// RUN: mlir-opt %s -pass-pipeline="builtin.module(func.func(convert-vector-to-scf{full-unroll=true}))" -split-input-file -allow-unregistered-dialect | FileCheck %s // CHECK-LABEL: func @transfer_read_inbounds func.func @transfer_read_inbounds(%A : memref) -> (vector<2x3x4xf32>) { %f0 = arith.constant 0.0: f32 %c0 = arith.constant 0: index // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [0, 0] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [0, 1] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [0, 2] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [1, 0] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [1, 1] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [1, 2] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NOT: scf.if // CHECK-NOT: scf.for %vec = vector.transfer_read %A[%c0, %c0, %c0], %f0 {in_bounds = [true, true, true]} : memref, vector<2x3x4xf32> return %vec : vector<2x3x4xf32> } // ----- // CHECK-LABEL: func @transfer_read_out_of_bounds func.func @transfer_read_out_of_bounds(%A : memref) -> (vector<2x3x4xf32>) { %f0 = arith.constant 0.0: f32 %c0 = arith.constant 0: index // CHECK: scf.if // CHECK: scf.if // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK: vector.insert {{.*}} [0, 0] : vector<4xf32> into vector<2x3x4xf32> // CHECK: scf.if // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK: vector.insert {{.*}} [0, 1] : vector<4xf32> into vector<2x3x4xf32> // CHECK: scf.if // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK: vector.insert {{.*}} [0, 2] : vector<4xf32> into vector<2x3x4xf32> // CHECK: scf.if // CHECK: scf.if // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK: vector.insert {{.*}} [1, 0] : vector<4xf32> into vector<2x3x4xf32> // CHECK: scf.if // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK: vector.insert {{.*}} [1, 1] : vector<4xf32> into vector<2x3x4xf32> // CHECK: scf.if // CHECK: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK: vector.insert {{.*}} [1, 2] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NOT: scf.for %vec = vector.transfer_read %A[%c0, %c0, %c0], %f0 : memref, vector<2x3x4xf32> return %vec : vector<2x3x4xf32> } // ----- func.func @transfer_read_mask(%A : memref, %mask : vector<2x3x4xi1>) -> (vector<2x3x4xf32>) { %f0 = arith.constant 0.0: f32 %c0 = arith.constant 0: index // CHECK: vector.extract %{{.*}}[0, 0] : vector<4xi1> from vector<2x3x4xi1> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [0, 0] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.extract %{{.*}}[0, 1] : vector<4xi1> from vector<2x3x4xi1> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [0, 1] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.extract %{{.*}}[0, 2] : vector<4xi1> from vector<2x3x4xi1> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [0, 2] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.extract %{{.*}}[1, 0] : vector<4xi1> from vector<2x3x4xi1> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [1, 0] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.extract %{{.*}}[1, 1] : vector<4xi1> from vector<2x3x4xi1> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [1, 1] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NEXT: vector.extract %{{.*}}[1, 2] : vector<4xi1> from vector<2x3x4xi1> // CHECK-NEXT: vector.transfer_read {{.*}} : memref, vector<4xf32> // CHECK-NEXT: vector.insert {{.*}} [1, 2] : vector<4xf32> into vector<2x3x4xf32> // CHECK-NOT: scf.if // CHECK-NOT: scf.for %vec = vector.transfer_read %A[%c0, %c0, %c0], %f0, %mask {in_bounds = [true, true, true]}: memref, vector<2x3x4xf32> return %vec : vector<2x3x4xf32> }