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Results 1 - 10 of 15 for 512x2xf32 (0.16 sec)

  1. tensorflow/compiler/mlir/lite/tests/flatbuffer2mlir/quantization.mlir

      func.return %6 : tensor<1x401408xf32>
    }
    
    // CHECK-LABEL: quantized_constant
    func.func @quantized_constant(%arg0: tensor<1x2xf32>) -> tensor<2x2xf32> {
      %1 = "tfl.quantize"(%arg0) {qtype = tensor<1x2x!quant.uniform<u8:f32, 1.0>>, volatile} : (tensor<1x2xf32>) -> tensor<1x2x!quant.uniform<u8:f32, 1.0>>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 02 09:41:17 UTC 2024
    - 4.3K bytes
    - Viewed (0)
  2. tensorflow/compiler/mlir/quantization/stablehlo/cc/saved_model_import_test.cc

      // MLIR @main function corresponds to the TF function "main_original".
      OwningOpRef<ModuleOp> module_op = ParseModuleOpString(R"mlir(
        func.func private @main(%arg: tensor<1x2xf32>) -> (tensor<1x2xf32>) attributes {tf._original_func_name = "main_original"} {
          return %arg : tensor<1x2xf32>
        }
      )mlir");
      ASSERT_TRUE(module_op);
    
      absl::flat_hash_map<FunctionName, FunctionAlias> function_aliases;
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu Mar 07 03:47:17 UTC 2024
    - 4.6K bytes
    - Viewed (0)
  3. tensorflow/compiler/mlir/quantization/stablehlo/tests/passes/quantize_composite_functions_weight_only.mlir

        return %1 : tensor<1x3xf32>
      }
    
      func.func private @composite_dot_general_fn(%arg0: tensor<1x2xf32>, %arg1: tensor<2x3xf32>) -> tensor<1x3xf32> attributes {_from_xla_call_module} {
        %0 = stablehlo.dot_general %arg0, %arg1, contracting_dims = [1] x [0] : (tensor<1x2xf32>, tensor<2x3xf32>) -> tensor<1x3xf32>
        return %0 : tensor<1x3xf32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 09 05:56:10 UTC 2024
    - 9.4K bytes
    - Viewed (0)
  4. tensorflow/compiler/mlir/lite/tests/default_quant_params.mlir

    // CHECK-LABEL: hardcode_all
    func.func @hardcode_all(%arg0: tensor<2x2xf32>, %arg1: tensor<2x1xf32>) -> tensor<2x2xf32> {
      %0 = "tfl.add"(%arg0, %arg1) {fused_activation_function="NONE"}: (tensor<2x2xf32>, tensor<2x1xf32>) -> tensor<2x2xf32>
      func.return %0 : tensor<2x2xf32>
    
    // CHECK: %[[q0:.*]] = "tfl.quantize"(%arg1) <{qtype = tensor<2x1x!quant.uniform<u8:f32, 0.0078431372549019607:128>>}>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 02 09:41:17 UTC 2024
    - 8.8K bytes
    - Viewed (0)
  5. tensorflow/compiler/mlir/lite/tests/flatbuffer2mlir/reshape.mlir

    // Confirm we can extract type info from reshape
    
    func.func @main() -> tensor<2x2xf32> {
      // CHECK: %[[cst:.*]] = "tfl.pseudo_const"() <{value = dense<2> : tensor<2xi32>}> : () -> tensor<2xi32>
      // CHECK: %{{.*}} = "tfl.reshape"(%{{.*}}, %[[cst]]) : (tensor<4xf32>, tensor<2xi32>) -> tensor<2x2xf32>
      %cst = arith.constant dense<[2, 2]> : tensor<2xi32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 02 09:41:17 UTC 2024
    - 730 bytes
    - Viewed (0)
  6. tensorflow/compiler/mlir/lite/tests/legalize_jax_random.mlir

