cpp ---------------------------------------------------===//
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//
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// This file is licensed under a pytorch-style license
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// See frontends/pytorch/LICENSE for license information.
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//
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//===----------------------------------------------------------------------===//
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#include "func_builder.h"
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#include "mlir-c/StandardAttributes.h"
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#include "mlir-c/StandardTypes.h"
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#include "npcomp-c/Types.h"
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using namespace torch_mlir;
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static MlirOperation createStandardConstant(MlirLocation loc, MlirType type,
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MlirAttribute value) {
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OperationStateHolder s("std.constant", loc);
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MlirNamedAttribute valueAttr = mlirNamedAttributeGet("value", value);
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mlirOperationStateAddResults(s, 1, &type);
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mlirOperationStateAddAttributes(s, 1, &valueAttr);
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return s.createOperation();
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}
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MlirType TypeMapper::mapScalarType(c10::ScalarType scalarType) {
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using c10::ScalarType;
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switch (scalarType) {
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case ScalarType::Byte:
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// TODO: convert to mlirIntegerTypeUnsignedGet once supported.
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return mlirIntegerTypeGet(context, 8);
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case ScalarType::Char:
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return mlirIntegerTypeGet(context, 8);
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case ScalarType::Short:
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// TODO: convert to mlirIntegerTypeSignedGet once supported.
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return mlirIntegerTypeGet(context, 16);
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case ScalarType::Int:
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// TODO: convert to mlirIntegerTypeSignedGet once supported.
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return mlirIntegerTypeGet(context, 32);
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case ScalarType::Long:
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// TODO: convert to mlirIntegerTypeSignedGet once supported.
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return mlirIntegerTypeGet(context, 64);
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case ScalarType::Bool:
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return npcompBoolTypeGet(context);
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case ScalarType::Double:
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return mlirF64TypeGet(context);
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case ScalarType::Float:
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return mlirF32TypeGet(context);
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case ScalarType::BFloat16:
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return mlirBF16TypeGet(context);
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case ScalarType::Half:
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return mlirF16TypeGet(context);
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default: {
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std::stringstream message;
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message << "unsupported PyTorch scalar type: " << c10::toString(scalarType);
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throw std::invalid_argument(message.str());
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}
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}
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}
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MlirType TypeMapper::forwardTensorToType(at::Tensor tensor) {
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if (!tensor.defined()) {
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// Undefined tensors are equivalent to None.
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// This may need to be re-evaluated at some point.
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return npcompNoneTypeGet(context);
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}
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MlirType elementType = mapScalarType(tensor.scalar_type());
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// TODO: Decide when it is necessary to take strides into account. Right now,
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// just erase them and let the compiler decide.
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auto sizes = tensor.sizes();
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return npcompNdArrayTypeGetRanked(sizes.size(), sizes.data(), elementType);
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}
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std::unique_ptr<FuncBuilder>
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FuncBuilder::createFunction(MlirContext context, MlirLocation location,
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llvm::StringRef name,
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llvm::SmallVectorImpl<MlirType> &inputTypes) {
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// TODO: Create a dedicated API upstream for creating/manipulating func ops.
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// (this is fragile and reveals details that are not guaranteed).
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llvm::SmallVector<MlirNamedAttribute, 4> funcAttrs;
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funcAttrs.push_back(mlirNamedAttributeGet(
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"type", mlirTypeAttrGet(mlirFunctionTypeGet(
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context, inputTypes.size(), inputTypes.data(),
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/*numResults=*/0, /*results=*/nullptr))));
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funcAttrs.push_back(mlirNamedAttributeGet(
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"sym_name", mlirStringAttrGet(context, name.size(), name.data())));
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MlirOperationState state = mlirOperationStateGet("func", location);
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mlirOperationStateAddAttributes(&state, funcAttrs.size(), funcAttrs.data());
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{
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// Don't access these once ownership transferred.
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MlirRegion newBodyRegion = mlirRegionCreate();
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MlirBlock newEntryBlock =
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mlirBlockCreate(inputTypes.size(), inputTypes.data());
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mlirRegionInsertOwnedBlockAfter(newBodyRegion, {nullptr}, newEntryBlock);
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mlirOperationStateAddOwnedRegions(&state, 1, &newBodyRegion);
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}
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// Need to re-lookup the region/block because we relinquished ownership above.
