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Results 1 - 10 of 25 for 2x2xf64 (0.1 sec)

  1. tensorflow/compiler/mlir/tf2xla/tests/legalize-tf-with-tf2xla-hlo-importer.mlir

      func.func @xla_spmd_full_to_shard_shape(%arg0: tensor<2x2xi64>) -> (tensor<1x2xi64>) {
        // CHECK: %[[SHARDING:.*]] = mhlo.custom_call @Sharding(%arg0) {backend_config = "", mhlo.sharding = "{devices=[2,1]0,1}"} : (tensor<2x2xi64>) -> tensor<2x2xi64>
        // CHECK: %[[MANUAL:.*]] = mhlo.custom_call @SPMDFullToShardShape(%[[SHARDING]]) {backend_config = "", mhlo.sharding = "{manual}"} : (tensor<2x2xi64>) -> tensor<1x2xi64>
        // CHECK: return %[[MANUAL]]
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Sat Apr 06 15:32:52 UTC 2024
    - 38.6K bytes
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  2. tensorflow/compiler/mlir/tf2xla/tests/legalize-tf-collective.mlir

      %group_assignment = "tf.Const"() { value = dense<[[0],[1]]> : tensor<2x1xi32> } : () -> tensor<2x1xi32>
      // CHECK: "mhlo.all_reduce"
      // CHECK{LITERAL}: replica_groups = dense<[[0], [1]]> : tensor<2x1xi64>
      // CHECK-NOT: channel_handle
      // CHECK: mhlo.add
      %0 = "tf.XlaAllReduce"(%input, %group_assignment) {reduce_op = "Add", mode = "CrossReplica"} : (tensor<f32>, tensor<2x1xi32>) -> tensor<f32>
      func.return %0 : tensor<f32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Sat Apr 06 15:32:52 UTC 2024
    - 15.6K bytes
    - Viewed (0)
  3. tensorflow/compiler/mlir/quantization/stablehlo/tests/passes/quantize/quantize_op_with_region.mlir

        // CHECK: %[[REDUCE:.*]] = "stablehlo.reduce_window"(%[[CALL]], %[[Q0]])
        // CHECK{LITERAL}: padding = dense<[[0, 0], [1, 1], [1, 1], [0, 0]]> : tensor<4x2xi64>
        // CHECK-SAME: window_dimensions = array<i64: 1, 3, 3, 1>
        // CHECK: %[[ARG1:.*]]: tensor<!quant.uniform<i8:f32, 3.000000e-01:1>>, %[[ARG2:.*]]: tensor<!quant.uniform<i8:f32, 3.000000e-01:1>>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu Apr 18 20:32:46 UTC 2024
    - 18.9K bytes
    - Viewed (0)
  4. tensorflow/compiler/mlir/lite/tests/flatbuffer2mlir/vhlo.mlir

    //CHECK-NEXT: return %0 : tensor<1x161x1xf32>
    //CHECK-NEXT:}
    
    func.func @convert(%arg0: tensor<2xf64>) -> tensor<2xf32> {
      %0 = "vhlo.convert_v1" (%arg0) : (tensor<2xf64>) -> tensor<2xf32>
      return %0 : tensor<2xf32>
    }
    
    //CHECK:func.func private @convert(%arg0: tensor<2xf64>) -> tensor<2xf32> {
    //CHECK-NEXT: %0 = "vhlo.convert_v1"(%arg0) : (tensor<2xf64>) -> tensor<2xf32>
    //CHECK-NEXT: return %0 : tensor<2xf32>
    //CHECK-NEXT:}
    
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu Mar 14 19:15:40 UTC 2024
    - 31.9K bytes
    - Viewed (0)
  5. tensorflow/compiler/mlir/tensorflow/tests/tpu_sharding_identification.mlir

      %1 = "tf.Identity"(%0) : (tensor<2x2xf32>) -> tensor<2x2xf32>
      return %1 : tensor<2x2xf32>
    }
    