    func.func @tfl_wrapped_jax_random_uniform(%arg0: tensor<2xui32>) -> tuple<tensor<1x2xf32>> {
      // This is a fake jax random uniform body.
      %0 = stablehlo.constant dense<0.0> : tensor<2xf32>
      %1 = "stablehlo.reshape"(%0) : (tensor<2xf32>) -> tensor<1x2xf32>
      %2 = "stablehlo.tuple"(%1) : (tensor<1x2xf32>) -> tuple<tensor<1x2xf32>>
      func.return %2 : tuple<tensor<1x2xf32>>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 02 09:41:17 UTC 2024
    - 2K bytes
    - Viewed (0)
  7. tensorflow/compiler/mlir/quantization/stablehlo/tests/passes/prepare_quantize/prepare_quantize_per_channel.mlir

        } : (tensor<2x2xf32>, tensor<2x2xf32>) -> tensor<2x2xf32>
        %2 = "quantfork.stats"(%1) {layerStats = dense<[0.000000e+00, 6.000000e+00]> : tensor<2xf32>} : (tensor<2x2xf32>) -> tensor<2x2xf32>
        return %2 : tensor<2x2xf32>
      }
    
      // CHECK-LABEL: composite_dot_general
      func.func private @composite_dot_general(%arg0: tensor<2x2xf32>, %arg1: tensor<2x2xf32>) -> tensor<2x2xf32> {
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Tue Mar 26 07:48:15 UTC 2024
    - 8.6K bytes
    - Viewed (0)
  8. tensorflow/compiler/mlir/quantization/stablehlo/tests/passes/convert_func_to_bfloat16.mlir

    func.func @constant_f32() -> tensor<2x2xf32> {
      // CHECK-NOT: f32
      // CHECK{LITERAL}: stablehlo.constant dense<[[1.398440e+00, 0.000000e+00], [3.093750e+00, -2.001950e-01]]> : tensor<2x2xbf16>
      %0 = stablehlo.constant dense<[[1.4, 0.0], [3.1, -0.2]]> : tensor<2x2xf32>
      return %0 : tensor<2x2xf32>
    }
    
    // -----
    
    func.func @constant_elided() -> tensor<2x2xf32> {
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu Feb 08 22:40:14 UTC 2024
    - 6K bytes
    - Viewed (0)
  9. tensorflow/compiler/mlir/quantization/stablehlo/tests/passes/quantize/quantize_weight_only.mlir

        return %2 : tensor<1x3xf32>
      }
    
      func.func private @composite_dot_general_fn(%arg0: tensor<1x2xf32>, %arg1: tensor<2x3xf32>) -> tensor<1x3xf32> attributes {_from_xla_call_module} {
        %0 = stablehlo.dot_general %arg0, %arg1, contracting_dims = [1] x [0] : (tensor<1x2xf32>, tensor<2x3xf32>) -> tensor<1x3xf32>
        return %0 : tensor<1x3xf32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Tue May 14 17:10:32 UTC 2024
    - 4.8K bytes
    - Viewed (0)
  10. tensorflow/compiler/mlir/lite/tests/optimize_batch_matmul.mlir

      %0 = arith.constant dense<[[1.0, 2.0]]> : tensor<1x2xf32>
      %1 = "tfl.batch_matmul"(%arg0, %0) {adj_x = false, adj_y = true, asymmetric_quantize_inputs = false} : (tensor<4x128x2xf32>, tensor<1x2xf32>) -> tensor<4x128x1xf32>
      func.return %1 : tensor<4x128x1xf32>
      // CHECK: %[[CONST_WEIGHT:.*]] = arith.constant
      // CHECK-SAME: [1.000000e+00, 2.000000e+00]
      // CHECK-SAME: tensor<1x2xf32>
    Registered: Sun Jun 16 05:45:23 UTC 2024
    - Last Modified: Thu May 02 09:41:17 UTC 2024
    - 9K bytes
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