cb424d7448
verify-patch-sanity.py validates every active recipe .patch has internally- consistent hunk line counts — catching the 'malformed patch at line N' failure at commit/CI/preflight time instead of hours into a cook. This cycle hit that class three times (qtwaylandscanner, sddm, xwayland), each only discovered when cookbook tried to apply the patch. Running it across the repo found 29 latent malformed patches (validated against GNU patch: e.g. relibc/P3-sysv-ipc reproduces 'malformed patch at line 22'). They were harmless only because they sit in vendored recipes (baked, not re- applied) — but would fail on any version-bump re-derivation. --fix recounts the hunk headers (body untouched) and repaired all 29. Wired into build-preflight.sh (Phase 1.0D) and redbear-ci.yml, with a unit test (test-patch-sanity.sh). Skips archived/legacy trees and unvalidatable formats (empty placeholders, bare-@@ git hunks).
187 lines
7.5 KiB
C
187 lines
7.5 KiB
C
//===- smt.c - Test of SMT APIs -------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM
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// 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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/* RUN: mlir-capi-smt-test 2>&1 | FileCheck %s
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*/
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#include "mlir-c/Dialect/SMT.h"
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#include "mlir-c/Dialect/Func.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 <assert.h>
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#include <stdio.h>
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void dumpCallback(MlirStringRef message, void *userData) {
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fprintf(stderr, "%.*s", (int)message.length, message.data);
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}
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void testExportSMTLIB(MlirContext ctx) {
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// clang-format off
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const char *testSMT =
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"func.func @test() {\n"
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" smt.solver() : () -> () { }\n"
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" return\n"
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"}\n";
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// clang-format on
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MlirModule module =
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mlirModuleCreateParse(ctx, mlirStringRefCreateFromCString(testSMT));
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MlirLogicalResult result =
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mlirTranslateModuleToSMTLIB(module, dumpCallback, NULL, false, false);
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(void)result;
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assert(mlirLogicalResultIsSuccess(result));
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// CHECK: ; solver scope 0
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// CHECK-NEXT: (reset)
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mlirModuleDestroy(module);
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}
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void testSMTType(MlirContext ctx) {
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MlirType boolType = mlirSMTTypeGetBool(ctx);
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MlirType intType = mlirSMTTypeGetInt(ctx);
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MlirType arrayType = mlirSMTTypeGetArray(ctx, intType, boolType);
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MlirType bvType = mlirSMTTypeGetBitVector(ctx, 32);
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MlirType funcType =
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mlirSMTTypeGetSMTFunc(ctx, 2, (MlirType[]){intType, boolType}, boolType);
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MlirType sortType = mlirSMTTypeGetSort(
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ctx, mlirIdentifierGet(ctx, mlirStringRefCreateFromCString("sort")), 0,
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NULL);
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// CHECK: !smt.bool
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mlirTypeDump(boolType);
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// CHECK: !smt.int
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mlirTypeDump(intType);
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// CHECK: !smt.array<[!smt.int -> !smt.bool]>
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mlirTypeDump(arrayType);
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// CHECK: !smt.bv<32>
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mlirTypeDump(bvType);
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// CHECK: !smt.func<(!smt.int, !smt.bool) !smt.bool>
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mlirTypeDump(funcType);
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// CHECK: !smt.sort<"sort">
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mlirTypeDump(sortType);
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// CHECK: bool_is_any_non_func_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnyNonFuncSMTValueType(boolType)
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? "bool_is_any_non_func_smt_value_type\n"
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: "bool_is_func_smt_value_type\n");
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// CHECK: int_is_any_non_func_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnyNonFuncSMTValueType(intType)
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? "int_is_any_non_func_smt_value_type\n"
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: "int_is_func_smt_value_type\n");
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// CHECK: array_is_any_non_func_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnyNonFuncSMTValueType(arrayType)
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? "array_is_any_non_func_smt_value_type\n"
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: "array_is_func_smt_value_type\n");
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// CHECK: bit_vector_is_any_non_func_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnyNonFuncSMTValueType(bvType)
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? "bit_vector_is_any_non_func_smt_value_type\n"
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: "bit_vector_is_func_smt_value_type\n");
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// CHECK: sort_is_any_non_func_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnyNonFuncSMTValueType(sortType)
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? "sort_is_any_non_func_smt_value_type\n"
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: "sort_is_func_smt_value_type\n");
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// CHECK: smt_func_is_func_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnyNonFuncSMTValueType(funcType)
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? "smt_func_is_any_non_func_smt_value_type\n"
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: "smt_func_is_func_smt_value_type\n");