    // -----
    // The following op sharding is used in the following test case:
    // Proto debug string:
    //   type: MAXIMAL
    //   tile_assignment_dimensions: 1
    //   tile_assignment_devices: 0
    // Serialized string:
    //   "\08\01\1A\01\01\22\01\00"
    // Proto debug string:
    //   type: MAXIMAL
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Tue Feb 20 19:07:52 UTC 2024
    - 47.5K bytes
    - Viewed (0)
  6. tensorflow/compiler/mlir/quantization/tensorflow/tests/add_dump_tensor_op.mlir

        return %0 : tensor<2x2xf32>
      }
      func.func private @composite_matmul_fn_1(%arg0: tensor<2x2xf32>, %arg1: tensor<2x2xf32>) -> tensor<2x2xf32> attributes {tf_quant.composite_function} {
        %0 = "tf.MatMul"(%arg0, %arg1) {attr_map = "0:transpose_a,1:transpose_b", device = "", transpose_a = false, transpose_b = false} : (tensor<2x2xf32>, tensor<2x2xf32>) -> tensor<2x2xf32>
        return %0 : tensor<2x2xf32>
      }
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Fri Mar 22 22:55:22 UTC 2024
    - 37.9K bytes
    - Viewed (0)
  7. tensorflow/compiler/mlir/tensorflow/tests/constant-fold.mlir

      %0 = "tf.Div"(%arg0, %cst) : (tensor<2x2xf32>, tensor<2x2xf32>) -> tensor<2x2xf32>
      func.return %0 : tensor<2x2xf32>
    
      // CHECK-LABEL: RemoveTrivialDiv
      // CHECK-NEXT: return %arg0 : tensor<2x2xf32>
    }
    
    func.func @RemoveTrivialRealDiv(%arg0: tensor<2x2xf32>, %arg1: tensor<2x2xf32>) -> tensor<2x2xf32> {
      %cst = arith.constant dense<1.0> : tensor<2x2xf32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Wed Jan 31 23:22:24 UTC 2024
    - 36.7K bytes
    - Viewed (0)
  8. tensorflow/compiler/mlir/quantization/common/attrs_and_constraints_test.cc

          return %0 : tensor<2x2xf32>
        }
        func.func private @composite_fn_1(%arg0: tensor<2x2xf32>, %arg1: tensor<2x2xf32>) -> tensor<2x2xf32> attributes {tf_quant.composite_function} {
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Tue May 14 17:10:32 UTC 2024
    - 22.9K bytes
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  9. tensorflow/compiler/mlir/lite/tests/prepare-quantize-signed.mlir

    }
    
    // CHECK-LABEL: prepareAdd
    func.func @prepareAdd(%arg0: tensor<2x2xf32>) -> tensor<2x2xf32> {
      %cst = arith.constant dense<[[0.0, 1.0], [2.0, 255.0]]> : tensor<2x2xf32>
      %add = "tfl.add"(%arg0, %cst) {fused_activation_function="NONE"} : (tensor<2x2xf32>, tensor<2x2xf32>) -> tensor<2x2xf32>
      func.return %add : tensor<2x2xf32>
    
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 02 09:41:17 UTC 2024
    - 18.4K bytes
    - Viewed (0)
  10. tensorflow/compiler/mlir/quantization/tensorflow/tests/add_dump_tensor_op_stablehlo.mlir

        %2 = "tf.XlaCallModule"(%arg0, %1, %0) <{Sout = [#tf_type.shape<?x2>], module = "", version = 9 : i64}> {_entry_function = @composite_dot_general_with_bias_and_relu6_dynamic_fn_2, _original_entry_function = "composite_dot_general_with_bias_and_relu6_dynamic_fn_2", _tfl_quant_trait = "fully_quantizable"} : (tensor<?x2xf32>, tensor<2x2xf32>, tensor<2xf32>) -> tensor<?x2xf32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Fri Mar 22 22:55:22 UTC 2024
    - 18K bytes
    - Viewed (0)
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