forked from OSchip/llvm-project
187 lines
6.8 KiB
MLIR
187 lines
6.8 KiB
MLIR
// RUN: mlir-opt %s -linalg-fusion -split-input-file | FileCheck %s --dump-input-on-failure
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#map = affine_map<(d0, d1)[s0, s1, s2] -> (d0 * s1 + s0 + d1 * s2)>
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#id_2d = affine_map<(d0, d1) -> (d0, d1)>
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#pointwise_2d_trait = {
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args_in = 2,
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args_out = 1,
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indexing_maps = [#id_2d, #id_2d, #id_2d],
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iterator_types = ["parallel", "parallel"]
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}
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func @fuse_indexed_generic_consumer(%A: memref<?x?xf32>,
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%B: memref<?x?xf32>,
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%C: memref<?x?xf32>,
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%D: memref<?x?xf32>) {
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linalg.generic #pointwise_2d_trait %A, %B, %C {
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^bb0(%e: f32, %arg5: f32, %arg6: f32): // no predecessors
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%2 = addf %e, %arg5 : f32
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linalg.yield %2 : f32
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}: memref<?x?xf32>, memref<?x?xf32>, memref<?x?xf32>
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%c1 = constant 1 : index
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%c0 = constant 0 : index
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%c25 = constant 25 : index
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%c10 = constant 10 : index
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%0 = dim %C, 0 : memref<?x?xf32>
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%1 = dim %C, 1 : memref<?x?xf32>
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%2 = dim %D, 0 : memref<?x?xf32>
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%3 = dim %D, 1 : memref<?x?xf32>
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loop.for %arg2 = %c0 to %0 step %c10 {
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loop.for %arg3 = %c0 to %1 step %c25 {
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%4 = std.subview %C[%arg2, %arg3][%c10, %c25][%c1, %c1] :
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memref<?x?xf32> to memref<?x?xf32, #map>
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%5 = std.subview %D[%arg2, %arg3][%c10, %c25][%c1, %c1] :
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memref<?x?xf32> to memref<?x?xf32, #map>
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linalg.indexed_generic {
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indexing_maps = [#id_2d, #id_2d],
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iterator_types = ["parallel", "parallel"],
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args_in = 1,
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args_out = 1
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} %4, %5 {
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^bb0(%arg4: index, %arg5: index, %arg6: f32, %arg7: f32):
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%6 = addi %arg4, %arg2 : index
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%7 = addi %arg5, %arg3 : index
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%8 = index_cast %6 : index to i32
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%9 = sitofp %8 : i32 to f32
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%10 = index_cast %7 : index to i32
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%11 = sitofp %10 : i32 to f32
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%12 = addf %9, %11 : f32
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linalg.yield %12 : f32
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}: memref<?x?xf32, #map>, memref<?x?xf32, #map>
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}
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}
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return
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}
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// CHECK-LABEL: func @fuse_indexed_generic_consumer
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// CHECK: loop.for
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// CHECK: loop.for
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// CHECK-NOT: loop.for
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// CHECK: linalg.generic
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// CHECK-NOT: addi
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// CHECK: addf
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// CHECK: linalg.indexed_generic
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// CHECK: index_cast
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// -----
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#map = affine_map<(d0, d1)[s0, s1, s2] -> (d0 * s1 + s0 + d1 * s2)>
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#id_2d = affine_map<(d0, d1) -> (d0, d1)>
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#pointwise_2d_trait = {
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args_in = 2,
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args_out = 1,
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indexing_maps = [#id_2d, #id_2d, #id_2d],
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iterator_types = ["parallel", "parallel"]
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}
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func @fuse_indexed_generic_producer(%A: memref<?x?xf32>,
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%B: memref<?x?xf32>,
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%C: memref<?x?xf32>,
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%D: memref<?x?xf32>) {
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%c1 = constant 1 : index
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%c0 = constant 0 : index
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%c25 = constant 25 : index
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%c10 = constant 10 : index
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linalg.indexed_generic #pointwise_2d_trait %A, %B, %C {
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^bb0(%i: index, %j: index, %a: f32, %b: f32, %c: f32): // no predecessors
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%i_int = index_cast %i: index to i32
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%i_float = sitofp %i_int : i32 to f32
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%ab = addf %a, %b : f32
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%out = addf %ab, %i_float : f32
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linalg.yield %out : f32
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}: memref<?x?xf32>, memref<?x?xf32>, memref<?x?xf32>
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%C_X = dim %C, 0 : memref<?x?xf32>
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%C_Y = dim %C, 1 : memref<?x?xf32>
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%D_X = dim %D, 0 : memref<?x?xf32>
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%D_Y = dim %D, 1 : memref<?x?xf32>
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loop.parallel (%arg2, %arg3) = (%c0, %c0) to (%C_X, %C_Y) step (%c10, %c25) {
