Previously, the MLIR's python binding `smt.export_smtlib(...)` always emit `(reset)` to the end of smtlib string as a solver terminator. This PR added an option to suppress this trailing, as downstream users like python z3 module don't need it.
136 lines
4.7 KiB
C++
136 lines
4.7 KiB
C++
//===- DialectSMT.cpp - Pybind module for SMT dialect API support ---------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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#include "mlir/Bindings/Python/NanobindUtils.h"
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#include "mlir-c/Dialect/SMT.h"
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#include "mlir-c/IR.h"
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#include "mlir-c/Support.h"
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#include "mlir-c/Target/ExportSMTLIB.h"
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#include "mlir/Bindings/Python/Diagnostics.h"
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#include "mlir/Bindings/Python/IRCore.h"
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#include "mlir/Bindings/Python/Nanobind.h"
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#include "mlir/Bindings/Python/NanobindAdaptors.h"
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namespace nb = nanobind;
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using namespace nanobind::literals;
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using namespace mlir;
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using namespace mlir::python::nanobind_adaptors;
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namespace mlir {
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namespace python {
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namespace MLIR_BINDINGS_PYTHON_DOMAIN {
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namespace smt {
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struct BoolType : PyConcreteType<BoolType> {
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static constexpr IsAFunctionTy isaFunction = mlirSMTTypeIsABool;
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static constexpr GetTypeIDFunctionTy getTypeIdFunction =
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mlirSMTBoolTypeGetTypeID;
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static constexpr const char *pyClassName = "BoolType";
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static inline const MlirStringRef name = mlirSMTBoolTypeGetName();
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using Base::Base;
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static void bindDerived(ClassTy &c) {
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c.def_static(
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"get",
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[](DefaultingPyMlirContext context) {
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return BoolType(context->getRef(),
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mlirSMTTypeGetBool(context.get()->get()));
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},
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nb::arg("context").none() = nb::none());
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}
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};
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struct BitVectorType : PyConcreteType<BitVectorType> {
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static constexpr IsAFunctionTy isaFunction = mlirSMTTypeIsABitVector;
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static constexpr GetTypeIDFunctionTy getTypeIdFunction =
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mlirSMTBitVectorTypeGetTypeID;
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static constexpr const char *pyClassName = "BitVectorType";
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static inline const MlirStringRef name = mlirSMTBitVectorTypeGetName();
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using Base::Base;
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static void bindDerived(ClassTy &c) {
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c.def_static(
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"get",
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[](int32_t width, DefaultingPyMlirContext context) {
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return BitVectorType(
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context->getRef(),
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mlirSMTTypeGetBitVector(context.get()->get(), width));
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},
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nb::arg("width"), nb::arg("context").none() = nb::none());
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}
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};
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struct IntType : PyConcreteType<IntType> {
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static constexpr IsAFunctionTy isaFunction = mlirSMTTypeIsAInt;
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static constexpr GetTypeIDFunctionTy getTypeIdFunction =
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mlirSMTIntTypeGetTypeID;
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static constexpr const char *pyClassName = "IntType";
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static inline const MlirStringRef name = mlirSMTIntTypeGetName();
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using Base::Base;
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static void bindDerived(ClassTy &c) {
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c.def_static(
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"get",
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[](DefaultingPyMlirContext context) {
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return IntType(context->getRef(),
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mlirSMTTypeGetInt(context.get()->get()));
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},
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nb::arg("context").none() = nb::none());
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}
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};
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static void populateDialectSMTSubmodule(nanobind::module_ &m) {
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BoolType::bind(m);
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BitVectorType::bind(m);
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IntType::bind(m);
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auto exportSMTLIB = [](MlirOperation module, bool inlineSingleUseValues,
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bool indentLetBody, bool emitReset) {
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CollectDiagnosticsToStringScope scope(mlirOperationGetContext(module));
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PyPrintAccumulator printAccum;
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MlirLogicalResult result = mlirTranslateOperationToSMTLIB(
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module, printAccum.getCallback(), printAccum.getUserData(),
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inlineSingleUseValues, indentLetBody, emitReset);
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if (mlirLogicalResultIsSuccess(result))
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return printAccum.join();
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throw nb::value_error(
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("Failed to export smtlib.\nDiagnostic message " + scope.takeMessage())
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.c_str());
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};
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m.def(
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"export_smtlib",
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[&exportSMTLIB](const PyOperation &module, bool inlineSingleUseValues,
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bool indentLetBody, bool emitReset) {
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return exportSMTLIB(module, inlineSingleUseValues, indentLetBody,
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emitReset);
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},
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"module"_a, "inline_single_use_values"_a = false,
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"indent_let_body"_a = false, "emit_reset"_a = true);
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m.def(
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"export_smtlib",
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[&exportSMTLIB](PyModule &module, bool inlineSingleUseValues,
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bool indentLetBody, bool emitReset) {
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return exportSMTLIB(mlirModuleGetOperation(module.get()),
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inlineSingleUseValues, indentLetBody, emitReset);
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},
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"module"_a, "inline_single_use_values"_a = false,
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"indent_let_body"_a = false, "emit_reset"_a = true);
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}
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} // namespace smt
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} // namespace MLIR_BINDINGS_PYTHON_DOMAIN
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} // namespace python
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} // namespace mlir
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NB_MODULE(_mlirDialectsSMT, m) {
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m.doc() = "MLIR SMT Dialect";
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python::MLIR_BINDINGS_PYTHON_DOMAIN::smt::populateDialectSMTSubmodule(m);
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}
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