// RUN: mlir-opt %s -pass-pipeline="builtin.module(async-to-async-runtime,func.func(async-runtime-ref-counting,async-runtime-ref-counting-opt),convert-async-to-llvm,func.func(convert-linalg-to-loops,convert-scf-to-cf),finalize-memref-to-llvm,func.func(convert-arith-to-llvm),convert-func-to-llvm,reconcile-unrealized-casts)" \ // RUN: | mlir-cpu-runner \ // RUN: -e main -entry-point-result=void -O0 \ // RUN: -shared-libs=%mlir_c_runner_utils \ // RUN: -shared-libs=%mlir_runner_utils \ // RUN: -shared-libs=%mlir_async_runtime \ // RUN: | FileCheck %s // FIXME: https://github.com/llvm/llvm-project/issues/57231 // UNSUPPORTED: asan // UNSUPPORTED: hwasan // FIXME: Windows does not have aligned_alloc // UNSUPPORTED: system-windows func.func @main() { %i0 = arith.constant 0 : index %i1 = arith.constant 1 : index %i2 = arith.constant 2 : index %i3 = arith.constant 3 : index %c0 = arith.constant 0.0 : f32 %c1 = arith.constant 1.0 : f32 %c2 = arith.constant 2.0 : f32 %c3 = arith.constant 3.0 : f32 %c4 = arith.constant 4.0 : f32 %A = memref.alloc() : memref<4xf32> linalg.fill ins(%c0 : f32) outs(%A : memref<4xf32>) // CHECK: [0, 0, 0, 0] %U = memref.cast %A : memref<4xf32> to memref<*xf32> call @printMemrefF32(%U): (memref<*xf32>) -> () // CHECK: Current thread id: [[MAIN:.*]] // CHECK: [1, 0, 0, 0] memref.store %c1, %A[%i0]: memref<4xf32> call @mlirAsyncRuntimePrintCurrentThreadId(): () -> () call @printMemrefF32(%U): (memref<*xf32>) -> () %outer = async.execute { // CHECK: Current thread id: [[THREAD0:.*]] // CHECK: [1, 2, 0, 0] memref.store %c2, %A[%i1]: memref<4xf32> func.call @mlirAsyncRuntimePrintCurrentThreadId(): () -> () func.call @printMemrefF32(%U): (memref<*xf32>) -> () // No op async region to create a token for testing async dependency. %noop = async.execute { // CHECK: Current thread id: [[THREAD1:.*]] func.call @mlirAsyncRuntimePrintCurrentThreadId(): () -> () async.yield } %inner = async.execute [%noop] { // CHECK: Current thread id: [[THREAD2:.*]] // CHECK: [1, 2, 3, 0] memref.store %c3, %A[%i2]: memref<4xf32> func.call @mlirAsyncRuntimePrintCurrentThreadId(): () -> () func.call @printMemrefF32(%U): (memref<*xf32>) -> () async.yield } async.await %inner : !async.token // CHECK: Current thread id: [[THREAD3:.*]] // CHECK: [1, 2, 3, 4] memref.store %c4, %A[%i3]: memref<4xf32> func.call @mlirAsyncRuntimePrintCurrentThreadId(): () -> () func.call @printMemrefF32(%U): (memref<*xf32>) -> () async.yield } async.await %outer : !async.token // CHECK: Current thread id: [[MAIN]] // CHECK: [1, 2, 3, 4] call @mlirAsyncRuntimePrintCurrentThreadId(): () -> () call @printMemrefF32(%U): (memref<*xf32>) -> () memref.dealloc %A : memref<4xf32> return } func.func private @mlirAsyncRuntimePrintCurrentThreadId() -> () func.func private @printMemrefF32(memref<*xf32>) attributes { llvm.emit_c_interface }