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%C_view = std.subview %C[%arg2, %arg3][%c10, %c25][%c1, %c1] :
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memref<?x?xf32> to memref<?x?xf32, #map>
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%D_view = std.subview %D[%arg2, %arg3][%c10, %c25][%c1, %c1] :
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memref<?x?xf32> to memref<?x?xf32, #map>
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linalg.generic {
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indexing_maps = [#id_2d, #id_2d],
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iterator_types = ["parallel", "parallel"],
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args_in = 1,
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args_out = 1
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} %C_view, %D_view {
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^bb0( %a: f32, %b: f32):
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%ab = addf %a, %b : f32
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linalg.yield %ab : f32
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}: memref<?x?xf32, #map>, memref<?x?xf32, #map>
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}
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return
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}
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// CHECK-LABEL: func @fuse_indexed_generic_producer
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// CHECK: loop.parallel ([[I:%.*]], [[J:%.*]]) =
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// CHECK-NOT: loop.parallel
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// CHECK: linalg.indexed_generic
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// CHECK: ^bb0([[i:%.*]]: index, [[j:%.*]]: index
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// CHECK: [[i_new:%.*]] = addi [[i]], [[I]] : index
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// CHECK: [[j_new:%.*]] = addi [[j]], [[J]] : index
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// CHECK: {{.*}} = index_cast [[i_new]] : index to i32
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// CHECK: linalg.generic
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// CHECK: addf
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// -----
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#map = affine_map<(d0, d1)[s0, s1, s2] -> (d0 * s1 + s0 + d1 * s2)>
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#id_2d = affine_map<(d0, d1) -> (d0, d1)>
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#pointwise_2d_trait = {
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args_in = 2,
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args_out = 1,
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indexing_maps = [#id_2d, #id_2d, #id_2d],
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iterator_types = ["parallel", "parallel"]
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}
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func @fuse_indexed_generic_producer_tile_second_dim_only(%A: memref<?x?xf32>,
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%B: memref<?x?xf32>,
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%C: memref<?x?xf32>,
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%D: memref<?x?xf32>) {
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%c1 = constant 1 : index
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%c3 = constant 3 : index
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%c0 = constant 0 : index
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linalg.indexed_generic #pointwise_2d_trait %A, %B, %C {
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^bb0(%i: index, %j: index, %a: f32, %b: f32, %c: f32): // no predecessors
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%j_int = index_cast %j: index to i32
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%j_float = sitofp %j_int : i32 to f32
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%ab = addf %a, %b : f32
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%out = addf %ab, %j_float : f32
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linalg.yield %out : f32
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}: memref<?x?xf32>, memref<?x?xf32>, memref<?x?xf32>
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%C_X = dim %C, 0 : memref<?x?xf32>
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%C_Y = dim %C, 1 : memref<?x?xf32>
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%D_X = dim %D, 0 : memref<?x?xf32>
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%D_Y = dim %D, 1 : memref<?x?xf32>
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%3 = linalg.range %c0 : %C_Y : %c3 : !linalg.range
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loop.parallel (%j) = (%c0) to (%C_Y) step (%c3) {
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%0 = affine.min affine_map<(d0, d1, d2) -> (d0, d1 - d2)>(%c3, %C_Y, %j)
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%C_view = subview %C[%c0, %j] [%C_X, %0] [%c1, %c1] :
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memref<?x?xf32> to memref<?x?xf32, #map>
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%1 = affine.min affine_map<(d0, d1, d2) -> (d0, d1 - d2)>(%c3, %D_Y, %j)
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%D_view = subview %D[%c0, %j] [%D_X, %1] [%c1, %c1] :
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memref<?x?xf32> to memref<?x?xf32, #map>
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linalg.generic {
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indexing_maps = [#id_2d, #id_2d],
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iterator_types = ["parallel", "parallel"],
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args_in = 1,
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args_out = 1
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} %C_view, %D_view {
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^bb0( %a: f32, %b: f32):
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%ab = addf %a, %b : f32
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linalg.yield %ab : f32
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}: memref<?x?xf32, #map>, memref<?x?xf32, #map>
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loop.yield
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}
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return
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}
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// CHECK-LABEL: func @fuse_indexed_generic_producer_tile_second_dim_only
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// CHECK: [[C0:%.*]] = constant 0 : index
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// CHECK: loop.parallel ([[J:%.*]]) =
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// CHECK-NOT: loop.parallel
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// CHECK: linalg.indexed_generic
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// CHECK: ^bb0([[i:%.*]]: index, [[j:%.*]]: index
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// CHECK: [[i_new:%.*]] = addi [[i]], [[C0]] : index
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// CHECK: [[j_new:%.*]] = addi [[j]], [[J]] : index
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// CHECK: {{.*}} = index_cast [[j_new]] : index to i32
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// CHECK: linalg.generic
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// CHECK: addf
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