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// CHECK: bool_is_any_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnySMTValueType(boolType)
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? "bool_is_any_smt_value_type\n"
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: "bool_is_not_any_smt_value_type\n");
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// CHECK: int_is_any_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnySMTValueType(intType)
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? "int_is_any_smt_value_type\n"
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: "int_is_not_any_smt_value_type\n");
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// CHECK: array_is_any_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnySMTValueType(arrayType)
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? "array_is_any_smt_value_type\n"
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: "array_is_not_any_smt_value_type\n");
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// CHECK: array_is_any_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnySMTValueType(bvType)
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? "array_is_any_smt_value_type\n"
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: "array_is_not_any_smt_value_type\n");
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// CHECK: smt_func_is_any_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnySMTValueType(funcType)
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? "smt_func_is_any_smt_value_type\n"
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: "smt_func_is_not_any_smt_value_type\n");
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// CHECK: sort_is_any_smt_value_type
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fprintf(stderr, mlirSMTTypeIsAnySMTValueType(sortType)
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? "sort_is_any_smt_value_type\n"
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: "sort_is_not_any_smt_value_type\n");
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// CHECK: int_type_is_not_a_bool
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fprintf(stderr, mlirSMTTypeIsABool(intType) ? "int_type_is_a_bool\n"
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: "int_type_is_not_a_bool\n");
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// CHECK: bool_type_is_not_a_int
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fprintf(stderr, mlirSMTTypeIsAInt(boolType) ? "bool_type_is_a_int\n"
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: "bool_type_is_not_a_int\n");
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// CHECK: bv_type_is_not_a_array
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fprintf(stderr, mlirSMTTypeIsAArray(bvType) ? "bv_type_is_a_array\n"
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: "bv_type_is_not_a_array\n");
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// CHECK: array_type_is_not_a_bit_vector
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fprintf(stderr, mlirSMTTypeIsABitVector(arrayType)
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? "array_type_is_a_bit_vector\n"
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: "array_type_is_not_a_bit_vector\n");
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// CHECK: sort_type_is_not_a_smt_func
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fprintf(stderr, mlirSMTTypeIsASMTFunc(sortType)
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? "sort_type_is_a_smt_func\n"
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: "sort_type_is_not_a_smt_func\n");
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// CHECK: func_type_is_not_a_sort
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fprintf(stderr, mlirSMTTypeIsASort(funcType) ? "func_type_is_a_sort\n"
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: "func_type_is_not_a_sort\n");
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}
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void testSMTAttribute(MlirContext ctx) {
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// CHECK: slt_is_BVCmpPredicate
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fprintf(stderr, mlirSMTAttrCheckBVCmpPredicate(
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ctx, mlirStringRefCreateFromCString("slt"))
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? "slt_is_BVCmpPredicate\n"
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: "slt_is_not_BVCmpPredicate\n");
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// CHECK: lt_is_not_BVCmpPredicate
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fprintf(stderr, mlirSMTAttrCheckBVCmpPredicate(
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ctx, mlirStringRefCreateFromCString("lt"))
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? "lt_is_BVCmpPredicate\n"
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: "lt_is_not_BVCmpPredicate\n");
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// CHECK: slt_is_not_IntPredicate
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fprintf(stderr, mlirSMTAttrCheckIntPredicate(
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ctx, mlirStringRefCreateFromCString("slt"))
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? "slt_is_IntPredicate\n"
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: "slt_is_not_IntPredicate\n");
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// CHECK: lt_is_IntPredicate
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fprintf(stderr, mlirSMTAttrCheckIntPredicate(
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ctx, mlirStringRefCreateFromCString("lt"))
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? "lt_is_IntPredicate\n"
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: "lt_is_not_IntPredicate\n");
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// CHECK: #smt.bv<5> : !smt.bv<32>
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mlirAttributeDump(mlirSMTAttrGetBitVector(ctx, 5, 32));
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// CHECK: 0 : i64
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mlirAttributeDump(
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mlirSMTAttrGetBVCmpPredicate(ctx, mlirStringRefCreateFromCString("slt")));
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// CHECK: 0 : i64
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mlirAttributeDump(
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mlirSMTAttrGetIntPredicate(ctx, mlirStringRefCreateFromCString("lt")));
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}
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int main(void) {
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MlirContext ctx = mlirContextCreate();
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mlirDialectHandleLoadDialect(mlirGetDialectHandle__smt__(), ctx);
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mlirDialectHandleLoadDialect(mlirGetDialectHandle__func__(), ctx);
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testExportSMTLIB(ctx);
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testSMTType(ctx);
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testSMTAttribute(ctx);
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mlirContextDestroy(ctx);
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return 0;
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}
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