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MlirOperation funcOp = mlirOperationCreate(&state);
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MlirRegion bodyRegion = mlirOperationGetRegion(funcOp, 0);
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MlirBlock entryBlock = mlirRegionGetFirstBlock(bodyRegion);
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return std::unique_ptr<FuncBuilder>(new FuncBuilder(
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context, funcOp, BlockBuilder(entryBlock, /*returnOp=*/{nullptr}, true)));
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}
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void FuncBuilder::rewriteFuncReturnTypes(
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llvm::SmallVectorImpl<MlirType> &resultTypes) {
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// Get inputs from current function type.
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MlirAttribute funcTypeAttr = mlirOperationGetAttributeByName(funcOp, "type");
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assert(!mlirAttributeIsNull(funcTypeAttr) &&
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"function missing 'type' attribute");
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assert(mlirAttributeIsAType(funcTypeAttr) &&
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"function type is not a TypeAttr");
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MlirType funcType = mlirTypeAttrGetValue(funcTypeAttr);
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llvm::SmallVector<MlirType, 4> inputTypes;
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for (intptr_t i = 0, e = mlirFunctionTypeGetNumInputs(funcType); i < e; ++i) {
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inputTypes.push_back(mlirFunctionTypeGetInput(funcType, i));
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}
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// Make new function type.
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MlirType newFuncType =
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mlirFunctionTypeGet(context, inputTypes.size(), inputTypes.data(),
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resultTypes.size(), resultTypes.data());
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MlirAttribute newFuncTypeAttr = mlirTypeAttrGet(newFuncType);
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mlirOperationSetAttributeByName(funcOp, "type", newFuncTypeAttr);
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(void)newFuncTypeAttr;
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}
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MlirValue FuncBuilder::insertConstantOp(MlirOperation op) {
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mlirBlockInsertOwnedOperationAfter(entryBlock.getBlock(), prevConstantOp, op);
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prevConstantOp = op;
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return mlirOperationGetResult(op, 0);
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}
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MlirValue FuncBuilder::lookupTensor(at::Tensor tensor) {
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for (auto it = tensorValueMap.rbegin(), e = tensorValueMap.rend(); it != e;
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++it) {
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if (it->first.is_same(tensor))
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return it->second;
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}
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return {nullptr};
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}
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MlirValue FuncBuilder::getScalarConstant(MlirLocation loc, at::Scalar s) {
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// Note that interpreter "scalars" match the Python semantics and are
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// represented as one of double or int64_t, with a special tag for whether
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// it should be interpreted as a bool.
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if (s.isIntegral(/*includeBool=*/false)) {
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// TODO: Switch to a basicpy.constant that works properly with signed
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// integers and then switch this to a signed integer.
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MlirType t = mlirIntegerTypeGet(context, 64);
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MlirAttribute value = mlirIntegerAttrGet(t, s.to<int64_t>());
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return getGeneralConstant(loc, value);
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}
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if (s.isFloatingPoint()) {
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MlirType t = mlirF64TypeGet(context);
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MlirAttribute value = mlirFloatAttrDoubleGet(context, t, s.to<double>());
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return getGeneralConstant(loc, value);
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}
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if (s.isBoolean()) {
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return getBoolConstant(loc, s.to<bool>());
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}
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// TODO: s.isComplex()
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throw std::invalid_argument("TODO: Scalar of unknown kind");
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}
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MlirValue FuncBuilder::getBoolConstant(MlirLocation loc, bool v) {
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MlirAttribute value = mlirBoolAttrGet(context, v);
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return getGeneralConstant(loc, value);
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}
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MlirValue FuncBuilder::getNoneConstant(MlirLocation loc) {
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OperationStateHolder state{"basicpy.singleton", loc};
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MlirType noneType = npcompNoneTypeGet(context);
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mlirOperationStateAddResults(state, 1, &noneType);
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MlirOperation op = state.createOperation();
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return insertConstantOp(op);
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}
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MlirValue FuncBuilder::getGeneralConstant(MlirLocation loc,
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MlirAttribute value) {
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MlirType valueType = mlirAttributeGetType(value);
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MlirOperation constOp = createStandardConstant(loc, valueType, value);
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MlirValue constValue = insertConstantOp(constOp);
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return constValue;
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}
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MlirValue FuncBuilder::buildList(MlirLocation loc,
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llvm::SmallVectorImpl<MlirValue> &elements) {
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MlirType resultType = npcompListTypeGet(context);
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OperationStateHolder state{"basicpy.build_list", loc};
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mlirOperationStateAddResults(state, 1, &resultType);
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mlirOperationStateAddOperands(state, elements.size(), elements.data());
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MlirOperation op = state.createOperation();
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entryBlock.insertBeforeTerminator(op);
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return mlirOperationGetResult(op, 0);
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}
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